Management system, management method, and program
Patent Information
- Application Number
- JP2025501923
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-07-14
- Publication Date
- 2025-09-24
- Estimated Expiration
- 2043-02-20
AI Technical Summary
Current systems for renting mobile devices, such as electric kick bikes, lack an efficient method to confirm that the rented items have been returned to the correct location without burdening the user with additional responsibilities.
A management system equipped with a medium holding unique information about the mobile device and a reading device at the management location, which reads and transmits this information to a server, allowing for verification of the return location without user intervention, using RFID, Bluetooth, or camera-based technologies.
Ensures that rented items are accurately confirmed to be returned to the correct location without placing a burden on the user, automating the return verification process through server management and potential camera-based image analysis.
Abstract
Description
Management system, management method, and recording medium
[0001] The present disclosure relates to a management system, a management method, and a recording medium.
[0002] There are services that allow users to rent vehicles such as electric kick bikes. For example, Patent Literature 1 discloses a technology that enables a rental object to be rented to a user using a mobile terminal of the user to whom the rental object is rented and a short-range wireless communication unit installed in the rental object.
[0003] Japanese Patent Application Laid-Open No. 2020-035496
[0004] However, it is necessary to confirm that the rental item lent to the user has been returned to the return location.
[0005] An example of an objective of the present disclosure is to provide a management system that can confirm that an item has been returned to the correct location without imposing a burden on the user.
[0006] A management system in one aspect of the present disclosure includes a mobile body equipped with a medium that stores the mobile body's own unique information, and a reading device installed at the management location of the mobile body, and the reading device includes a reading means for reading the unique information and a transmitting means for transmitting the unique information and information about the management location of the reading device.
[0007] A management system in one aspect of the present disclosure is provided at a management location of a mobile body and includes a medium that stores information about the management location and a reading device, and the reading device includes a reading means that reads the information about the management location and a transmission means that transmits the information about the management location and unique information of the user or the mobile body itself.
[0008] In one aspect of the present disclosure, a management method includes a computer reading unique information of a mobile object stored in a medium provided in the mobile object, and transmitting the unique information and information about the management location of the computer.
[0009] In one aspect of the present disclosure, a management method includes a computer reading information about a management location stored on a medium provided in the management location of a mobile object, and transmitting the information about the management location and unique information of the user or the mobile object itself.
[0010] In one aspect of the present disclosure, a recording medium stores a program that causes a computer to execute a process of reading the mobile object's own unique information stored on a medium provided in the mobile object and transmitting the unique information and information on the management location of the reading device that read the unique information.
[0011] In one aspect of the present disclosure, a recording medium stores a program that causes a computer to execute a process of reading information about a management location held on a medium provided at the management location of a mobile body and transmitting the information about the management location and unique information of the user or the mobile body itself.
[0012] According to the present disclosure, it is possible to provide a management system that can confirm that an item has been returned to the correct location without placing a burden on the user.
[0013] FIG. 1 is a block diagram showing a management system according to a first embodiment. FIG. 2 is a diagram for explaining a management location according to the first embodiment. FIG. 3 is a diagram showing a hardware configuration in which a reading device according to the first embodiment is realized by a computer device and its peripheral devices. FIG. 4 is a flowchart showing the operation of a management system according to the first embodiment. FIG. 5 is a block diagram showing a management system according to a modified example of the first embodiment. FIG. 6 is a flowchart showing the operation of a management system according to a modified example of the first embodiment. FIG. 7 is a block diagram showing a management system according to a second embodiment. FIG. 8 is a diagram for explaining the management location according to the second embodiment. FIG. 9 is a flowchart showing the operation of a management system according to the second embodiment. FIG. 10 is a block diagram showing a management system according to a modified example of the second embodiment. FIG. 11 is a diagram for explaining the management location according to the modified example of the second embodiment. FIG. 12 is a flowchart showing the operation of a management system according to a modified example of the second embodiment.
[0014] Hereinafter, with reference to the drawings, embodiments of a management system, a management method, and a non-transitory recording medium for recording a program according to the present disclosure will be described in detail. The disclosed technology is not limited to these embodiments.
