A Communication Device For Managing Refuse Collection Performed According To Pre-Established Schedule, A Process For Managing Refuse Collection And A System For Managing Refuse Collection
20190279169 ยท 2019-09-12
Inventors
Cpc classification
G06F16/27
PHYSICS
H04L2101/622
ELECTRICITY
G06Q10/06311
PHYSICS
H04W4/80
ELECTRICITY
G06Q10/08
PHYSICS
Y02W90/00
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B65F1/1484
PERFORMING OPERATIONS; TRANSPORTING
B65F3/00
PERFORMING OPERATIONS; TRANSPORTING
G06Q10/06
PHYSICS
G06F16/252
PHYSICS
International classification
G06F16/27
PHYSICS
G06F16/25
PHYSICS
Abstract
A system and communication devices for managing refuse collection. The communication devices include a master device for receiving a download list and displaying the same, a plurality of slave devices attached to refuse containers, each having a MAC address. The download list comprises list of MAC addresses of the plurality of slave devices located in the communication range of the master device. The master device scans for slave devices. If a scanned MAC address of a slave device is listed on the download list, the master device sends command to the slave device to emit a signal, preferably a flashing green LED light, signalling that the refuse container needs to be emptied.
Claims
1.-24. (canceled)
25. A system for managing refuse collection performed by a refuse collection service from a refuse containers according to pre-established schedule of each refuse container emptying, the system having communication devices comprising: a master device capable of receiving a download list and displaying the same; a plurality of slave devices, each slave device being attached to a refuse container, wherein: the master device has a wireless communications module for activating each of the plurality of slave devices that are located within the communication range of the master device, each of the slave devices has a signalling LED light, a microcontroller, a wireless communications module and an independent power supply, wherein each of the slave devices has unique MAC address; wherein the download list specifies MAC addresses of the slave devices attached to refuse containers that are scheduled for emptying, whereby the master device activates the LED lights of the slave devices having MAC addresses specified in the download list to emit light of a selected color, wherein the color indicates that the refuse container is scheduled for emptying.
26. The system according to claim 25, wherein the master device is provided with a 3-axis linear accelerometer for detecting refuse container emptying movement, a GSM/GPRS module, a GSM antenna, a LCD graphic display, a keypad, a microcontroller, a Bluetooth low energy module and a battery with a recharge and power control circuitry.
27. The system according to claim 25, wherein the download list is downloaded from a server maintained by the refuse collection service via the Internet by using TCIP protocol.
28. The system according to claim 27, wherein the server contains a master database containing a data relating to each MAC address of the slave devices affixed to the refuse containers and a schedule for emptying of each refuse container.
29. The system according to claim 25, wherein independent power supply of each slave device is a rechargeable battery from an electrical means supply or a battery charger arrangement including a solar panel.
30. The system according to claim 25, wherein the slave device is affixed to the outside visible part of the refuse container, or at the underside of the lid of the refuse container.
31. The system according to claim 25, wherein the refuse containers are of any type, including containers for use in applications other than the handling of refuse.
32. A process for managing refuse collection from refuse containers according to a pre-established schedule using communication devices comprising: a master device capable of receiving a download list and displaying the same; a plurality of slave devices, each slave device being attached to a refuse container, wherein: the master device has a Bluetooth low energy module for activating each of the plurality of slave devices that are located within the communication range of the master device and a GSM/GPRS module, a GSM antenna, a LCD graphic display, a keypad, a microcontroller, and a battery with a recharge and power control circuitry; and wherein each of the slave devices has a signalling LED light, a microcontroller, a Bluetooth low energy module for receiving an activation signal from the master device and an independent power supply, wherein each of the slave devices has unique MAC address; wherein the download list specifies MAC addresses of the slave devices attached to refuse containers that are scheduled for emptying, whereby the master device activates the LED lights of the slave devices having MAC addresses specified in the download list , wherein the process comprises the steps of: activating the master device and enabling its GSM device and wireless communication module, and thereafter connecting the master device via Internet with a master database; downloading and displaying a download list from the master database on the master device LCD display, wherein the download list specifies MAC addresses of the plurality of slave devices affixed to the refuse containers that are scheduled for emptying, where said refuse containers with affixed slave devices are located in the communication range of the master device; scanning for Bluetooth modules of the plurality of slave devices affixed to the containers; determining if a MAC address of a scanned Bluetooth module of a slave devices matches a MAC address specified in the download list; establishing a connection between the master device and any slave device having a MAC address specified in the download list, and activating the LED light of the slave device having a MAC address specified in the download list to emit light of a selected color, the colored LED light visually indicating whether particular refuse container is scheduled for emptying or not.
