CONTROLLING A SYSTEM FOR HANDLING VALUABLE OBJECTS AND PREPARING/OUTPUTTING PACKS OF VALUABLE OBJECTS
20220383689 ยท 2022-12-01
Inventors
- Andreas JAKOBS (Munchen, DE)
- Michael KNICKREHM (Augsburg, DE)
- Wolfgang KONIGER (Karlsfeld, DE)
- Ralf LINCK (Munchen, DE)
- Jurgen VON KREMLING (Munchen, DE)
Cpc classification
G07D11/20
PHYSICS
International classification
Abstract
A method is provided for controlling a system or a device for recognizing, checking, counting, accounting and sorting objects of value, which can be automatically adapted to changing delivery and demand conditions. A control controls the transport paths and processing steps within the device with the aid of conveyor plants and corresponding diverters and optimizes them in such a way that the objects of value are transported in a targeted fashion to the processing stages which are necessary for the processing of the objects of value. The control takes into account information about the components of the device as well as the inbound-delivered objects of value and the objects of value to be delivered outbound in order to ensure optimal processing of the objects of value or to deliver ordered packs of objects of value outbound as quickly as possible.
Claims
1.-23. (canceled)
24. A method for controlling a system comprising at least one preparation stage and having equipment for recognizing, checking, counting, sorting and, where applicable, accounting objects of value and for assembling packs of the objects of value, wherein the method comprises the following steps: receiving objects of value in the preparation stage; subsequently forwarding the objects of value from the preparation stage to at least one entry stage of the equipment; then forwarding the objects of value to a first processing area of the equipment, which area comprises one or several processing stages in which the objects of value are processed, in particular recognized and/or checked and/or counted and/or sorted; then forwarding the objects of value to a second processing area of the equipment, which area has one or several output stages in which the objects of value are processed, in particular assembled and/or outputted from the equipment; wherein that advance information about the objects of value received in the preparation stage is present in the system, in particular advance information concerning the packaging and/or the composition and/or the denomination and/or the origin and/or the quality and/or the condition and/or the authenticity of the objects of value received, and that the advance information is utilized by the system, in particular by a control of the system, for optimizing the processing of the objects of value by the system, in particular for optimizing the processing of the objects of value in the preparation stage and/or in the first and/or in the second processing area of the equipment.
25. The method according to claim 24, wherein that the objects of value are checked in the preparation stage for advance information about the objects of value.
26. The method according to claim 24, wherein that the advance information present in the system is available with the inbound delivery of the objects of value and/or is delivered along with the objects of value.
27. The method according to claim 24, wherein that the advance information present in the system is obtained on the basis of documentation of previous orders for which the system was used to process objects of value, the documentation of previous orders comprising in particular processing times and/or processing costs of the system.
28. The method according to claim 24, wherein that the advance information present in the system is obtained by measuring and/or observing the properties of the delivered objects of value, in particular a pattern recognition system in the preparation stage checking the inbound-delivered objects of value for soiling or destruction or denomination in order to obtain advance information.
29. The method according to claim 24, wherein that request information about packs of objects of value to be delivered outbound by the system, e.g. for which an order has been placed with the system, is evaluated together with the advance information present in the system, in particular it being checked whether the properties of the objects of value inbound-delivered to the system, which are contained in the advance information, match the properties of the objects of value of the packs of objects of value to be outbound-delivered by the system, and if yes, the inbound-delivered objects of value concerned are processed by the system in a prioritized manner.
30. The method according to claim 29, wherein that the request information about the packs of objects of value to be delivered outbound contains details about the depositor and/or orderer and/or the quantity and/or the packaging and/or the composition and/or the denomination and/or the destination and/or the intended use and/or the quality and/or the condition of the objects of value to be contained in the packs of objects of value to be delivered outbound.
31. The method according to claim 24, wherein that, in the case that, for the assembling of packs of objects of value to be delivered outbound, objects of value of a certain denomination are required, then, in order to optimize the processing of the objects of value, those objects of value inbound delivered to the system which have the denomination required for the assembling are processed by the system in a prioritized manner.
32. The method according to claim 24, wherein that external information sources and/or information about processing times and/or processing costs of the system are utilized to optimize the processing of the objects of value by the system.
33. The method according to claim 24, wherein that the system has at least one temporary storage, which is configured e.g. as a deposit surface, storage place or stocking place for the objects of value or as part of a transport system which has an inherent storage function.
34. The method according to claim 33, wherein that the at least one temporary storage is utilized for optimizing the processing of the objects of value, the at least one temporary storage being utilized in particular for temporary storing objects of value in order to counteract jams of the objects of value within the system.
35. The method according to claim 34, wherein that the objects of value received in the preparation stage are stocked in the at least one temporary storage before being processed, or that the objects of value which have passed through the at least one entry stage or have been recognized, checked, counted, accounted and/or sorted by a processing stage are stocked on the at least one temporary storage, or that the objects of value which have been recognized, checked, counted, accounted and/or sorted by a processing stage are stocked on the at least one temporary storage before they are assembled in the second processing area by an output stage.
