The present application claims priority under 35 U.S.C. § 119 to Japanese Patent Application No. 2023-014140, filed on Feb. 1, 2023, the contents of which application are incorporated herein by reference in their entirety.
The present disclosure relates to a device and a method for managing an automated parking of a vehicle in a parking lot.
JP 2021049868 A discloses a technique for performing an automated load processing of an AVP (Automated Valet Parking) vehicle in a parking lot with a mix of AVP vehicles and non-AVP vehicles. In the related art, when performing the automated load processing, it is determined whether a vehicle parked next to an empty space where a subject vehicle is scheduled to park is an AVP vehicle. If the parked vehicle is determined to be the AVP vehicle, a parking interval between the parked AVP vehicle and the subject vehicle is narrower than a case where the parked vehicle is determined to be the non-AVP vehicle.
Consider a case where the AVP vehicle is parked in a parking lot other than a home parking lot, for example, a parking lot of a commercial facility, a parking lot of an accommodation facility, or a parking lot of an airport. Here, in general, vehicles with high selling prices, rare and popular vehicles tend to be at higher risk of being stolen while parked. Therefore, it is likely that users of the vehicles with such a high risk of theft take adequate precautions against theft in their home parking lot. It is also expected that they expect adequate protections against theft for parking lot other than home parking lot. Therefore, there is room for technological development to meet these expectations.
An object of the present disclosure is to provide a technique capable of enhancing anti-theft measures in parking lot other than home parking lot.
A first aspect relates to an automated parking management device for managing an automated parking of a vehicle in a parking lot. The automated parking management device includes a storage device that has already been loaded in the parking lot and a location information of a scheduled parking spot of a load scheduled vehicle that is scheduled to load in the parking lot and a processor configured to perform an organization processing for organizing an automated parking location of a vehicle in the parking lot. In the organization processing, the processor calculates a degree of anti-theft necessity for the loaded vehicle and the load scheduled vehicle for each vehicle. The processor calculates a degree of theft resistance for each parking spot based on the map information of the parking lot, the location information of the loaded vehicle, and the location information of the load scheduled vehicle. The processor determines an automated parking location of the loaded vehicle and the load scheduled vehicle based on the degree of anti-theft necessity and degree of theft resistance such that a vehicle with a higher degree of anti-theft necessity is parked in the parking spot with a higher degree of theft resistance.
A second aspect relates to an automated parking management device for managing an automated parking of a vehicle in a parking lot. The automated parking management device includes a storage device that stores a map information of the parking lot and a location information of a loaded vehicle that has already been loaded in the parking lot and a processor configured to perform an organization processing for organizing an automated parking location of a vehicle in the parking lot. In the organization processing, the processor calculates a degree of anti-theft necessity for the loaded vehicle for each vehicle. The processor calculates a degree of theft resistance for each parking spot based on the map information of the parking lot and the location information of the loaded vehicle. The processor determines an automated parking location of the loaded vehicle based on the degree of anti-theft necessity and degree of theft resistance such that a vehicle with a higher degree of anti-theft necessity is parked in the parking spot with a higher degree of theft resistance.
A third aspect relates to an automated parking management method for managing an automated parking of a vehicle in a parking lot. The automated parking management method includes performing an organization processing for organizing an automated parking location of a vehicle in the parking lot. In the organization processing, the automated parking management method includes:
A fourth aspect relates to an automated parking management method for managing an automated parking of a vehicle in a parking lot. The automated parking management method includes performing an organization processing for organizing an automated parking location of a vehicle in the parking lot. In the organization processing, the automated parking management method includes:
According to the present disclosure, the automated parking location of the load scheduled vehicle and the loaded vehicle are organized such that the vehicle with the higher degree of anti-theft necessity is parked in the parking spot with the higher degree of theft resistance. Alternatively, the automated parking location of the loaded vehicle is organized such that the vehicle with the higher degree of anti-theft necessity is parked in the parking spot with the higher degree of theft resistance. This will strengthen anti-theft measures. Thus, users can use the parking lot managed by this disclosure with peace of mind.
An automated parking management device and an automated parking management method according to an embodiment of the present disclosure will be described with reference to the appended drawings.
The loaded vehicle 2 and the load scheduled vehicle 4 are parked in a parking spot PS provided in the parking lot 3. The parking spot PS includes a parking facility place inside the parking frame and a parking facility place outside the parking frame. The parking facility in the parking frame is represented by, for example, a parking spot P1, a parking spot P2, or the like. In the example shown in
On the other hand, examples of the parking place outside the parking frame include a place not partitioned by the parking frame, a path, and the like. The parking place outside the parking frame is represented by OP1, OP2, or the like as illustrated in
The parking lot 3 may be configured such that the obstacle 5 is provided around the parking lot 3 or may be configured such that the obstacle 5 is provided inside the parking lot 3. The obstacle 5 is exemplified by a wall, a pillar, and the like.
