ELEVATOR DISPATCHING
20190389692 ยท 2019-12-26
Inventors
Cpc classification
B66B2201/4653
PERFORMING OPERATIONS; TRANSPORTING
B66B2201/4615
PERFORMING OPERATIONS; TRANSPORTING
B66B1/2408
PERFORMING OPERATIONS; TRANSPORTING
B66B1/3476
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An elevator system (2) comprises at least one elevator car (6) configured for traveling along a hoistway (4) between a plurality of landing area (8a, 8b, 8c) areas (8a, 8b, 8c) located at different floors (13a, 13b, 13c). A method of controlling movement of at least one elevator car (6) in the elevator system (2) comprises receiving on at least a subset of the floors (13a, 13b, 13c) from a mobile device (24a-24e) a radio signal representative of the number of potential passengers (22) on the respective floor (13a, 13b, 13c), and controlling movement of the elevator car (6) based on the received radio signals.
Claims
1. Method of controlling movement of at least one elevator car (6) in an elevator system (2), the elevator system (2) comprising at least one elevator car (6) configured for traveling along a hoistway (4) between a plurality of landing areas (8a, 8b, 8c) located at different floors (13a, 13b, 13c), wherein the method includes: on at least a subset of the floors (13a, 13b, 13c), receiving from at least one mobile device (24a-24e) a radio signal representative of the number of potential passengers (22) on the respective floor (13a, 13b, 13c); and controlling movement of the elevator car (6) based on the received radio signal.
2. Method according to claim 1, wherein the radio signal is a radio signal which does not require performing a handshake mechanism for establishing a data connection, in particular a Bluetooth-low-energy radio signal or a Wi-Fi beacon frame.
3. Method according to claim 1, wherein the received radio signal comprises information representing a spatial distribution of mobile devices (24a-24e) on the respective floor (13a, 13b, 13c), and/or wherein the received radio signal comprises information representing a change of the spatial distribution of mobile devices (24a-24e) on the respective floor (13a, 13b, 13c) over time.
4. Method according to claim 1, wherein the method includes at least one mobile device (24a-24e) receiving radio signals from at least one other mobile device (24a-24e), and wherein the radio signals received from the at least one other mobile device (24a-24e) comprise information about the number of further mobile devices (24a-24e) from which radio signals have been received by the other mobile device (24a-24e) emitting the radio signals.
5. Method according to claim 4, wherein the method includes summing up the numbers of further and other mobile devices (24a-24e) comprised in the received radio signals, and including the sum into the radio signal emitted by the at least one mobile device (24a-24e).
6. Mobile device (24a-24e) configured for communicating with an elevator control system, the mobile device (24a-24e) being configured for receiving radio signals from other mobile devices (24a-24e) being present within a certain distance (d) from the mobile device (24a-24e); and for emitting a radio signal comprising information related to the number of other mobile devices (24a-24e) from which radio signals have been received.
7. Mobile device (24a-24e) according to claim 6, wherein the radio signals are Bluetooth radio signals, in particular a Bluetooth-low-energy radio signals, and/or Wi-Fi beacon frames.
8. Mobile device (24a-24e) according to claim 6, wherein the mobile device (24a-24e) is a smartphone.
9. Mobile device (24a-24e) according to claim 6, wherein the radio signals comprise information about the number of other mobile devices (24a-24e) from which radio signal have been received by the respective mobile device (24a-24e).
10. Mobile device (24a-24e) according to claim 9, configured to sum up the numbers of other mobile devices (24a-24e) comprised in the received radio signals and to include the sum into the emitted radio signal.
11. Elevator control system configured for controlling an elevator system (2), the elevator system (2) comprising at least one elevator car (6) configured for traveling along a hoistway (4) between a plurality of floors (13a, 13b, 13c), wherein the elevator control system comprises. a plurality of radio receivers (18a, 18b, 18c), at least one radio receiver (18a, 18b, 18c) arranged on on at least a subset of the floors (13a, 13b, 13c), wherein every radio receiver (18a, 18b, 18c) is configured for receiving radio signals emitted from a mobile device (24a-24e) according to claim 5; and a dispatcher (17) configured for generating control signals for controlling the movement of the elevator car (6) based on the received radio signals.
12. Elevator control system according to claim 11, wherein the dispatcher (17) is configured for controlling the elevator system (2) so that at least one elevator car (6) is moved to a landing area (8a, 8b, 8c) for which the largest number of passengers (22) has been detected as being present in the vicinity of the landing area (8a, 8b, 8c).
13. Elevator control system according to claim 11, wherein the dispatcher (17) is configured for controlling the elevator system (2) so that at least one elevator car (6) is moved to a landing area (8a, 8b, 8c) for which the largest number of passengers (22) has been detected as approaching the landing area (8a, 8b, 8c).
14. Elevator system (2) comprising at least one elevator car (6) configured of traveling along a hoistway (4) between a plurality of floors (13a, 13b, 13c), and an elevator control system according to claim 1.