36. The method according to claim 24, wherein that equipment of the first and second processing area is differently combined and/or activated and/or deactivated for optimizing the processing of the objects of value and/or of packs of the objects of value.
37. The method according to claim 24, wherein that in the preparation stage the objects of value are positioned in a receiving means in which they can be fed to the further processing in the first and/or second processing area.
38. The method according to claim 24, wherein that the advance information is utilized for optimizing the processing times of the respective objects of value by the system.
39. The method according to claim 24, wherein that the transport path of the respective objects through the system of value is selected in dependence on the advance information and/or that the combination of entry stages, processing stages and output stages with which the objects of value are processed in the equipment is decided on the basis of the advance information.
40. The method according to claim 24, wherein that the entry stage/s and/or the processing stage/s and/or the output stage/s that process the respective objects of value, and/or the transport path of the respective objects of value through the system are selected in dependence on the advance information, in particular in dependence on the composition and/or the denomination and/or the origin and/or the condition and/or the authenticity of the objects of value inbound delivered to the system.
41. The method according to claim 24, wherein that the objects of value are bank notes and that, for optimizing the processing of the objects of value, bank notes in good condition, e.g. bank notes which were taken from a partially filled ATM cassette delivered to the system, are processed by those processing stages of the system which process the bank notes at high speed, and bank notes in poor condition are processed by other processing stages of the system which process the bank notes at lower speed.
42. The method according to claim 24, wherein that for optimizing the processing of the objects of value, the entry stage/s and/or the processing stage/s and/or the output stage/s which process the respective objects of value are selected in dependence on the authenticity of the inbound-delivered objects of value, in particular in the case of inbound-delivered bank notes from partially filled ATM cassettes, which are delivered to the system, an authenticity check by the system being omitted and, in the case of inbound-delivered bank notes from other containers, e.g. safe bags, an authenticity check being carried out by the system.
43. The method according to claim 24, wherein that the system comprises a control that receives advance information and request information and utilizes both information items for generating control information for the system, the control information for optimizing the processing of the objects of value being used in particular for the system to select a certain transport path through the system for certain objects of value or to select certain processing stages and/or output stages for processing these certain objects of value.
Description
[0036]
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[0048]
[0049] The control S performs the adapted activation, combination and configuration of the numerous stages and modules of the system 100, in particular of the subsystems E, P, A and Z and the conveyor plants 140, 141, 142, 143 and T. This often makes it possible to process several orders in parallel or in quick succession. For this purpose, the control S exchanges information IV with the preparation stage V and information IA with the delivery stage L. It sends commands 161, 162, 163, 164 for controlling the system 100 and the processing device 110 with its subsystems E, P, A, T, Z, etc.
[0050] Very often, the objects of value processed in the system 100 are bank notes or coins. The machines or processing stages P.sub.n of the processing area are often individual, different modules P.sub.nm for executing different measurements or tests on e.g. the bank notes. Typical functions of these modules are: [0051] recognizing the nominal value of the bank notes and of the national origin, e.g. by means of image recognition; [0052] authenticity checking, whereby there may be individual machines P.sub.n or modules P.sub.nm for different security features, unless several security features can be checked in one step; [0053] checking the condition or quality of the bank notes or objects of value in general. These can be physically affected by repeated circulation in the course of business, which is why they may be earmarked for replacement; [0054] counting.
[0055] After passing all these tests, the objects of value are sorted, validated or qualified and quantified, i.e. counted and evaluated. They are then typically classified in a higher security level. Preferably, the processing area P delivers trustworthy packs of qualified, sorted and accurately counted bank notes, which can then be further used within the framework of assembling.
[0056]
[0057] The control S exchanges information or commands for controlling the system 200 with the preparation stage V via the information channel 155, with the mechatronic system 210 via the information channel 160 and with the post-processing stage L via the information channel 165.
[0058] The processing of the objects of value may be effected fully automatically within the mechatronic system 210 and with the aid of the conveyor plants 140, 141, 142, 143 and T or the control S. The processing can moreover be optimized with regard to processing times and processing costs. This is achieved, on the one hand, by the conveyor plants 140, 141, 142, 143 and T and the diverters 245, with which the processing of the objects of value can be distributed to or concentrated on several machines P.sub.n. On the other hand, machines P.sub.n can be omitted or interconnected in such a way that only the machines P.sub.n necessary for processing are passed through by the objects of value. Additionally, the temporary storage Z may be utilized to counteract jams or overproduction, or to remove the objects of value not necessary for the outbound delivery of packs of objects of value from the active components of the mechatronic system 210. Furthermore, inbound deliveries of objects of value originating from a jeweler and accordingly containing bank notes with higher denomination can be preferred and processed with a higher priority if it is precisely bank notes with a higher denomination that are needed for assembling packs to be delivered outbound.
