A smart park parking management method and device and a storage medium
By acquiring reservation registration information and park map information, a smart park navigation model is established. Based on visitor type, parking space navigation is provided for ground or multi-level parking garages, and parking management strategies are implemented. This solves the problem of unclear parking space status in traditional parking lot management and achieves efficient and intelligent parking management.
Patent Information
- Application Number
- CN202411577356.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2044-11-06
AI Technical Summary
Traditional parking lot management models cannot effectively manage the parking status of vehicles in the park, resulting in difficulties in finding parking spaces, low parking efficiency, and haphazard parking that affects traffic flow and high management costs.
By acquiring reservation registration information and park map information, a smart park navigation model is established. Based on visitor type, parking space navigation is provided for ground or multi-level parking garages, and parking management strategies such as overdue vehicle management and low-frequency use space management are implemented to achieve intelligent parking management.
It has improved parking efficiency, reduced management costs, and enhanced the intelligence level and user experience of parking management.
Smart Images

Figure CN119600836B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent parking, in particular to an intelligent park parking management method and device and a storage medium. BACKGROUND
[0002] As an important carrier of economic development, with the continuous expansion of industrial parks, the number of vehicles has increased sharply, and park parking management is undoubtedly a problem to be solved. The traditional parking lot management mode only manages the access permission of vehicles into the park, but the vehicles are not aware of the current state of the parking spaces in the park, making it difficult to find parking spaces and reducing parking efficiency. At the same time, if vehicles cannot find parking spaces, they will be randomly parked, affecting the passage of other vehicles, which requires manual management and is costly.
[0003] In summary, the technical problems in the related art need to be improved. SUMMARY
[0004] The present application provides an intelligent park parking management method, device and storage medium, which effectively improves the parking efficiency and reduces the cost.
[0005] In one aspect, the present application provides an intelligent park parking management method, comprising the following steps:
[0006] Obtaining reservation registration information and park map information, the reservation registration information including target company information, visitor identity information and visitor license plate information;
[0007] According to the reservation registration information, determine the visitor type, including ordinary visitors or VIP visitors;
[0008] According to the park map information, establish an intelligent park navigation model;
[0009] When the visitor type is an ordinary visitor and there is an idle ground parking space, according to the intelligent park navigation model, the visitor vehicle is navigated to the ground parking space to obtain a ground parking result;
[0010] When the visitor type is an ordinary visitor and there is no idle ground parking space, according to the intelligent park navigation model, the visitor vehicle is navigated to the stereo garage parking space by using a stereo garage scheduling strategy to obtain a stereo garage parking result, the stereo garage scheduling strategy including a stereo parking space early and late peak advance scheduling strategy, a stereo parking space overnight vehicle scheduling strategy or a stereo parking space reservation vehicle scheduling strategy;
[0011] When the visitor type is a VIP visitor, according to the intelligent park navigation model, the visitor vehicle is navigated to the VIP parking space to obtain a VIP parking result;
[0012] According to the target parking result, the visitor vehicle is parked by using a parking management strategy, the target parking result includes the ground parking result, the stereo garage parking result or the VIP parking result, and the parking management strategy includes an overtime vehicle management strategy, a low-frequency use parking space management strategy, an irregular parking vehicle management strategy, a long-term parking vehicle management strategy or a charging management strategy.
[0013] In some embodiments, the visitor type is determined according to the reservation registration information, including:
[0014] The reservation registration information is sent to a target company to obtain an access authorization result;
[0015] The visitor type is determined according to the access authorization result.
[0016] In some embodiments, the intelligent park navigation model is established according to the park map information, including:
[0017] According to the park map information, a plurality of positioning points are added on a preset map software;
[0018] The plurality of positioning points are verified in accuracy;
[0019] The park road information is extracted from the park map information;
[0020] The intelligent park navigation model is established according to the plurality of positioning points verified in accuracy and the park road information.