15. Computer program configured for being executed on a mobile device (24a-24e), the computer program, when executed, causing the mobile device (24a-24e) to act as a mobile device (24a-24e) according to claim 6.
Description
DRAWING DESCRIPTION
[0023] Exemplary embodiments of the invention are described in more detail with respect to the enclosed figures.
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
DETAILED DESCRIPTION
[0030]
[0031] The elevator system 2 includes an elevator car 6 which is movably suspended within a hoistway 4 by means of at least one tension member 3. The tension member 3, for example a rope or belt, is connected to an elevator drive 5, which is configured for driving the tension member 3 in order to move the elevator car 6 along the height of the hoistway 4 between a plurality of landing areas 8a, 8b, 8c located on different heights.
[0032] Each landing area 8a, 8b, 8c is provided with a landing door 10a, 10b, 10c, and the elevator car 6 is provided with a corresponding elevator car door 12 for allowing passengers to transfer between a landing area 8a, 8b. Be and the interior of the elevator car 6 when the elevator car 6 is positioned at the respective landing area 8a, 8b, 8c.
[0033] The exemplary embodiment shown in
[0034] The elevator drive 5 is controlled by a controller 7 for moving the elevator car 6 between the different landing areas 8a, 8b, 8c.
[0035] Input to the controller 7 may be provided via an elevator car control panel 14 provided inside the elevator car 6 and landing control panels 16a, 16b, 16c provided next to the landing doors 10a, 10b, 10c on each landing area 8a, 8b, 8c. The landing control panels 16a, 16b, 16c may comprise up and down hall call buttons and/or destination call buttons.
[0036] The elevator car control panel 14 and the landing control panels 16a, 16b, 16c may be connected to the controller 7 by means of electrical lines, which are not shown in
[0037] Further, at least one radio receiver 18a, 18b, 18c is arranged on each of the floors 13a, 13b, 13c. Optionally, there may be additional floors (not shown) without a radio receiver 18a, 18b, 18c.
[0038] Each radio receiver 18a, 18b, 18c is configured for receiving radio signals emitted from mobile devices 24a, 2 4b, 24c, such as smart phones, carried by potential passengers 22 being present on the respective floors 13a, 13b, 13c.
[0039] In order to enhance the efficiency of the data transmission and reduce the load on the mobile devices 24a, 24b, 24c, the received and emitted radio signals may include Bluetooth, in particular Bluetooth-low-energy (BLE) radio signals, GPS signal, cellular communication signals, RFID signals, zigbee signals, zWave signals and/or WiFi, in particular Beacon-WiFi radio signals, which do not require performing a handshake mechanism for establishing a data connection.
[0040] The radio receivers 18a, 18b, 18c are configured for transmitting the received signals by means of electrical lines, which are not shown in
[0041] The dispatcher 17 is configured for evaluating the signals received from the radio receivers 18a, 18b, 18c for generating control signals delivered to the controller 7 for controlling the movement of the elevator car 6 according to current needs in order to improve the response of the elevator system 2 to passenger service requests and to enhance the efficiency of the elevator system 2. This in particular may result in reducing the average waiting time of the passengers 22 at the different floors 13a, 13b, 13c.
[0042] If there are floors (not shown) without a radio receiver 18a, 18b, 18c, potential passengers 22 present on said floors are not considered by the dispatcher 17 when carrying out a dispatching algorithm according to exemplary embodiments of the invention. Therefore, if any, usually only special floors used only by a small number of passengers 22 are not provided with radio receivers 18a, 18b, 18c.
[0043] The dispatcher 17 may be implemented in hardware, i.e. as an electronic circuit. The dispatcher 17 in particular may include an application specific integrated circuit (ASIC) customized for the respective tasks. Additionally or alternatively, the dispatcher 17 may include a programmable (micro-)processor, which is controlled by an appropriate program for executing the evaluation.
[0044] The details of said evaluation are described in the following with respect to
[0045]
[0046] The first floor 13a comprises a landing area 8a providing access to the elevator system 2. In the example depicted in
[0047] As mentioned with respect to
[0048] The radio receiver 18a in particular is configured for receiving radio signals from the mobile device 24a closest to the radio receiver 18a.
[0049] In case there are a plurality of mobile devices 24a, 24b, 24c within the receiving range of the radio receiver 18a, the mobile device 24a from which the strongest signal is received may be considered to be the closest mobile device 24a.
[0050] Alternatively, the plurality of mobile devices 24a within the receiving range of the radio receiver 18a may be considered to constitute a group of closest mobile devices 24a.
[0051] Each of the mobile devices 24a-24e is configured for emitting a radio signal which may be received by a radio receiver 18a of the elevator system 2. Each of the mobile devices 24a-24e is further configured for receiving similar signals emitted by other (similar) mobile devices 24a-24e located within a receiving range 25a-25e of the respective mobile device 24a-24e. The radio signals emitted by the mobile devices 24a-24e include an identifier, which allows unambiguously identifying the at least one other mobile device. The emitted radio signals further comprise the number and the identifiers of the mobiles devices 24a-24e from which the mobile device 24a-24e emitting the radio signal itself has received radio signals. Each mobile device 24a-24e forwards the information comprised in the received radio signals by including said information into the emitted radio signal.