[0059] The optimization of the processing of the objects of value can be effected particularly effective in the system 200, since preferably all information that is available about the individual components of the system 200 and the objects of value that are located therein, delivered inbound and requested is collected and utilized. Objects of value that have already been pre-sorted and pre-qualified in the preparation stage V can, for example, be loaded into special entry stages E.sub.n that allow direct access to the specialized machines P.sub.n, e.g. for particularly quick processing. This of course also applies to systems 200 that are less automated, i.e. in particular to systems 200 in which the conveyor plants 140, 141, 142, 143 and/or T are simple transport paths.
[0060] In this way, the system 200 allows the objects of value of different depositors to be processed spatially separated from each other. If, for example, bank notes from a first bank are delivered, they can be forwarded to the entry stages E.sub.1 and processed by the downstream processing stage P.sub.1. At the same time, bank notes from a second bank can be forwarded to the entry stage E.sub.2 and processed by the processing stage P.sub.2. In this way, bank notes from different financial institutions can be processed at the same time, while the separation of the bank notes according to their depositors is guaranteed at all times.
[0061] The entry stages E.sub.n can be designed differently. They can have locks, gates, doors or flaps. In addition, they may have chutes, drop lanes or conveyor belts for the objects of value so that they can be securely forwarded from the preparation stage V to the processing area.
[0062] The same applies to the output stages A.sub.n. They can be constructed in a similar way to the entry stages, but have additional filling and/or stacking devices to load outbound delivery containers such as safe bags, ATM cassettes, Nota Tracc Trays or pallets with individual banded packs of objects of value.
[0063]
[0064] Due to the storage transport system, the mechatronic system 310 can take up a larger volume of objects of value on the one hand and process and transport them at the same time. And it can better examine the number of objects of value transported at the same time. This creates new possibilities for optimizing the processing of objects of value by the control S and existing possibilities are better utilized. Filling the small transport containers 381 by the mechatronic devices of the entry stages E.sub.n, the containers 382 by the machines P.sub.n of the processing area P, or the machines A.sub.n of the output area A is effected here in a manner that ensures a further processing or stocking of the objects of value by the mechatronic system 310. Manual steps and concomitant security risks can thus be almost entirely avoided or reduced to exceptional cases.
[0065] With the aid of the information channel 160, the control S effects an adaptively controlled transport and an adaptively controlled processing of the objects of value within the mechatronic system 310. The transport is effected with the aid of the modularly activatable and combinable conveyor plants 140, 141, 142, 143, 325 and T. The processing can thus be optimized with respect to processing times, processing costs, security and trustworthiness of the processed objects of value. This is achieved, on the one hand, through an improved adaptability by setting the branches and hubs or diverters 245 in the transport paths in such a way that processing is carried out in a suitable manner on the path from E via P to A in series or in parallel as required, or the stages E.sub.n, P.sub.n and A.sub.n necessary for processing are approached. If, e.g., the speed of the P-stages is only half that of the E-stages, then one E-stage delivers to two P-stages working in parallel via an alternately switchable branch or diverter 245.
[0066] In addition, the temporary storage Z may be used not only to counteract jams or overproduction or to remove from the active components of the mechatronic system 210 those objects of value not required for the outbound delivery of packs of objects of value, but also to hold available empty small transport containers 380 for a later filling, e.g. upon peaks in the inbound delivery of objects of value, or to keep small transport containers 381 and/or 382 for a later processing and/or outbound delivery.
[0067] In the illustrated system 300, the objects of value are transported with the aid of transport containers or small transport containers 380, 381 and 382. Within the processing system 310 there are in operation [0068] small transport containers 380 without contents, [0069] small transport containers 381 with unqualified, unquantified and therefore untrustworthy contents, [0070] small transport containers 382 with qualified, quantified and thus trustworthy contents.
[0071] The small transport containers 380 are filled with objects of value, e.g. a loosely grouped quantity of bank notes, in the entry stages E.sub.n and then form a filled or only partially filled small transport container 381 with an untrustworthy pack of objects of value. The empty transport containers 380 arrive via the transport path 325 to the input E or via the transport paths T from the temporary storage Z. The objects of value or bank notes are qualified and quantified by the processing stages P.sub.n. In the processing area, qualified objects of value are brought together into trustworthy packs, with the value information being fed to the control S. The control S assigns the value information to the small transport container 382 having the trustworthy pack, e.g., on the basis of an identifier or an identification on the small transport container 382, and thus to the pack contained therein. After the processing P, trustworthy packs of objects of value are present. Preferably, these are filled into small transport containers 380, which come either via a transport path 325 from the output area A or via a transport path T from the temporary storage Z or another area (not explicitly shown). This creates trustworthy filled small transport containers 382. These are guided from P via the transport device 142 to the output area A. There, they form the source material for the production of the requested deliveries of trustworthy packs of objects of value. For this, according to the control commands, the requested objects of value are mechatronically taken from the small transport containers 382 as required.