[0021] In some embodiments, the ground parking space navigation is performed on the visitor vehicle according to the intelligent park navigation model to obtain a ground parking result, including:
[0022] The target company position information is extracted from the park map information;
[0023] According to the target company position information and a preset parking distance, a parking space group to be selected is determined;
[0024] According to the ground parking space state, an available parking space is selected from the parking space group to be selected as a target ground parking space;
[0025] According to the target ground parking space, the intelligent park navigation model is used to generate a ground parking space navigation track;
[0026] The ground parking space navigation track is sent to a visitor client to make the visitor vehicle park in the target ground parking space to obtain the ground parking result.
[0027] In some embodiments, the stereoscopic garage parking result is obtained by performing stereoscopic garage parking lot navigation on the visitor vehicle according to the smart park navigation model and a stereoscopic garage scheduling strategy.
[0028] When the stereoscopic garage scheduling strategy is the stereoscopic parking lot peak early scheduling strategy, a late pick-up vehicle is scheduled from a low-level parking space to a high-level parking space of the stereoscopic garage, and the low-level parking space after scheduling is used as a target stereoscopic garage parking space, and the reservation pick-up time of the late pick-up vehicle is greater than a preset pick-up time threshold.
[0029] When the stereoscopic garage scheduling strategy is the stereoscopic parking lot overnight vehicle scheduling strategy, an overnight vehicle is scheduled from a low-level parking space to a high-level parking space of the stereoscopic garage, and the low-level parking space after scheduling is used as the target stereoscopic garage parking space, and the reservation pick-up time of the overnight vehicle is the next day.
[0030] When the stereoscopic garage scheduling strategy is the stereoscopic parking lot reservation pick-up scheduling strategy, a vehicle to be picked up is scheduled from a high-level parking space to a low-level parking space of the stereoscopic garage, and the low-level parking space after scheduling is used as an unusable stereoscopic garage parking space.
[0031] According to the stereoscopic garage parking space state and the white list, a stereoscopic garage parking lot navigation track is generated by using the smart park navigation model, and the stereoscopic garage parking space state includes the target stereoscopic garage parking space or the unusable stereoscopic garage parking space.
[0032] The stereoscopic garage parking lot navigation track is sent to a visitor client, so that the visitor vehicle is parked in the target stereoscopic garage parking space, and the stereoscopic garage parking result is obtained.
[0033] In some embodiments, the visitor vehicle is navigated to a VIP parking space according to the smart park navigation model, and a VIP parking result is obtained.
[0034] According to the target company information, a VIP parking space is determined.
[0035] According to the VIP parking space, a VIP parking lot navigation track is generated by using the smart park navigation model.
[0036] The VIP parking lot navigation track is sent to a visitor client, so that the visitor vehicle reaches an entrance of the VIP parking space.
[0037] A license plate of the visitor vehicle located at the entrance is obtained by a license plate recognition device.
[0038] According to the license plate of the visitor vehicle, a drop lock signal is generated, the drop lock signal is used to control the smart ground lock of the VIP parking space to perform a drop lock action, so that the visitor vehicle is parked in the VIP parking space, and the VIP parking result is obtained.
[0039] In some embodiments, the parking management of the visitor vehicle according to the target parking result includes:
[0040] When the parking management strategy is the overtime vehicle management strategy, according to the target parking result, the reservation visit start time and the reservation visit end time, parking overtime information is generated, and the parking overtime information is sent to the visitor client to remind the target visitor to take the vehicle;
[0041] When the parking management strategy is the low-frequency use parking space management strategy, according to a preset period, a parking space use condition report is generated, and the parking space use condition report is analyzed to obtain a low-frequency use parking space, the low-frequency use parking space is used as a priority parking space for parking space supply;
[0042] When the parking management strategy is the non-standard parking vehicle management strategy, according to the non-standard parking vehicle image, non-standard parking information is generated, and the non-standard parking information is sent to the visitor client to remind the target visitor to take the vehicle;
[0043] When the parking management strategy is the long-term parking vehicle management strategy, according to a preset parking time threshold and the parking time of the visitor vehicle, long-term parking information is generated, and the long-term parking information is sent to the visitor client to remind the target visitor to take the vehicle;
[0044] When the parking management strategy is the charging management strategy, according to the parking time of the visitor vehicle, parking fee information is calculated, and the parking fee information is sent to the visitor client to remind the target visitor to pay the fee.