33. The process according to claim 32, wherein thereafter establishing the connection, the master device compares MAC addresses from the download list with the MAC addresses of the connected slave devices and determines which MAC addresses of the slave devices is present on the downloaded list.
34. The process according to claim 32, wherein a 3-axis linear accelerometer provided in the slave device to detect and indicate that refuse container has been emptied, and wherein the slave device sends a signal to the master device indicating that the refuse container associated with the slave device has been emptied, wherein the MAC address of the said emptied refuse container is removed from the download list.
35. The process according to claim 34, wherein the LED light of the slave device is an intermittently flashing light activated every 60 to 120 seconds.
36. The process according to claim 32, wherein the master device sends the commands to the plurality of slave devices until all MAC addresses of the slave devices present on the download list are removed from said download list, and thereafter the LED lights of each slave device are deactivated.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] For further detail regarding preferred implementations of the present invention, reference is made to the detailed description which is provided below, taken in conjunction with the following illustrations:
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
DETAILED DESCRIPTION OF THE INVENTION
[0024] A system for managing refuse collection performed by a refuse collection service for emptying a refuse containers 120 according to pre-established schedule, the system consisting of:
[0025] a communication network provided for the refuse collection service, the refuse collection service managing a master database which can be accessed via a modem on the Internet, wherein the master database includes customers data and the schedule of emptying customers containers,
[0026] a communication devices consisting of a plurality of slave devices 110 where particular slave device 110 is affixed to the particular refuse container 120, and a master device 100, wearable by person performing a refuse collection or coupled to the service vehicle, the master device 100 capable receiving a download list over Internet connection and displaying the same, wherein the master device 100 is establishing Bluetooth connection with the plurality of slave devices 110 located in the communication range of the master device 100,
[0027] wherein the download list comprises list of MAC addresses of the plurality of slave devices 110 located in the communication range of the master device 100.
[0028] The system is typically used to manage the emptying of a plurality of refuse containers 120, particularly to the containers which located in particular area, wherein operation of emptying is performed according to pre-established schedule. Referring to the drawings, in accordance with the invention, the system includes a communication devices comprising a plurality of slave devices 110 which are provided at refuse containers, the refuse containers 120 are emptied according to the pre-established schedule (see
[0029]
[0030] The slave unit 110 typically includes a unique identifier, e.g. a unique identification code, uniquely to identify the refuse container 120 within which it is mounted. The unique identification code is presented in the master database as MAC address.
[0031] The communication network may include GPS (Global Positioning System) and/or a communication network e.g. GMS (Global System for Mobile Communications).
[0032] The system may include an identification interface for identifying an operator or user involved in the system. A schedule for emptying of the plurality of containers 120 may be downloaded from the master database and fed into the remote master device 100. Typically, the master database includes customer data and the schedule of emptying customer's container. The master database is maintained at central facility operated by city service responsible for refuse collection and management. The stored data can then be used to establish routing, and dispatch the appropriate personnel and equipment.