[0072] The control S may further use the request information 165 together with the information about other small transport containers in the mechatronic system 310 in order to fill exactly the appropriate quantity and the appropriate type of objects of value into small transport containers 382 in order to appropriately extend or appropriately complete a delivery. For this purpose, a processing information system PIS (not explicitly shown) serves as part of the control S or is configured separately, which manages the entire value information from the system 300. The value information are passed via the information interface 160 or via other ways. The return transport of the emptied small transport containers 380 from A to E or also from A to P and possibly into the temporary storage Z is effected via transport devices 325.
[0073]
[0074] The area 405 with the higher security level can be utilized in the event of failures, processing bottlenecks or during maintenance work for the secure storage of the objects of value or for protecting them from theft or destructive influences such as fire. The conveyor plants 425 and 430 allow this to be done fully automatically. In addition, objects of value can be transported from the preparation stage V via the plants 415 directly to the area 405 without having to be forwarded to the entry stages E.sub.n. This increases the receiving capacity of the system in a secure way, in particular when objects of value are delivered that can only be processed at a later time in the entry stage E.sub.n.
[0075] Due to the series connection of the processing modules P.sub.1n, the processing of the objects of value can be effected without detours and thus particularly quickly. In preferred embodiments, the system 410 has still further processing stages P.sub.2, P.sub.3, etc., which are not explicitly shown here.
[0076] The cyclically circulating transport loops 420 fulfil various tasks. On the one hand, they serve as dynamic temporary storages that can be accessed very quickly and easily by the mechatronic system 410. On the other hand, they serve to connect the entry stages E.sub.n, the machines P.sub.n of the processing area P and/or the machines A.sub.n of the output area A in such a way that the transport paths of the objects of value can be designed optimally. For example, with the aid of the transport loops 420, individual modules P.sub.1n of the processing stage P.sub.1 can be omitted or skipped, which are not needed for processing the objects of value, even though the modules P.sub.1n are connected in series.
[0077]
[0078]
[0079] On the one hand, the parallel-connected processing modules P.sub.12 to P.sub.14 can be employed to increase the cycle rate for processing the objects of value by employing several modules simultaneously and thus reduce the processing time of orders. On the other hand, the modules connected in parallel can also fulfil various functionalities that are available for processing the objects of value by selectively controlling the transport paths. The five processing modules P.sub.1n shown in the example can therefore be understood as a configurable machine for recognizing, checking, counting, accounting and/or sorting objects of value.
[0080] The use of three coupled transport loops in the system 610 also allows a realization of more flexible transport paths for the small transport containers or transport containers 380, 381, 382. Employing the passing lanes 605 moreover allows the realization of transport paths in which the middle one of the transport loops 420 is skipped. By activating the passing lane at exactly the appropriate place, exactly the desired small transport container is transported as quickly as possible between the transport loops that do not come into direct contact. This device permits the system to operate without a separate return transport track because the empty containers 380 can be transported via the passing lane to the entry stages E.sub.n where they are received by the entry stages E.sub.n. The refilling of the small transport containers 380 is then effected by means of new objects of value coming from the preparation stage V via the transport tracks 140.
[0081]
[0082] The pick-and-place function is preferably used to directly grab a small transport container with suitable contents and transport it to the appropriate handover point, e.g. to a free place on the transport loop or directly to a processing module P.sub.1n or A-machine or also E-machine. The pick-and-place robot 705 can also be employed to change the order of the small transport containers on the conveyor plants, such as in this example the transport loops 420, or to transport small transport containers from one transport loop to the other. In a particularly preferred embodiment, a gripping device 705 is utilized to move the small transport containers between different layers of transport loops or storage transport levels disposed vertically one above the other. This permits a particularly space-saving construction.
[0083]
[0084] In the preferred embodiment, the transport loops 420 contact each other in constructional members that have a diverter function, so that the path of the small transport containers can be reliably controlled. The small transport containers are transported on the transport loops 420 with the aid of adhesive friction and sliding friction. The small transport containers are brought to a halt at the appropriate positions so that the small transport containers and/or the objects of value can be taken therefrom.
[0085] Such a network of conveyor plants 141, 142 and 420 allows very diverse and flexible transport and processing paths and is therefore very adaptable. In particular, it allows to direct objects of value or packs of objects of value in targeted fashion to individual or a defined sequence of processing modules or processing machines P.sub.1n. The same applies to the supply systems of the output modules or machines A.sub.n, in which the trustworthy packs of objects of value are configured and packaged for the purpose of outbound delivery. In this way, the mechatronic system becomes almost fully configurable in terms of its function and its components, devices and processing modules.