[0045] In another aspect, the embodiments of the present application provide a smart park management device, comprising:
[0046] A visitor reservation module, the visitor reservation module is used to obtain reservation registration information and park map information, the reservation registration information includes target company information, visitor identity information and visitor license plate information;
[0047] A parking space management module, the parking space management module is used to determine a visitor type according to the reservation registration information, the visitor type includes a common visitor or a VIP visitor;
[0048] The park navigation module is configured to guide a parking space for a visitor vehicle according to the park map information, and obtain a target parking result, wherein the target parking result comprises a ground parking result, a stereo garage parking result or a VIP parking result.
[0049] The stereo garage control module is configured to guide a parking space for a stereo garage in the parking space guidance.
[0050] The parking management operation module is configured to manage the parking of the visitor vehicle according to the target parking result by using a parking management strategy, wherein the parking management strategy comprises a timeout vehicle management strategy, a low-frequency use parking space management strategy, a non-standard parking vehicle management strategy, a long-term parking vehicle management strategy or a charging management strategy.
[0051] In another aspect, an embodiment of the present application provides a computer device, comprising:
[0052] at least one processor;
[0053] at least one memory configured to store at least one program;
[0054] When the at least one program is executed by the at least one processor, the at least one processor implements the method.
[0055] In another aspect, an embodiment of the present application provides a computer readable storage medium, which stores a computer program, and the computer program is executed by a processor to implement the method.
[0056] The present application has the following beneficial effects:
[0057] The embodiment of the present application first acquires reservation registration information and park map information, then determines a visitor type according to the reservation registration information, and establishes a smart park navigation model according to the park map information, when the visitor type is a common visitor and there is an idle ground parking space, guides a ground parking space for a visitor vehicle according to the smart park navigation model, and obtains a ground parking result, when the visitor type is a common visitor and there is no idle ground parking space, guides a stereo garage parking space for the visitor vehicle according to the smart park navigation model by using a stereo garage scheduling strategy, and obtains a stereo garage parking result, when the visitor type is a VIP visitor, guides a VIP parking space for the visitor vehicle according to the smart park navigation model, and obtains a VIP parking result, and finally manages the parking of the visitor vehicle by using a parking management strategy according to the target parking result, so that parking management can be realized by different visitor types and vehicle scheduling strategies, and the parking efficiency is improved and the cost is reduced.
[0058] Other features and advantages of the present application will be set forth in the description that follows, and in part will be apparent from the description, or can be learned by practice of the application. The purposes and other advantages of the present application will be realized and attained by the structure particularly pointed out in the description and appended claims. BRIEF DESCRIPTION OF DRAWINGS
[0059] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained from these drawings without creative labor.
[0060] Figure 1 A flow chart of a smart park management method according to an embodiment of the present application;
[0061] Figure 2 A schematic diagram of the connection relationship between various modules of a smart parking management platform according to an embodiment of the present application;
[0062] Figure 3 A schematic diagram of a whole process of park parking space navigation and management according to an embodiment of the present application;
[0063] Figure 4 A structural schematic diagram of a smart park management device according to an embodiment of the present application;
[0064] Figure 5 A hardware structural schematic diagram of a computer device according to an embodiment of the present application. DETAILED DESCRIPTION
[0065] In order to make the purposes, technical solutions and advantages of the present application more clear, the present application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and do not limit the present application. When the following description refers to the drawings, the same numbers in different drawings represent the same or similar elements unless otherwise indicated. The implementation described in the following exemplary embodiments does not represent all the implementations consistent with the embodiments of the present application, but is only an example of devices and methods consistent with some aspects of the embodiments of the present application as described in the appended claims.