The automated parking management device 1 takes anti-theft measures for each of the loaded vehicle 2 and the load scheduled vehicle 4. As an example of the theft prevention measure, automated parking locations of the loaded vehicle 2 and the load scheduled vehicle 4 are organized. Specifically, the automated parking locations of the loaded vehicle 2 and the load scheduled vehicle 4 scheduled are organized based on a degree of anti-theft necessity RTP of theft prevention and a degree of theft resistance TR.
The degree of anti-theft necessity RTP is set for each of the loaded vehicle 2 and the load scheduled vehicle 4. The degree of anti-theft necessity RTP of theft prevention is expressed by extremely high (or 4), high (or 3), medium (or 2), low (or 1), or the like. In the example shown in
The degree of theft resistance TR is set for each parking spot PS. The degree of theft resistance TR is expressed by extremely high (or 4), high (or 3), medium (or 2), low (or 1), or the like. In the example shown in
The automated parking management device 1 generates an organization plan for forming the automated parking locations of the loaded vehicle 2 and the load scheduled vehicle 4 based on the degree of anti-theft necessity RTP of the theft prevention and the degree of theft resistance TR. To be more specific, the automated parking management device 1 determines the automated parking location of the loaded vehicle 2 and the load scheduled vehicle 4 such that the vehicle with a higher degree of anti-theft necessity RTP is parked in the parking spot PS with a higher degree of theft resistance TR in the generation of the organization plan. For example, the automated parking management device 1 determines the automated parking location of the load scheduled vehicle 4 to be the parking spot PS of the degree of theft resistance TR corresponding to the degree of anti-theft necessity RTP set in the load scheduled vehicle 4.
Then, the automated parking management device 1 determines whether or not the loaded vehicle 2 is parked in the parking spot PS of the load scheduled vehicle 4 determined in the generation of the organization plan. When the loaded vehicle 2 is not parked in the parking spot PS of the load scheduled vehicle 4, the automated parking management device 1 ends the generation of the organization plan.
On the other hand, when the loaded vehicle 2 is parked in the parking spot PS of the load scheduled vehicle 4, the automated parking management device 1 further generates an organization plan. Specifically, the automated parking management device 1 determines the automated parking location of the loaded vehicle 2 to be another parking spot PS having the degree of theft resistance TR corresponding to the degree of anti-theft necessity RTP set for the loaded vehicle 2.
In the example shown in
Further, as shown in
Further, as shown in
As shown in
After the organization plan is generated, as illustrated in
The various information stored in the storage device 30 includes map information 40 of the parking lot 3, location information 41 of the loaded vehicle 2, location information 42 of a scheduled parking spot of the load scheduled vehicle 4, and vehicle registration information 50. The various information also includes an automated parking management program. The map information 40 of the parking lot 3 includes positional information of the obstacles 5 (walls, pillars, and the like), positional information of the parking spots PS, and the like. The vehicle registration information 50 includes a parking period information 51, a vehicle line information 52, an anti-theft request information 53, a theft history information 54, and the like.
The automated parking management program is a computer program executed by the processor 20. The processor 20 executes the automated parking management program, and thus the function of the information processing unit 10 is realized. The automated parking management program may be stored in the memory device 30, may be stored in a memory built in the processor 20, or may be recorded in a computer-readable storage medium.
The communication device 60 communicates with the outside of the automated parking management device 1. For example, the communication device 60 communicates with the loaded vehicle 2 and the load scheduled vehicle 4.
First, it is considered that the automated parking management device 1 calculates the degree of anti-theft necessity RTP based on the parking period information 51. In the example shown in
Next, it is considered that the automated parking management device 1 calculates the degree of anti-theft necessity RTP based on the vehicle line information 52. In the example shown in
Next, it is considered that the automated parking management device 1 calculates the degree of anti-theft necessity RTP of the theft prevention based on the anti-theft request information 53. In the example shown in
Finally, it is considered that the automated parking management device 1 calculates the degree of anti-theft necessity RTP based on the theft history information 54. In the example shown in
Based on this, a specific example of calculating the degree of anti-theft necessity RTP for each vehicle will be described. In the example shown in
In the example shown in
The automated parking management device 1 calculates the degree of theft resistance TR for each parking spot PS based on map information 40 of the parking lot 3, location information 41 of the loaded vehicle 2, and location information 42 of a scheduled parking spot of the load scheduled vehicle 4. Specifically, the automated parking management device 1 determines the situation around the parking spot PS for each parking spot PS based on the map information 40 of the parking lot 3, the location information 41 of the loaded vehicle 2, and the location information 42 of the scheduled parking spot of the load scheduled vehicle 4. Thereafter, the automated parking management device 1 sets the degree of theft resistance TR corresponding to the situation around the parking spot PS for each parking spot PS.