[0015] [First Embodiment] Fig. 1 is a block diagram showing a management system 10 according to this embodiment. As shown in Fig. 1, the management system 10 includes a mobile object 100 equipped with a medium that stores unique information about the mobile object itself, a reading device 200, and a server device 300. The management system 10 is a system for checking whether a rented mobile object has been returned at a management location such as an unmanned port installed within a rental service area for the mobile object.
[0016] In this embodiment, the mobile object is a single-seater mobile object, and includes a bicycle, a motorized bicycle, a motorcycle, an electric kick scooter, an electric wheelchair, etc. In this embodiment, an electric kick scooter will be mainly used as an example, but the invention of the present disclosure is not limited to an electric kick scooter.
[0017] The server device 300 is a server managed by a company that provides a rental service for mobile objects. The server device 300 receives information from the reading device 200 and manages the return status of each mobile object based on the received information. For example, the server device 300 manages the status of a rental mobile object as "unavailable for rental" and a non-rented mobile object as "available for rental." When a user reserves a rental mobile object using an application program for using the rental service, the status of the mobile object stored in the server device 300 becomes "unavailable for rental." On the other hand, when the rented mobile object is returned, the status of the mobile object becomes "available for rental." The server device 300 also stores information on the return location of the rented mobile object in association with the ID of the mobile object. The server device 300 may output information indicating the rental status and return status of the mobile object to a user terminal carried by the user.
[0018] The mobile object 100 is provided with a medium such as an RFID (Radio Frequency Identification) tag, a Bluetooth (registered trademark) tag, or a sticker, and these media hold unique information such as an ID for identifying the mobile object 100. When the medium is an RFID tag or a Bluetooth tag, the unique information of the mobile object itself is stored in the tag. When the medium is a sticker, a two-dimensional code with the unique information of the mobile object 100 embedded therein is printed on it.
[0019] FIG. 2 is a diagram illustrating a management location in the first embodiment. The example in FIG. 2 shows a case where a return port is installed in front of a store. As shown in FIG. 2, a mobile object 100 has a medium 100a at its rear, and the medium 100a holds unique information. However, the position of the medium 100a is not limited to the example in FIG. 2. Also, as shown in FIG. 2, the reading device 200 is installed on a wall of the store with the reading unit 201 facing outward, and if the reading device 200 is a camera, it may be configured as a security camera.
[0020] 3 is a diagram showing an example of a hardware configuration in which the reading device 200 according to the first embodiment of the present disclosure is realized by a computer device 500 including a processor. As shown in FIG. 3, the reading device 200 includes a CPU (Central Processing Unit) 501, memories such as a ROM (Read Only Memory) 502 and a RAM (Random Access Memory) 503, a storage device 505 such as a hard disk for storing a program 504, a communication interface 508 for network connection, and an input / output interface 509 for inputting and outputting data. In the first embodiment, the reading device 200 is connected to each component via a bus 510.
[0021] The CPU 501 runs an operating system to control the entire reading device 200 according to the first embodiment of the present invention. The CPU 501 also reads programs and data from a recording medium 506 mounted in, for example, a drive device 507 into memory. The CPU 501 also functions as the reading unit 201 and transmission unit 202 according to the first embodiment, or as part of these, and executes processing or commands in the flowchart shown in FIG. 4, which will be described later, based on the program.
[0022] The recording medium 506 is, for example, an optical disk, a flexible disk, a magneto-optical disk, an external hard disk, or a semiconductor memory. The semiconductor memory or the like that is part of the recording medium is a non-volatile storage device that stores the program. The program may also be downloaded from an external computer (not shown) that is connected to a communication network.
[0023] As described above, the first embodiment shown in Fig. 1 is realized by the computer hardware shown in Fig. 3. However, the means for realizing each unit of the reading device 200 in Fig. 1 is not limited to the configuration described above. Furthermore, the reading device 200 may be realized by a single physically coupled device, or may be realized by a system consisting of two or more physically separated devices connected by wire or wirelessly.
[0024] The reading device 200 includes a reading unit 201 that reads the unique information of the mobile object 100 itself, which is stored in a medium provided in the mobile object 100, and a transmitting unit 202 that transmits the read unique information. The reading unit 201 includes means capable of reading the unique information of the mobile object 100, and is configured with an RFID reading unit, a Bluetooth tag reading unit, a camera, etc. The transmitting unit 202 transmits the read unique information to the server device 300.