[0066] It can be understood that the terms "first", "second", etc. used in the present application can be used herein to describe various concepts, but unless specifically stated, these concepts are not limited by these terms. These terms are only used to distinguish one concept from another. For example, without departing from the scope of the embodiments of the present application, the first information can also be referred to as the second information, and similarly, the second information can also be referred to as the first information. Depending on the context, the word "if" as used herein can be interpreted as "when" or "upon determining" or "in response to determining".
[0067] The terms "at least one", "multiple", "each", "any" and the like used in the present application include one, two or more than two, multiple includes two or more than two, each refers to each of the corresponding multiple, and any refers to any one of the multiple.
[0068] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one skilled in the art to which the present application belongs. The terms used herein are only for the purpose of describing the embodiments of the present application and are not intended to limit the present application.
[0069] In the related art, with the rapid development of science and technology, people's requirements for the quality of life are getting higher and higher. In this context, as an important carrier of economic development, the management level and service quality of industrial parks have also received more and more attention. Among the many management links of the park, parking management is undoubtedly a problem that needs to be solved. With the continuous expansion of industrial parks, the number of vehicles has increased dramatically, resulting in a shortage of parking spaces in the park, chaotic management, and parking management difficulties have become a common phenomenon in the park. With the intelligent upgrading of industrial parks and the management of the park's vertical garage, it has been unable to meet the management needs of modern industrial parks, and new effective management methods are urgently needed to solve this problem. The traditional parking lot management mode only manages the access rights of vehicles into the park, and does not manage the navigation, parking guidance, and intelligent scheduling of vehicles entering the park, parking in the intelligent vertical garage, etc. However, vehicles are not aware of the current state of the parking space in the park, making it difficult to find a parking space and reducing parking efficiency. At the same time, vehicles that cannot find a parking space will be randomly parked, affecting the passage of other vehicles, and manual management is required, which is costly.
[0070] Therefore, the embodiments of the present application manage visitor reservations, park navigation and positioning, and parking spaces, including ground ordinary parking space management, VIP parking space management, and vertical garage parking space management, while managing overtime vehicles, non-standard parking vehicles, low-frequency use parking spaces, long-term parking vehicles, and charging management, and realizing intelligent management of ground parking spaces and vertical garage parking spaces in the park, reducing the difficulty and labor cost of parking management in the park, and improving the parking efficiency, experience and image of parking in the park.
[0071] The embodiment of the present application provides a kind of wisdom park parking management method, it is related to wisdom parking technical field.The wisdom park parking management method provided in the embodiment of the present application can be applied in terminal, also can be applied in server, it can also be software running in terminal or server.In some embodiments, terminal can be smart phone, tablet computer, notebook computer, desktop computer, smart speaker, smart watch and vehicle terminal etc., but not limited to this;Server end can be configured as independent physical server, can also be configured as the server cluster or distributed system of multiple physical servers, can also be configured as the cloud server of providing cloud service, cloud database, cloud computing, cloud function, cloud storage, network service, cloud communication, middleware service, domain name service, security service, CDN and basic cloud computing services such as big data and artificial intelligence platform;Server can also be a node server in blockchain network;Software can be the application of realizing a kind of wisdom park parking management method etc., but not limited to the above form.
[0072] The present application can be used in many general or special computer system environments or configurations. For example: personal computer, server computer, handheld device or portable device, tablet device, multi-processor system, microprocessor-based system, set-top box, programmable consumer electronics, network PC, small computer, large computer, distributed computing environment including any of the above systems or devices, etc. The present application can be described in the general context of computer-executable instructions executed by a computer, such as program modules. Generally, program modules include routines, programs, objects, components, data structures, etc. that perform specific tasks or implement specific abstract data types. The present application can also be practiced in a distributed computing environment, in which tasks are performed by remote processing devices connected by a communication network. In a distributed computing environment, program modules can be located in local and remote computer storage media, including storage devices.