[0033] The master database comprises data relating to each container and pre-established schedule of each container emptying, the schedule is defined according to the customers demand. The schedule for emptying of the plurality of containers 120 at selected location is in the form of a download list which is displayed on a LCD screen of the master device 100. When the download list is communicated between the master device 100 and the master database, the master device 100 is ready for operation and activates the plurality of slave devices 110 located in the communication range of the master device 100, so that each slave device 110 receives command to start emitting an intermitting light.
[0034] The plurality of slave devices are provided with visual signalization for improved and easier managing refuse collection, wherein communication devices comprise master device 100, wearable by person performing a refuse collection or the master device 100 is coupled to the service vehicle, and a plurality of slave devices 110, wherein each slave device 110 is attached to the particular refuse container 120. The master device 100 is hooked to the belt of an employee, or in some other way, while an employee is performing emptying of the plurality of refuse containers 120. The master device 100 (see
[0035] Each of the slave devices 110 (see
[0036]
[0037] A process for managing refuse collection performed by a refuse collection service from a refuse containers 120 according to pre-established schedule, wherein each of the refuse containers 120 include affixed a communication slave device 110, and each of the plurality of slave devices 110 at selected location is communicating with a master device 100, wherein the process comprises the steps of: [0038] switching on the master device 100 and enabling its GSM device and Bluetooth low energy module, and thereafter connecting the master device 100 via Internet with a refuse collection service maintaining a master database; [0039] initialization of the master device 100 and waiting for menu event and establishing a GPRS connection; [0040] downloading and displaying a download list on the master device 100 LCD display, wherein the download list contains the list of MAC addresses of the plurality of slave devices 110 affixed to the refuse containers 120, the refuse containers 120 are scheduled for emptying, where said refuse containers 120 with affixed slave devices 110 are located in the communication range of the master device 100; [0041] scanning for Bluetooth modules of the plurality of slave devices 110 affixed to the containers 120; [0042] determining if the slave devices 110 are found; and [0043] establishing a connection between the master device 100 and the each found of the plurality of the slave devices 110.
[0044] Thereafter establishing the connection, the master device 100 compares MAC addresses from the download list with the MAC addresses of the connected slave devices 110 and determines which MAC addresses of the slave devices 110 is present on the downloaded list.
[0045] If MAC address of the particular slave device 110 is present on the download list, the master device 100 sends command to the slave device 110 to emit intermitting green LED light, the green LED light is signalling that refuse container needs to be emptied.
[0046] After the refuse container 120 is being moved in a manner that it is emptied, a 3-axis linear accelerometer provided in the slave device 110 indicates that refuse container 120 is emptied, and thereafter sends the information of to the master device 100, wherein the MAC address of the said emptied refuse container 120 is removed from the download list.
[0047] If the MAC address of the particular slave device 110 is not on the download list, the master device 100 sends command to the slave device 110 to emit intermitting red LED light, the red LED light signalling that container 120 is not scheduled for emptying.
[0048] Time of intermitting LED light of the slave device 110 is preferably in the range from 60 to 120 seconds, but another time interval can be set.
[0049] The master device 100 sends the commands to the plurality of slave devices 110 until all MAC addresses of the slave devices 110 present on the download list are removed from said download list, and thereafter the intermitting lights are disconnected.
[0050] After downloading and displaying the download list of MAC addresses of the refuse containers 120 scheduled for emptying GSM device and Bluetooth low energy module of the master device 100 are disabled.
[0051] As previously indicated, the communicating devices of the present invention can be used with any of a variety of different types of containers (including refuse containers and containers for use in applications other than the handling of refuse).
[0052] The customer data in the master database can be processed to produce customer billing which reflects a given subscriber's use of the refuse collection service (e.g., according to the number of times the subscriber's container has been emptied, the weight of the contents removed, or a combination of these parameters). The subscriber's billing can in this way reflect the actual cost of the services performed.
[0053] It will be understood that various changes in the details, materials and arrangement of parts which have been herein described and illustrated in order to explain the nature of this invention may be made by those skilled in the art within the principle and scope of the invention as expressed in the following claims.