[0025] 4 is a flowchart showing an outline of the operation of the management system 10 according to the first embodiment. The process according to this flowchart may be executed based on program control by the processor described above. The process according to this flowchart is triggered, for example, by an operation performed on the reading unit 201 to read the unique information of the mobile object itself.
[0026] 4, the reading unit 201 reads the unique information of the mobile object itself (step S101). Next, the transmitting unit 202 transmits the unique information and information on the management location of the reading device to the server device 300 (step S102). With this, the reading device 200 ends the processing.
[0027] In this embodiment, the transmission unit 202 transmits the unique information of the mobile object itself and the information of the management location of the reading device to the server device 300. As a result, the server device 300 can verify that the mobile object has been returned to the correct location by comparing the information of the management location with the information of the return location associated with the mobile object to be returned, without imposing a burden on the user.
[0028] [Variation of First Embodiment] Fig. 5 is a block diagram showing the configuration of the management system 11 in a variation of the first embodiment. Referring to Fig. 5, the reading device 210 includes a detection unit 211, a reading unit 212, and a transmission unit 213. The server device 310 includes a matching unit 311, a transmission unit 312, an image acquisition unit 313, a determination unit 314, and an output unit 315. In this embodiment, the configurations of the reading unit 212 and the transmission unit 213 are similar to those of the reading unit 201 and the transmission unit 202 in the first embodiment. In this embodiment, the server device 310 stores unique information of the mobile object 110 to be returned in association with information about the return location.
[0029] In this modified example, the detection unit 211 in the reading device 210 detects that the mobile object 110 has stopped. The detection unit 211 detects that the mobile object 110 has stopped using a known method, for example, by using an infrared sensor to detect that the mobile object 110 has stopped at a predetermined position in the management location. When the detection unit 211 detects that the mobile object 110 has stopped, it outputs that information to the reading unit 212. When information regarding the detection of the mobile object is input from the detection unit 211, the reading unit 212 reads the individual information of the mobile object. The method of reading the individual information by the reading unit 212 is the same as in the first embodiment.
[0030] In this modification, the matching unit 311 in the server device 310 matches the management location information received from the reading device 210 with the return location information associated with the mobile object. If the management location information matches the return location information, the matching unit 311 outputs the information to the reading device 210 via the transmission unit 312 and also outputs the information to the image acquisition unit 313. On the other hand, if the management location information does not match the return location information, the matching unit 311 transmits the information to the reading device 210 via the transmission unit 312.
[0031] When the information on the management location matches the information on the return schedule, the image acquisition unit 313 controls a camera installed in the store to acquire a captured image of the mobile object to be returned. The image acquisition unit 313 in this embodiment may be installed on the reading device 210 side. That is, when the reading device 210 receives information from the server device 310 that the return location matches, a component equivalent to the image acquisition unit 313 installed in the reading device 210 may control the camera of the store. The image acquisition unit 313 outputs the acquired captured image to the determination unit 314.
[0032] The determination unit 314 determines whether the mobile object to be returned has been returned to the designated location based on the acquired captured image. The designated location refers to, for example, the designated location of a return port such as the boxed R in FIG. 2 . The determination unit 314 determines whether the mobile object has been returned to the designated location using known image analysis. If the determination unit 314 determines that the mobile object has been returned to the designated location, it changes the management status of the mobile object stored in the server device 310 to "available for loan." On the other hand, if the determination unit 314 determines that the mobile object has not been returned to the designated location, after a predetermined time has elapsed, the image acquisition unit 313 again controls the camera installed in the store to acquire an image of the mobile object to be returned, and the determination unit 314 again determines whether the mobile object has been returned to the designated location.
[0033] The output unit 315 outputs a return result to the user based on the determination result. If the return location is different, the output unit 315 notifies the user terminal of that information. That is, if the comparison unit 311 determines that the management location information and the preset return location are different, the output unit 315 outputs a screen showing the determination result to the user terminal, etc. In this case, the output unit 315 may display map information showing the current location and the location of the return location.