[0086]
[0087] In addition, the mechatronic system 910 has at least one diverter 916 (or other connection module) that is attached to the preparation stage V with the aid of conveyor plants 915 and forwards objects of value to the entry stages E.sub.n of the secured processing system 910 with the aid of further conveyor plants 915. Therefore, all input points E.sub.n are redundant and designed to be particularly fail-safe. The feed to the appropriate input points E.sub.n and the activation of the suitable functions in the input E is effected by the control S, in particular in dependence on advance information IV obtained in the preparation stage V. With the diverters 916, objects of value can be distributed in parallel to several entry stages E.sub.n. This permits jams to be avoided during the processing of inbound deliveries. Such a parallelization is not only possible for the transport of objects of value to the entry stages E.sub.n. The transport between the entry stages E.sub.n and/or the machines P.sub.n and/or A.sub.n can also be parallelized in this way (not explicitly drawn).
[0088] The mechatronic system 910 is constructed such that the entry stages E.sub.n and the processing stages or processing machines P.sub.n are connected with the aid of cyclically circulating transport loops 420. Furthermore, the processing machines P.sub.n are likewise connected to the output machines A.sub.n with the aid of a cyclically circulating transport loop 420. The storage transport system for objects of value in the mechatronic system 910 presents itself in two parts in this embodiment example. Small transport containers 381 with untrustworthy contents are separated from small transport containers 382 with trustworthy contents. The cyclically circulating transport loops 420 which connect the entry stages E.sub.n and processing machines P.sub.n of the processing area, only transport objects of value that have not yet been processed by the machines P.sub.n. The cyclically circulating transport loops 420, which connect the processing machines P.sub.n and the output machines A.sub.n, only transport objects of value that have already been processed and thus validated. This allows a clear spatial demarcation between processed and not yet processed objects of value in the mechatronic system 910.
[0089]
[0090] The security housing 905 and the additional blockable security area 1005 allows the mechatronic system 1010 to react to failures in different ways. In the case of simple failures that can be easily and quickly remedied, it is usually not necessary to remove all the objects of value or all the filled small transport containers 381 and 382 from the transport loops 420 or conveyor plants 1017 or the entry stages E.sub.n, the processing machines P.sub.n and the output machines A.sub.n. In the event of serious failures, such as fire outbreak, it is in most cases necessary to move all the objects of value from the less secured areas 905 of the mechatronic system 1010 to more secured areas 1005. As there are two different security areas in this embodiment, on the one hand, downtimes due to the just described failures can be reduced, and on the other hand, security measures for reacting to a multitude of different failures can be kept available.
[0091]
[0092] The control S monitors, examines and controls the provision and activation of the required stages, modules and machines E.sub.n, P.sub.n or P.sub.nm, A.sub.n, 140, 141, 142, 143, T, 325, 420, 1017, . . . and the individual method steps. For this purpose, the control S collects and uses information from the preparation stage V, the mechatronic system 110, 210, 310, 410, 510, 610, 710, 810, 910 or 1010 and the post-processing stage L.
[0093] The process can also have intermediate steps that have not been mentioned, it can combine steps and go through them in a different order.
[0094] The method allows a comprehensive control and examination and thus optimal processing of the objects of value, which can be adapted to changing delivery and demand conditions. In this way, the method increases the reliability, security and plannability of the system.
[0095]
[0096] Step 1210 consists of checking and/or generating and/or complementing and/or correcting the preparation information in the preparation step V.
[0097] Step 1220 includes utilizing advance information in a controlling information technology system and/or the control S. Preferably, a combination of the advance information IV from the preparation area V with the request information IA from the delivery stage L is effected. In addition, further information from future predictions and past evaluations based on digital data analyses is added as required and available.
[0098] Step 1230 comprises sending control signals to the processing system 100, 200, 300, 400, ff. This controls the provision, linking and activation of the stages, modules and machines. In addition, the appropriate configuration is effected on the machines, in particular the interconnection of the individual processing modules P.sub.nm.
[0099] In step 1240, the activation of the transport elements, e.g. with regard to direction, speed, diverter position, etc., is effected not only on the basis of the advance information IV, but in particular on the basis of the status information, where exactly which small transport containers with which filling are located, and the request information IA. Thus, the control S controls the position and movement of the objects of value and the possibility of accessing the objects of value.
[0100] In step 1250, the activation of appropriate temporary storages Z is effected, e.g. in order to bring objects of value stored outside the processing area or small transport containers with objects of value into the storage transport system when the system is started.
[0101] In step 1130, the control of the input of the prepared objects of value is effected, the advance information IV being utilized to control the most appropriate entry stages E.sub.n.
[0102] In step 1140, the activation, combination, control and of the most appropriate processing modules P.sub.nm as well as the conveyor plants and temporary storage Z is effected.
[0103] Step 1150 comprises assembling and outputting the trustworthy packs of objects of value in the output stages A.sub.n, likewise controlled via advance information IV and request information IA.
[0104] Step 1260 includes deciding whether to outbound-deliver or stock the finished trustworthy packs of objects of value.
[0105] Step 1160 comprises, when an outbound delivery decision is made, the secure handover to the delivery stage L and the outbound delivery of the trustworthy packs of objects of value.