[0073] The embodiments of the present application will be specifically explained in combination with the drawings as follows:
[0074] Figure 1 is an optional flow chart of the wisdom park parking management method provided by the embodiment of the present application, Figure 1 The method in the above embodiment can include but not limited to steps S101 to S107.
[0075] Step S101, obtain reservation registration information and park map information, the reservation registration information includes target company information, visitor identity information and visitor license plate information;
[0076] Step S102, according to reservation registration information, determine visitor type, visitor type includes ordinary visitor or VIP visitor;
[0077] Step S103, according to the park map information, a smart park navigation model is established;
[0078] Step S104, when the visitor type is a normal visitor and there is a free ground parking space, according to the smart park navigation model, the visitor vehicle is guided to the ground parking space to obtain a ground parking result;
[0079] Step S105, when the visitor type is a normal visitor and there is no free ground parking space, according to the smart park navigation model, the visitor vehicle is guided to the stereo garage parking space by using a stereo garage scheduling strategy to obtain a stereo garage parking result, the stereo garage scheduling strategy includes a stereo parking space early and late peak advance scheduling strategy, a stereo parking space overnight vehicle scheduling strategy or a stereo parking space reservation vehicle scheduling strategy;
[0080] Step S106, when the visitor type is a VIP visitor, according to the smart park navigation model, the visitor vehicle is guided to the VIP parking space to obtain a VIP parking result;
[0081] Step S107, according to the target parking result, the visitor vehicle is managed by using a parking management strategy, the target parking result includes the ground parking result, the stereo garage parking result or the VIP parking result, the parking management strategy includes an overtime vehicle management strategy, a low-frequency use parking space management strategy, a non-standard parking vehicle management strategy, a long-term parking vehicle management strategy or a charging management strategy.
[0082] The steps S101 to S107 shown in the embodiments of the application realize parking management, improve parking efficiency and reduce cost.
[0083] In step S101 of some embodiments, the reservation registration information can be obtained through a parking system database or a visitor reservation module, and the park map information can be obtained through a park map database. The reservation registration information and the park map information can also be obtained by other means, which are not limited thereto. The reservation registration information can include target company information to be visited by a target visitor, visitor identity information and visitor license plate information. Further, the target visitor can submit a visit application and a visit reservation to the target company through the visitor reservation module.
[0084] In some embodiments, in step S102, the visitor type is determined according to the reservation registration information, which can include but is not limited to the following steps:
[0085] The reservation registration information is sent to the target company to obtain an access authorization result;
[0086] The visitor type is determined according to the access authorization result.
[0087] In some embodiments, the appointment registration information can be sent to the target company first to obtain an access authorization result. Illustratively, the target company's client in the park can be requested to authorize access and parking based on the appointment registration information, and an access authorization result can be obtained. Then, according to the access authorization result, the visitor type is determined. The visitor type can include ordinary visitors or VIP visitors. Illustratively, after obtaining the access authorization of the target company, the appointment registration information of the target visitor can be used to determine whether the target visitor is an ordinary visitor or a VIP visitor (VIP visitor) according to the set conditions by using the parking space management module, so that the parking space can be allocated according to the visitor type in the future.
[0088] In some embodiments, in step S103, the intelligent park navigation model can be established according to the park map information, which can include but is not limited to the following steps:
[0089] According to the park map information, a plurality of positioning points are added on the preset map software;
[0090] The accuracy of the plurality of positioning points is verified;
[0091] The park road information is extracted from the park map information;
[0092] The intelligent park navigation model is established according to the plurality of positioning points after accuracy verification and the park road information.