[0034] Furthermore, the output unit 315 outputs the result of the return of the mobile object to the specified position by the determination unit 314. That is, when the output unit 315 receives a result from the determination unit 314 that the mobile object has been returned to the specified position, the output unit 315 outputs a screen indicating that the return has been completed to the user terminal. On the other hand, when the output unit 315 receives a result from the determination unit 314 that the mobile object has not been returned to the specified position, the output unit 315 outputs a screen prompting the user terminal to return the mobile object to the specified position. Note that the output unit 315 may output the return result to a device other than the user terminal. For example, the output unit 315 may output the return result to the reading device 210 or a display device provided on the mobile object.
[0035] 6 is a flowchart showing an outline of the operation of the management system 10 in a modification of the first embodiment. Note that the processing according to this flowchart may be executed based on program control by the processor described above.
[0036] 6, the detection unit 211 in the reading device 210 detects that the mobile object has stopped (step S111). The reading unit 212 reads the unique information stored in a medium provided in the mobile object (step S112). Next, the transmission unit 213 transmits the unique information and information on the management location of the reading device to the server device 310 (step S113).
[0037] The server device 310 receives the unique information and the management location information of the reading device (step S114). Next, the collation unit 311 collates the management location information with the return location information associated with the mobile object (step S115). If the collation unit 311 determines that the management location does not match the return location (step S116; NO), it notifies the reading device 210 via the transmission unit 312 that the return location is different (step S117). In this case, the management system 11 repeats steps S111 to S116 until the management location received from the reading device 210 matches the return location.
[0038] On the other hand, if the collation unit 311 determines that the management location matches the return location (step S116; YES), the image acquisition unit 313 controls a camera installed in the store to acquire a captured image of the mobile object to be returned (step S118). Next, if the determination unit 314 determines based on the captured image that the mobile object to be returned has been returned to the designated location (step S119; YES), it changes the status of the mobile object to "Available for Rental" (step S120). On the other hand, if the determination unit 314 determines that the mobile object to be returned has not been returned to the designated location (step S119; NO), it repeats steps S118 to S119 after a predetermined period of time has elapsed. The management system 11 may also repeat steps S118 to S119 after receiving information from the user terminal indicating that the mobile object has been returned to the designated location. This concludes the management process for the management system 11.
[0039] As described above, in the modification of the first embodiment, in the management system 11, when the detection unit 211 in the reading device 210 detects that the mobile object has stopped, the reading unit 212 reads the unique information stored on the medium provided on the mobile object. This automatically starts the procedure for returning the mobile object without any user operation. Furthermore, in the modification of the first embodiment, if the management location matches the return location, the image acquisition unit 313 controls a camera provided in the store to acquire an image of the mobile object to be returned, and the determination unit 314 determines whether the mobile object to be returned has been returned to the specified location. This allows the user to check the return status of the mobile object without sending an image of the mobile object to the server device 310. Therefore, it is possible to confirm that the mobile object has been returned to the specified location without imposing any burden on the user.
[0040] [Second Embodiment] Next, a second embodiment of the present disclosure will be described in detail with reference to the drawings. Below, the description of the second embodiment will be omitted to the extent that it does not make the description of the present embodiment unclear.
[0041] Fig. 7 is a block diagram showing the management system 12 in the second embodiment. Fig. 8 is a diagram for explaining the management location in the second embodiment. As with the computer device shown in Fig. 3, the functions of the management system 12 can be realized not only by hardware but also by a computer device and software based on program control.
[0042] The management system 12 in this embodiment includes a medium 120 that stores information about the management location of a mobile object, a reading device 220, and a server device 320. In this embodiment, the medium 120 is configured as an RFID tag, a Bluetooth tag, a sticker, or the like, and the information about the management location is stored in the medium. The medium 120 is provided on the ground, a wall, or the like of the management location. The medium 120 may be attached to a wall of a store as shown in FIG. 8. The reading device 220 is configured as a user terminal such as a tablet or smartphone carried by the user.
[0043] 7 , the reading device 220 includes a reading unit 221 and a transmitting unit 222. The reading unit 221 reads the management location information stored in the medium 120. The reading unit 221 is not limited to any means capable of reading the management location information, and may be configured, for example, as a camera. The transmitting unit 222 transmits the management location information and the unique information of the user or the mobile object itself to the server device 320, for example, via an application program installed on the user terminal. The transmitting unit 222 transmits the unique information of the user or the mobile object itself recorded in the application program to the server device 320.