[0106] According to the method described herein for producing trustworthy packs of objects of value, e.g. bank notes pass through at least one subsystem or stage E.sub.n for the input, at least one subsystem or stage P.sub.n for processing or for the recognizing and sorting processing, and at least one subsystem or stage A.sub.n for assembling and outputting defined and trustworthy packs of objects of value. In addition, there is present at least one subsystem S for control and at least one adaptive subsystem for transport which consists of conveyor plants and, if required, subsystems Z for temporary storage and buffering semifinished packs of objects of value. In most cases, there is also a connection to existing vault or stocking systems.
[0107] The method is based on the system-controlled filling, movement and emptying of small transport containers, which can be designed e.g. as containers, grippers or clamps. According to the invention, the processing plan of how to move and process the small transport containers that can be filled with objects of value is worked out by the control S, which utilizes advance information IV, operating condition information IP and preferably also request information IA for this purpose.
[0108] The usually first step of the method is to receive objects of value or packs of objects of value, which are still in inbound delivery containers, in a preparation stage V and to prepare them for the further processing steps. This preparation stage V, in the sequence, lies still before the subsystem E for input but according to the invention V already provides advance information IV in order to control the system and the subsystems E, P, A, T, Z, etc.
[0109] In the preparation stage V, the delivered objects of value are positioned in a receiving means where they can be fed to further processing by one of the entry stages E.sub.n. These processing steps can also be included in a comprehensive optimization of the processing of the objects of value and of the packs of objects of value by the system.
[0110] Thereafter, the objects of value can already be placed in small transport containers 380, which thus contain as their contents a quantity of objects of value that is not precisely defined and not yet defined as trustworthy. These small transport containers 381 are preferably utilized to transport the objects of value from the preparation stage V to the input stations E.sub.n via an adaptively controlled upstream preparatory transport system. Triggering the appropriate input stations E.sub.n is performed by the control S in particular on the basis of the advance information IV.
[0111] The system has available, often at the same time with numerous pieces of advance information IV, numerous pieces of request information IA for requesting packs of objects of value to be delivered. This request information IA includes which customer should receive which number of which objects of value as a trustworthy pack. Alternatively, this request information IA arrives not until during the ongoing processing or it is predicted based on data analyses.
[0112] There is thus advance information IV which is generated and/or received and/or utilized in the preparation stage V, and request information IA which is generated and/or received and/or utilized in the system of the invention.
[0113] A control unit S receives advance information IV, request information IA and performance information IP, e.g. about the availability of apparatuses and elements E, A, P, T, Z in the system, as well as information IT about the condition of the conveyor plants and the position of the transport containers or objects of value in the system. Depending on all this information, the system now controls the further processing via transporting, measuring, checking and sorting up to the assembling and outbound delivery of the requested trustworthy packs of objects of value.
[0114] The objects of value are handed over to at least one transport system in the subsystem area P, which ultimately forwards the objects of value to at least one device P.sub.n for recognizing, checking, counting, accounting and/or sorting objects of value. Preferably, the handover of the filled small transport containers 381 takes place via the input E to the adaptive transport system, which leads to the activated processing modules P.sub.nm. According to the invention, also the adaptive transport system is controlled on the basis of the advance information IV, the operating condition information IP or IT and/or on the basis of the request information IA, preferably by advance information IV in combination with request information IA.
[0115] The subsystem P with its devices and automatic machines performs the processing, in particular selected from recognizing, checking, counting, accounting and sorting of objects of value. In the subsystem area P, ready apparatuses and/or elements are combined into an activated subsystem P in order to recognize and/or sort and/or count and/or check and/or account and/or forward the objects of value as required. In the preferred case, the control S produces the activated subsystem P for processing in an optimized manner, whereby elements that are not required are not activated or used elsewhere.
[0116] The control of the transport path of the small transport containers and/or the utilization of the apparatuses in the processing subsystems P.sub.n or P.sub.nm depends on the preparation information IV and/or the request information IA and/or the performance information IP and/or the information IT etc., i.e. on all the information that is taken up, processed and sent by the control S. The objects of value are taken from the small transport containers preferably for the purpose of processing and are subsequently recognized and/or checked and/or counted and/or sorted in at least one processing stage or processing unit P.sub.n, so that trustworthy and absolutely defined information about the objects of value with regard to quality, authenticity, value etc. is the result. The trustworthy value information for the production of semifinished trustworthy packs or finished trustworthy packs of objects of value or bank notes is created in the processing system P.
[0117] The processing of the objects of value produces, by means of e.g. sorting and counting, absolutely defined and trustworthy objects of value and therefrom, depending on control instruction, packs of objects of value to which the value information is assigned. These trustworthy packs do not necessarily have to be the requested packs at this point, but can be semifinished packs that are further transported and/or temporarily stored.
[0118] Semifinished trustworthy packs are filled into suitable small transport containers and/or directed to other suitable containers or devices depending on trustworthy value information and request information IA. These semifinished trustworthy packs with value information are preferably surrounded by secure small transport containers. If required, they are temporarily stored in subsystems Z or in the transport system or are directly forwarded to the assembling and subsequent output A. The control S controls the temporary storing and/or forwarding depending on the preparation information IV and/or the request information IA etc.