[0093] In some embodiments, a plurality of positioning points can be added on the preset map software according to the park map information. Illustratively, the positioning points can be added on the mainstream map software, such as adding the navigation positioning point of Building 1 of Company A. The relevant photos of Building 1 of Company A are taken first, and the positioning point application is applied in the mainstream map software. After the approval, the navigation of the positioning point can be realized on the mainstream map software. Then, the accuracy of the plurality of positioning points is verified, the park road information is extracted from the park map information, and finally the intelligent park navigation model is established according to the plurality of positioning points after accuracy verification and the park road information. Illustratively, the intelligent park navigation model can be established by increasing the number of positioning points in the intelligent park, verifying and improving the corresponding accuracy, and generating the navigation map from the starting point outside the park to the terminal point (the building or parking area of the specific company) in the park, so as to guide the target visitor to reach the designated parking space according to the navigation.
[0094] In some embodiments, in step S104, the ground parking space of the visitor's vehicle is navigated according to the intelligent park navigation model, and a ground parking result is obtained, which can include but is not limited to the following steps:
[0095] The target company location information is extracted from the park map information;
[0096] determine a group of candidate parking spaces according to the target company location information and a preset parking distance;
[0097] select a target ground parking space from the group of candidate parking spaces according to a ground parking space state;
[0098] generate a ground parking space navigation track according to the target ground parking space by using a smart park navigation model;
[0099] send the ground parking space navigation track to a visitor client to enable a visitor vehicle to be parked in the target ground parking space, and obtain a ground parking result.
[0100] In some embodiments, when the visitor type is a common visitor and there is an idle ground parking space, a ground parking result can be obtained by performing ground parking space navigation on the visitor vehicle according to a smart park navigation model. The target company location information can be extracted from park map information, and then a group of candidate parking spaces can be determined according to the target company location information and a preset parking distance. A target ground parking space can be selected from the group of candidate parking spaces according to a ground parking space state. A ground parking space navigation track can be generated according to the target ground parking space by using a smart park navigation model. Finally, the ground parking space navigation track can be sent to a visitor client to enable a visitor vehicle to be parked in the target ground parking space, and a ground parking result can be obtained. Illustratively, after the ground parking space navigation track is generated, the ground parking space navigation track of the target visitor can be sent to the visitor client by a park navigation module, and the target visitor can be navigated to the target ground parking space near the building where the target company is located to complete the parking operation.
[0101] In some embodiments, in step S105, a stereoscopic garage parking result can be obtained by performing stereoscopic garage parking space navigation on the visitor vehicle according to a stereoscopic garage dispatching strategy by using a smart park navigation model, which can include but is not limited to the following steps:
[0102] When the stereoscopic garage dispatching strategy is a stereoscopic parking space early and late peak pre-dispatching strategy, the late vehicle is dispatched from a low-level parking space to a high-level parking space in the stereoscopic garage, and the dispatched low-level parking space is used as a target stereoscopic garage parking space. The reservation time of the late vehicle is greater than a preset pickup time threshold;
[0103] When the stereoscopic garage dispatching strategy is a stereoscopic parking space overnight vehicle dispatching strategy, the overnight vehicle is dispatched from a low-level parking space to a high-level parking space in the stereoscopic garage, and the dispatched low-level parking space is used as a target stereoscopic garage parking space. The reservation time of the overnight vehicle is the next day;
[0104] When the stereoscopic garage dispatching strategy is a stereoscopic parking space reservation pickup dispatching strategy, the vehicle to be picked up is dispatched from a high-level parking space to a low-level parking space in the stereoscopic garage, and the dispatched low-level parking space is used as an unusable stereoscopic garage parking space.
[0105] According to the stereo garage parking space state and the whitelist list, a stereo garage parking space navigation trajectory is generated by using a smart park navigation model, and the stereo garage parking space state includes a target stereo garage parking space or an unusable stereo garage parking space.
[0106] The stereo garage parking space navigation trajectory is sent to a visitor client, so that the visitor vehicle is parked in the target stereo garage parking space, and a stereo garage parking result is obtained.