[0052] In consequence, by receiving radio signals from neighboring mobile devices 24a-24e and emitting radio signals including the received information, the mobile devices 24a-24e being present on the first floor 13a constitute a network 20 of mobile devices 24a-24e. Said network 20 allows the radio receiver 18a located in the landing area 8a to receive a radio signal comprising information about all mobile devices 24a-24e being present on the respective floor 13a, in particular about the total number of mobile devices 24a-24e being present on the respective floor 13a. The radio signal in particular also includes information about mobile devices 24c-24e which are arranged outside the reception range R of the radio receiver 18a itself.20
[0053] The number of data transmissions required for transferring radio signal from a mobile device 24a-24e to the radio receiver 18a is denoted as the level of the respective mobile device 24a-24e. I.e., the mobile device 24a located closest to the radio receiver 18a and communicating directly with the radio receiver 18a constitutes the first level, the mobile devices 24b emitting radio signals directly received by the mobile device 24a of the first level constitute the second level. The mobile devices 24c emitting radio signals directly received by the mobile device 24b of the second level but not by the mobile devices 24a of the first level constitute the third level, etc.
[0054] Due overlapping of the receiving ranges 25a-25e of the mobile devices 24a-24e, a mobile device 24a-24e may be associated with a plurality of levels. Based on the identifier comprised in each radio signal unambiguously identifying the respective mobile device 24a-24e, such duplications are identified and the respective mobile device 24a-24e is associated only with the lowest of the plurality of levels.
[0055] As a result, the radio signal received by the radio receiver 18a includes information about the distribution of the mobile devices 24a-24e over the different levels which roughly corresponds to the spatial distribution of the mobile devices 24a-24e, and thus to the spatial distribution of potential passengers 22 (not shown in
[0056] Depending on the local characteristics of radio data transmission, mobile devices 24c-24e located on other floors 13b, 13c may be accidentally included in the network 20 as well. The errors resulting from including these additional mobile devices 24c-24e, however, are usually small and do not considerably deteriorate the result of the statistics.
[0057]
[0058] At the first time (see
[0059] At the second time (see
[0060] Optionally, the evaluation of the radio signals received by the radio receivers 18a, 18b, 18c may include not only evaluating the number of mobile devices 24a-24e within the respective levels, but also temporal shifts of the mobile devices 24a-24e (potential passengers 22) between the different levels. Identifying such temporal shifts allows determining whether the detected mobile devices 24a-24e (potential passenger 22) in average approach the landing area 8a, 8b, 8c of the respective floor 13a, 13b, 13c or move away from said landing area 8a, 8b, 8c.
[0061] This allows the controller 7 not to send elevator cars 6 to floors 13a, 13b, 13c with a large number of potential passengers 22, in case these potential passengers 22 do not approach the landing area 8a, 8b, 8c of the respective floor 13a, 13b, 13c. Instead, the elevator cars 6 may be sent to another floor 13a, 13b, 13c, in particular to a floor 13a, 13b, 13c with a larger number of potential passengers 22 approaching the respective landing area 8a, Sb, 8c. As a result, the waiting times of said passengers 22 are further reduced, and the efficiency of the elevator system 2 is enhanced even more.
[0062] The mobile devices 24a-24e in particular may include smart phones and/or tablet computers running an appropriate program (App) for performing the desired functionalities of receiving and emitting the radio signal mentioned before.
[0063] Exemplary embodiments of the invention therefore also include a program (App) configured for being run on such a mobile device 14 causing the mobile device to execute said functionalities.
[0064] Such mobile devices 24a-24e and/or programs may be distributed to potential passengers 22, in particular persons frequently using the elevator system 2.
[0065] While the invention has been described with reference to exemplary embodiments, it will be understood by those skilled in the art that various changes may be made and equivalents may be substituted for elements thereof without departing from the scope of the invention. In addition, many modifications may be made to adopt a particular situation or material to the teachings of the invention without departing from the essential scope thereof. Therefore, it is intended that the invention not be limited to the particular embodiment disclosed, but that the invention include all embodiments falling within the scope of the claims.
REFERENCES
[0066] 2 elevator system
[0067] 3 tension member
[0068] 4 hoistway
[0069] 5 drive
[0070] 6 elevator car
[0071] 7 elevator control
[0072] 8a, 8b, 8c landing area
[0073] 10a, 10b, 10c landing door
[0074] 12 elevator car door
[0075] 13a, 13b, 13c floor
[0076] 14 elevator car control panel
[0077] 16a, 16b, 16c landing control panel
[0078] 17 dispatcher
[0079] 18a, 18b, 18c radio receiver
[0080] 20 network of mobile devices
[0081] 22 passenger
[0082] 24a-24e mobile devices
[0083] 25a-25e receiving ranges