[0119] After processing in at least one subsystem P, the trustworthy packs of objects of value produced are preferably guided by an adaptive transport system to assembling and output A in dependence on the request information IA. The assembling as part of subsystem A produces from appropriate, defined and trustworthy packs with suitable value information the requested defined and trustworthy packs with the requested value information. In the output subsystem A, these are placed in outbound delivery containers and the outbound delivery containers such as safe bags, Nota Tracc Trays or ATM cassettes are closed. Alternatively, the outbound delivery packs are securely wrapped in foil, e.g. if entire packs of bundled sorted-out bank notes are to be delivered back to the central bank. The outbound delivery packs are further transported through the outbound delivery device, e.g. a lock, for the outbound delivery to customers through an outbound delivery transport system, which is usually effected by transport devices outside the system according to the invention and whereby no small transport containers but outbound delivery containers are transported.
[0120] In the preferred embodiments, the system comprises a system for processing-control S that controls the activation and combination of the subsystems, apparatuses and devices. In addition, the system may have a processing information system for managing, in particular, the value information and ownership information of the objects of value in association with the packs of objects of value in the system. Such a processing-information system permits the identification of the objects of value stored in the small transport containers and fed to the output packs and the deliveries produced with these. Here, attention is paid to the highest level of security and freedom from faults in order to maintain the trustworthiness achieved in the processing in the subsystem P.
[0121] The method is characterized in particular by the fact that already in the preparation stage V the advance information IV used by the control S is generated, which advance information is utilized for controlling the system and the subsystems. At the same time, the value information generated in the processing P is managed by means of the control S or another control information system so that the trustworthy packs can be produced and delivered at the highest security level. Moreover, it goes without saying that the accounting of the inbound-delivered objects of value and their allocation to an account is effected correctly.
Glossary
Conveyor Plant
[0122] Conveyor plants are machines and plants that are used to convey goods to be conveyed, such as transport containers. They can be divided according to the type of goods to be conveyed into conveyors for piece goods (e.g. boxes or containers) and conveyors for bulk goods (e.g. coins). Examples of conveyor plants are belt, roller or chain conveyor systems, also known as continuous lines, pick-and-place robots or vehicle systems that comprise autonomously acting modules with their own drive.
Nota Tracc Tray
[0123] A Nota Tracc Tray is a multifunctional storage and securing system for bank notes. Nota Tracc Trays can be designed with or without a protective cover and are stackable in both variants. They are suitable for the operation in a cash center, for example. To ensure the security of the cash, the trays are made of a special unbreakable plastic material. A Nota Tracc Tray is available in 3 versions for up to 3,000, 4,000 and 5,000 bank notes, and each version is obtainable with a transparent protective cover.
Pick-And-Place Robot
[0124] A pick-and-place robot is an industrial robot that can move workpieces or bins to an arbitrary position within its radius of action with the aid of a gripper arm or a rail system.
Transport Container or Small Transport Container
[0125] A transport container or small transport container is a device for taking up a not necessarily precisely defined quantity of objects, which ensures that the objects are not damaged during transport and/or cannot be removed. For this purpose, the container can be designed to be closable, for example. They can be boxes, cans, clamps, grippers or enclosing devices.
Processing Module
[0126] A processing module is a machine or part of a machine for recognizing, counting, checking, accounting or sorting objects of value. Processing modules are integrated in processing stages in serial or parallel sequence. Several processing modules can also be brought together into one module with several functionalities for recognizing, counting, checking, accounting or sorting objects of value, e.g. in order to process bank notes of different currencies.
Processing Stage
[0127] A processing stage is a machine that usually comprises several processing modules for recognizing, counting, checking, accounting or sorting objects of value. Processing stages are used to produce trustworthy packs of objects of value, e.g. banded packs of bank notes that may comprise one hundred or one thousand bank notes.
Trusted Packs of Objects of Value
[0128] A trustworthy pack of objects of value has objects of value, e.g. bank notes or coins, in a precisely defined quantity (number) and quality (authenticity, good condition, denomination and other value parameters) which both are known with the highest degree of certainty. It may be surrounded by a secure wrapping or band or a transport container.
Cyclically Circulating Transport Loop
[0129] A cyclically circulating transport loop is, e.g., a circulating transport band on which, e.g., object carriers or transport containers are transported. Cyclically circulating transport loops can be linked into networks by installing diverters that decide in which direction the object carriers are moved.