[0044] 9 is a flowchart showing an outline of the operation of the management system 12 in the second embodiment. The processing according to this flowchart may be executed based on program control by the processor described above. The processing according to this flowchart is triggered, for example, by an operation performed on the reading unit 221 to read information about the management location.
[0045] 9, the reading unit 221 reads the management location information stored in the medium 120 (step S201). Next, the sending unit 222 sends the management location information and the unique information of the user or the mobile object itself to the server device 320 (step S202). With this, the reading device 220 ends the processing.
[0046] In this embodiment, the transmission unit 222 transmits information about the management location and the unique information of the user or the mobile object itself to the server device 320. As a result, the server device 320 can verify the management location information with the return location information linked to the unique information of the user or the mobile object itself, thereby confirming that the item has been returned to the correct location without imposing a burden on the user. Furthermore, because the user's own user terminal can be used as the reading device 220, the service provider does not need to prepare a separate reading device.
[0047] [Variation of Second Embodiment] Fig. 10 is a block diagram showing a management system 13 in a variation of the second embodiment. Fig. 11 is a diagram for explaining a management location in a variation of the second embodiment. Referring to Fig. 10, a reading device 230 includes a detection unit 231, a reading unit 232, and a transmission unit 233. A server device 330 includes a matching unit 331, a transmission unit 332, an image acquisition unit 333, a determination unit 334, and an output unit 335. In this embodiment, the configurations of the reading unit 232 and the transmission unit 233 are similar to those of the reading unit 221 and the transmission unit 222 in the second embodiment. In this embodiment, the server device 330 stores unique information of a mobile object or a user to be returned in association with information about a return location.
[0048] In this modification, the reading device 230 is provided on the mobile object. The location where the reading device 230 is installed is not particularly limited, and as shown in FIG. 11 , the reading device 230 may be installed near the rear wheel fender of the mobile object. The detection unit 231 of the reading device 230 detects that the mobile object has stopped using a known method. For example, the detection unit 231 detects that the stand S of the mobile object is facing downward using a sensor or that the mobile object is locked. However, these are merely examples of detecting that the mobile object has stopped, and the detection unit 231 may detect that the mobile object has stopped using other methods. Furthermore, the detection unit 231 may detect that the mobile object has stopped only when the mobile object is within a predetermined distance from a pre-designated return location or within a predetermined time until the pre-designated return time. In this case, the frequency of erroneous readings by the reading unit 232 can be reduced when the mobile object stops before returning to the return location.
[0049] When the detection unit 231 detects that the mobile body has stopped, it outputs that information to the reading unit 232. When the information indicating that the mobile body has stopped is input from the detection unit 231, the reading unit 232 reads the information of the management location. The method of reading the information of the management location by the reading unit 232 and the method of transmitting the information of the management location and the unique information of the user or the mobile body itself by the transmission unit 233 are the same as in the second embodiment.
[0050] In this modification, the collation unit 331 in the server device 330 collates the management location information received from the reading device 230 with the return location information linked to the unique information of the user or the mobile object itself. If the management location information and the return location information match, the collation unit 331 outputs the information to the reading device 230 via the transmission unit 332 and also outputs the information to the image acquisition unit 333. On the other hand, if the unique information of the user or the mobile object itself does not match the return location information, the collation unit 331 transmits the information to the reading device 230 via the transmission unit 332.
[0051] The method of acquiring a photographed image of a moving object by the image acquisition unit 333, the method of determining whether to return it to a specified location by the determination unit 334, and the method of output by the output unit 335 are the same as the operations of the image acquisition unit 313, the determination unit 314, and the output unit 315 in the modified example of the first embodiment.
[0052] 12 is a flowchart showing an outline of the operation of the management system 13 in a modification of the second embodiment. Note that the processing according to this flowchart may be executed based on program control by the processor described above.
[0053] 12, first, the detection unit 231 of the reading device 230 provided in the mobile object detects that the mobile object has stopped (step S211). The reading unit 232 reads information about the management location of the mobile object stored in a medium provided in the management location (step S212). Next, the transmission unit 233 transmits the information about the management location and the unique information of the user or the mobile object itself to the server device 330 (step S213).