In the example shown in
The parking spot P1 having the degree of theft resistance TR of “high” shown in
Here, the parking spot PS that satisfies the condition that the degree of theft resistance TR is “extremely high (or 4)” will be considered. For example, as illustrated in
As described above, in the automated parking management device 1 according to the first embodiment, the automated parking locations of the loaded vehicle 2 and the load scheduled vehicle 4 are organized based on the degree of anti-theft necessity RTP and the degree of theft resistance TR so that the vehicle having the high degree of anti-theft necessity RTP is parked at the parking spot PS having the high degree of theft resistance TR. This strengthens the anti-theft measure. Therefore, the user can use the parking lot 3 without anxiety.
In step S100, the information processing unit 10 acquires various information. Thereafter, the process proceeds to steps S110 and S120, respectively. The various information includes map information 40 of the parking lot 3, location information 41 of the loaded vehicle 2, location information 42 of a scheduled parking spot of the load scheduled vehicle 4, parking period information 51, vehicle line information 52, anti-theft request information 53, and theft history information 54.
In step S110, the information processor 10 calculates the degree of anti-theft necessity RTP for the loaded vehicle 2 and the load scheduled vehicles 4. Thereafter, the process proceeds to step S130.
In step S120, the information processor 10 calculates the degree of theft resistance TR for each parking spot PS based on the map information 40 of the parking lot 3, the location information 41 of the loaded vehicle 2, and the location information 42 of the scheduled parking spot of the load scheduled vehicle 4. Thereafter, the process proceeds to step S130.
In step S130, the information processing unit 10 determines the automated parking location of the loaded vehicle 2 and the load scheduled vehicle 4 such that the vehicle with a higher degree of anti-theft necessity RTP is parked in the parking spot PS with a higher degree of theft resistance TR, based on the degree of anti-theft necessity RTP and the degree of theft resistance TR. Thereafter, the process proceeds to step S140.
In step S140, the information processing unit 10 executes a parking instruction for the vehicle.
In the automated parking management device first embodiment according to the first embodiment described above, the organization target of the automated parking location is the loaded vehicle 2 and the vehicle scheduled to be loaded 4, but the organization target of the automated parking location may be only the loading vehicle 2. According to the automated parking management device 1 of the second embodiment, the automated parking location of only the loaded vehicle 2 is organized. Hereinafter, an outline of the automated parking management device 1 according to second embodiment will be described.
Therefore, as shown in
It is considered that the loaded vehicle 2A is parked at another parking spot PS. Since the degree of anti-theft necessity RTP set for the loaded vehicle 2A is “medium”, the automated parking management device 1 may organize the automated parking locations of the loaded vehicle 2A so that the loaded vehicle 2A are parked in the parking spot P2 where the degree of theft resistance TR is “medium”. That is, the automated parking management device 1 may be organized to interchange the automated parking locations of the loaded vehicle 2A and the loaded vehicle 2B.
As described above, according to the automated parking management device 1 of the second embodiment, the automated parking locations of the loaded vehicle 2 is organized such that the vehicle with a higher degree of anti-theft necessity RTP is parked in the parking spot PS with a higher degree of theft resistance TR. This strengthens the anti-theft measure. Therefore, the user can use the parking lot 3 without anxiety.
The processing example of the information processing unit 10 in the automated parking management device 1 according to the second embodiment is the same as the processing illustrated in
In detail, in the information processor 10 of the automated parking management device 1 according to the second embodiment, the various information of the step S100 includes the map information 40 of the parking lot 3, the location information 41 of the loaded vehicle 2, the location information 42 of the scheduled parking spot of the load scheduled vehicle 4, the parking period information 51, the vehicle line information 52, the anti-theft request information 53, and the theft history information 54.
In the information processor 10 of the automated parking management device 1 according to the second embodiment, the processing is performed by replacing the “loaded vehicle 2 and the load scheduled vehicle 4” in the above-described step S110 and step S130 with the “loaded vehicle 2”.
Further, in the information processing unit 10 of the automated parking management device 1 according to the second embodiment, the degree of theft resistance TR is calculated for each parking spot PS based on the map information 40 of the parking lot 3 and the location information 41 of the loaded vehicle 2.
Number | Date | Country | Kind |
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2023-014140 | Feb 2023 | JP | national |