REFERENCE SIGNS
[0130] 100 system for producing trustworthy packs of objects of value [0131] V preparation stage [0132] 110 mechatronic system [0133] L delivery stage or post-processing stage [0134] S control of the mechatronic system 110 [0135] E input area with entry machines and/or entry stages of the mechatronic [0136] system 110 [0137] P processing area with processing stages of the mechatronic system 110 [0138] A output area with output machines and/or output stages of the mechatronic system [0139] Z temporary storage of the mechatronic system 110 [0140] T conveyor plant [0141] IV information from the preparation stage V [0142] IA information about requested packs of objects of value [0143] IP performance information [0144] IT information about conveyor plants and temporary storages [0145] 140 conveyor plant from preparation stage V to entry area E [0146] 141 conveyor plant on the way from E to P [0147] 142 conveyor plant on the way from P to A [0148] 143 conveyor plant from A to the delivery or post-processing stage L [0149] 155 information channel between preparation stage V and control S [0150] 156 additional information about expected inbound deliveries [0151] 160 information channel between mechatronic system 110 and control S [0152] 161 information regarding the condition and position of the objects of value [0153] 162 information for controlling the input E [0154] 163 information for controlling the processing modules or machines in the area P or the quantifying and qualifying processing [0155] 164 information for controlling assembling and output [0156] 165 information channel between the post-processing stage L and the control S [0157] 166 additional information about expected orders [0158] 200 systems for recognizing, checking, counting, accounting and sorting objects of value and assembling packs of objects of value [0159] 210 mechatronic system [0160] E.sub.n entry stage of the input area E of the mechatronic system 210 [0161] P.sub.n processing stage or machine of the processing area P of the mechatronic system 210 [0162] A.sub.n output stage or machine of the output area A of the mechatronic system 210 [0163] 245 diverters for conveyor plants 141, 142 and/or T [0164] 300 system for producing trustworthy packs of objects of value with a storage transport system [0165] 310 mechatronic system with a storage transport system [0166] 325 conveyor plant for returning empty transport containers [0167] 380 small transport container empty [0168] 381 small transport container filled with NON-trustworthy packs of objects of value [0169] 382 small transport containers filled with trustworthy packs of objects of value [0170] 400 system for producing trustworthy packs of objects of value with an area of higher security level [0171] 405 security area with higher security level [0172] 410 mechatronic system with secure temporary storage 405 [0173] 415 conveyor plant for the transport of objects of value between the preparation level V and the area with a higher security level [0174] 420 cyclically circulating transport loop as storage transport element [0175] 425 conveyor plant between storage transport system and security area 405 for small transport containers 381 [0176] 430 conveyor plant for the transport of objects of value between areas with different security levels within the mechatronic system for small transport containers 382 [0177] P.sub.nm processing modules of a processing stage or machine P.sub.n, of the processing area P of the mechatronic system 410 [0178] 500 system for producing trustworthy packs of objects of value with a branched cyclically circulating transport loop [0179] 510 mechatronic system with branched cyclic circulating transport loop [0180] 520 branched cyclically circulating transport loop [0181] 521 shortcut track in the storage transport system [0182] 522 storage track in the storage transport system [0183] 600 system for producing trustworthy packs of objects of value with a direct transfer lane [0184] 604 diverter for branching within the processing stage P.sub.1 [0185] 610 mechatronic system with transfer lanes [0186] 700 system for producing trustworthy packs of objects of value with a pick-and-place robot [0187] 705 pick-and-place robot for directly picking up and feeding selected small transport containers [0188] 710 mechatronic system with a pick-and-place robot [0189] 720 magazine [0190] 800 system for producing trustworthy packs of objects of value with a plurality of networked conveyor plants 141, 142 and 420 [0191] 810 mechatronic system with a plurality of networked conveyor plants 141, 142 and 420 [0192] 900 system for producing trustworthy packs of objects of value with security housing [0193] 905 security housing [0194] 910 mechatronic system with security housing [0195] 915 conveyor plant from the preparation stage V to a diverter [0196] 916 diverter for conveyor plant 915 [0197] 1000 system for producing trustworthy packs of objects of value with temporary security storage [0198] 1005 temporary security storage with higher security level [0199] 1010 mechatronic system with temporary security storage 1005 [0200] 1015 transport loop within the area with higher security level [0201] 1017 transport loop for connecting one of the transport loops 420 with the transport loop 1015 in the temporary security storage [0202] 1100 method for controlling a system for recognizing, checking, counting, accounting and sorting objects of value and assembling packs of objects of value [0203] 1110 inbound delivery to preparation stage V [0204] 1120 opening the inbound delivery containers in the preparation stage V [0205] 1130 input of the objects of value into entry stages E.sub.n [0206] 1140 processing objects of value in the processing area P [0207] 1150 assembling and outputting packs of objects of value [0208] 1160 outbound delivery of objects of value in the delivery stage L [0209] 1200 method for producing trustworthy packs of objects of value with control on the basis of advance information [0210] 1210 opening inbound delivery containers at preparation stage V and receiving and/or checking and/or generating advance information IV [0211] 1220 utilization of preparation information IV and request information IA [0212] 1230 activation of appropriate apparatuses and devices in E, P and A [0213] 1240 activation of the transport elements [0214] 1250 activation of the appropriate temporary storage Z [0215] 1260 controlling whether temporary storage or stocking in the vault or outbound delivery