[0054] The server device 330 receives the management location information and the unique information of the user or mobile object itself (step S214). Next, the matching unit 331 matches the management location information with the return location information associated with the user or mobile object (step S215). If the management location does not match the return location (step S216; NO), the matching unit 331 notifies the reading device 230 via the transmission unit 332 that the return location is different (step S217). In this case, the management system 13 repeats steps S211 to S216 until the management location information received from the reading device 230 matches the return location.
[0055] On the other hand, if the collation unit 331 determines that the management location matches the return location (step S216; YES), the image acquisition unit 333 controls a camera installed in the store to acquire a captured image of the mobile object to be returned (step S218). Next, if the determination unit 314 determines based on the captured image that the mobile object to be returned has been returned to the specified location (step S219; YES), it changes the management status of the mobile object to "Available for Rental" (step S220). On the other hand, if the determination unit 314 determines that the mobile object to be returned has not been returned to the specified location (step S219; NO), it repeats steps S218 to S219 after a predetermined period of time has elapsed. This concludes the management process of the management system 13.
[0056] As described above, in the modification of the second embodiment, in the management system 13, when the detection unit 231 in the reading device 230 detects that the mobile object has stopped, the reading unit 232 reads information about the management location. As a result, the return procedure for the mobile object is automatically initiated without any user operation. Furthermore, in the modification of the second embodiment, if the management location matches the return location, the image acquisition unit 333 controls a camera installed in the store to acquire an image of the mobile object to be returned, and the determination unit 334 determines whether the mobile object to be returned has been returned to the specified location. This allows the user to check the return status of the mobile object without sending an image of the mobile object to the server device 330. Therefore, it is possible to confirm that the mobile object has been returned to the specified location without imposing any burden on the user.
[0057] Although the present disclosure has been described above with reference to various embodiments, the present disclosure is not limited to the above embodiments. The configuration and details of each of the present disclosures may include embodiments to which various modifications that would be apparent to those skilled in the art are applied within the scope of the present disclosure. The present disclosure may also include embodiments in which the details described herein are appropriately combined or substituted as necessary. For example, details described using a particular embodiment may also be applied to other embodiments to the extent that no contradiction occurs. For example, although multiple operations are described in sequence in the form of a flowchart, the order of the descriptions does not limit the order in which the multiple operations are performed. Therefore, when implementing each embodiment, the order of the multiple operations may be changed as long as it does not interfere with the content.
[0058] Some or all of the above-described embodiments can be described as follows: However, some or all of the above-described embodiments are not limited to the following.
[0059] (Supplementary Note 1) A management system comprising a mobile body equipped with a medium that stores unique information of the mobile body itself, and a reading device installed at a management location of the mobile body, wherein the reading device comprises: a reading means for reading the unique information; and a transmitting means for transmitting the unique information and information on the management location of the reading device.
[0060] (Appendix 2) The management system according to Appendix 1, further comprising a detection means for detecting that the mobile body has stopped at the management location, wherein the reading means reads the mobile body's own unique information when it detects that the mobile body has stopped.
[0061] (Supplementary Note 3) A management system that is provided at a management location of a mobile body and includes a medium that holds information about the management location and a reading device, wherein the reading device includes a reading means that reads the information about the management location, and a transmitting means that transmits the information about the management location and unique information of a user or the mobile body itself.
[0062] (Supplementary Note 4) The management system according to Supplementary Note 3, wherein the reading device is provided in the mobile object.
[0063] (Appendix 5) The management system according to Appendix 4, further comprising a detection means for detecting that the mobile body has stopped, wherein the reading means reads information about the management location where the mobile body has stopped when it detects that the mobile body has stopped.
[0064] (Supplementary Note 6) The management system according to Supplementary Note 5, wherein the detection means detects that the mobile object has stopped when the mobile object is a predetermined distance from a pre-designated return location or within a predetermined time until a pre-designated return time.
[0065] (Supplementary Note 7) The management system according to Supplementary Notes 1 to 5 further includes a server device that receives information about the management location, and the server device comprises: a comparison means that compares whether the information about the management location matches a predetermined return location; an image acquisition means that, if the information about the management location matches the predetermined return location, controls a surveillance camera at the management location to acquire a captured image of the mobile object to be returned; a determination means that determines whether the mobile object has been returned to a specified location; and an output means that outputs the determination result.
[0066] (Supplementary Note 8) The management system according to Supplementary Note 7, wherein the output means outputs information indicating a position of the return location when the information on the management location does not match a preset return location.
[0067] (Supplementary Note 9) A management method in which a computer reads the unique information of a mobile object itself, which is stored in a medium provided in the mobile object, and transmits the unique information and information on the management location of the computer.
[0068] (Supplementary Note 10) A management method in which a computer reads information about a management location of a mobile object, the information being stored in a medium provided in the management location of the mobile object, and transmits the information about the management location and unique information about the user or the mobile object itself.
[0069] (Supplementary Note 11) A recording medium storing a program that causes a computer to execute a process of reading unique information of a mobile object stored in a medium provided in the mobile object, and transmitting the unique information and information on the management location of the reading device that read the unique information.
[0070] (Supplementary Note 12) A recording medium storing a program that causes a computer to execute a process of reading information about a management location stored in a medium provided in a management location of a mobile body, and transmitting the information about the management location and unique information of a user or the mobile body itself.
[0071] 10, 11, 12, 13 Management system 100, 110 Mobile body 120, 130 Medium 200, 210, 220, 230 Reading device 201, 212, 221, 232 Reading unit 202, 213, 222, 233 Transmission unit 211, 231 Detection unit 300, 310, 320, 330 Server device 311, 331 Collation unit 312, 332 Transmission unit 313, 333 Image acquisition unit 314, 334 Determination unit 315, 335 Output unit 500 Computer device 501 CPU 502 ROM 503 RAM 504 Program 505 Storage device 506 Recording medium 507 Drive device 508 Communication interface 509 Input / output interface 510 Bus
Claims
1. The system includes a mobile object having a medium for storing unique information of the mobile object itself, and a reading device installed at a management location of the mobile object, The reading device is a reading means for reading the unique information; a transmitting means for transmitting the unique information and information on the management location of the reading device.
2. further comprising a detection means for detecting that the mobile object has stopped at the management location; 2. The management system according to claim 1, wherein said reading means reads the unique information of the mobile object itself when it detects that the mobile object has stopped.
3. The system is provided at a management location of a mobile body and includes a medium for storing information about the management location and a reading device; The reading device has a reading means for reading the information of the management location; a transmitting means for transmitting the information on the management location and the unique information of the user or the mobile object itself.
4. The management system according to claim 3 , wherein the reading device is provided in the mobile object.
5. Further, a detection means for detecting that the moving body has stopped is provided, The management system according to claim 4 , wherein the reading means reads the information about the management location where the mobile object is stopped when the reading means detects that the mobile object has stopped.
6. 6. The management system according to claim 5, wherein the detection means detects that the mobile object has stopped when the mobile object is a predetermined distance from a pre-specified return location or within a predetermined time until a pre-specified return time.
7. the management system further includes a server device that receives information about the management location; the server device has a checking means for checking whether the information on the management location matches a preset return location; an image acquisition means for controlling a monitoring camera at the management location to acquire an image of the moving object to be returned when the information of the management location matches a predetermined return location; a determination means for determining whether the moving object has been returned to a designated position; 6. The management system according to claim 1, further comprising: an output unit that outputs the determined result.
8. The management system according to claim 7 , wherein the output means outputs information indicating the location of the return location when the information on the management location does not match a preset return location.
9. The computer The unique information of the mobile object itself is read from the medium stored in the mobile object, A management method in which the unique information and information on the management location of the computer are transmitted.
10. The computer reading information on the management location stored in a medium provided in the management location of the mobile object; A management method in which information about the management location and unique information of the user or the mobile unit itself are transmitted.
11. The unique information of the mobile object itself is read from the medium stored in the mobile object, A program that causes a computer to execute a process of transmitting the unique information and information on the management location of the reading device that read the unique information.
12. reading information on the management location stored in a medium provided in the management location of the mobile object; A program that causes a computer to execute a process of transmitting the information on the management location and the unique information of the user or the mobile unit itself.