[0107] In some embodiments, when the visitor type is a common visitor and there is no idle ground parking space, the stereo garage parking space navigation can be performed on the visitor vehicle according to the smart park navigation model by using a stereo garage scheduling strategy, and a stereo garage parking result is obtained. The stereo garage scheduling strategy can include a stereo parking space early and late peak advance scheduling strategy, a stereo parking space overnight vehicle scheduling strategy, or a stereo parking space reservation vehicle scheduling strategy. Illustratively, when the common ground parking spaces near the building where the target company is located are full, the garage discriminates through the parking space management system, sends the stereo garage parking space navigation trajectory of the target visitor to the visitor client through the park navigation module, navigates the target visitor to the stereo garage parking space near the stereo garage parking space bound by the target company, and guides the visitor vehicle to park by the stereo garage control module to complete the parking operation.
[0108] When the stereo garage scheduling strategy is the stereo parking space early and late peak advance scheduling strategy, the late vehicle can be scheduled from the low parking space of the stereo garage to the high parking space, and the scheduled low parking space is used as the target stereo garage parking space. Illustratively, in the stereo parking space early and late peak advance scheduling strategy, after the target visitor parks the vehicle in the stereo garage parking space, the reservation registration information filled in by the target visitor in the visitor reservation module can be analyzed and processed according to the reservation parking time period, the late vehicle of the visitor is scheduled to the high position for storage, and the low position is emptied for subsequent visitors to quickly store the vehicle. When the visitor reservation time is analyzed by the stereo garage control module, the vehicle of the visitor can be scheduled from the high position to the low position in advance to facilitate the visitor to quickly take the vehicle after the visit time ends, shorten the time of mechanical operation, and achieve the purpose of quick vehicle taking and turnover.
[0109] When the stereo garage scheduling strategy is the stereo parking space overnight vehicle scheduling strategy, the overnight vehicle is scheduled from the low-level parking space of the stereo garage to the high-level parking space, and the scheduled low-level parking space is used as the target stereo garage parking space. For example, in the stereo parking space overnight vehicle scheduling strategy, when the visitor or employee vehicle needs to be overnight, the stereo garage control module will schedule the overnight vehicle to the high-level parking space of the stereo garage in advance before the second day early morning peak, so as to free up the more favorable low-level parking space to welcome the second day early morning peak, and achieve the purpose of rapid parking and turnover.
[0110] When the stereo garage scheduling strategy is the stereo parking space reservation vehicle scheduling strategy, the vehicle to be taken is scheduled from the high-level parking space of the stereo garage to the low-level parking space, and the scheduled low-level parking space is used as the unusable stereo garage parking space and not as the target parking space. In addition, in the stereo garage reservation vehicle scheduling strategy, when the visitor ends or is about to end the visit in advance, the visitor can use the visitor client to make a reservation for taking the vehicle in advance through the reservation application module before arriving at the stereo garage. After receiving the instruction, the management platform schedules the stereo garage through the stereo garage control module, and schedules the vehicle of the visitor to the low-level parking space or directly to the entrance in advance, waits for the visitor to take the vehicle, so as to achieve the purpose of rapid taking and turnover.
[0111] Then, according to the stereo garage parking space state and the white list, a stereo garage parking space navigation track is generated by using the smart park navigation model. The stereo garage parking space state can include the target stereo garage parking space or the unusable stereo garage parking space. It can be understood that the stereo garage control module can use the license plate recognition technology and the white list to manage the use of the mechanical garage. The pre-audited license plate list is generated by the internal administrative system of each company in the park, and can be imported into the stereo garage control module in the form of a document or an interface. Finally, the stereo garage parking space navigation track is sent to the visitor client, so that the visitor vehicle is parked in the target stereo garage parking space, and the stereo garage parking result is obtained.
[0112] In some embodiments, in step S106, according to the smart park navigation model, the visitor vehicle is navigated to the VIP parking space to obtain a VIP parking result, which can include but is not limited to the following steps:
[0113] According to the target company information, the VIP parking space is determined;
[0114] According to the VIP parking space, a VIP parking space navigation track is generated by using the smart park navigation model;
[0115] The VIP parking space navigation track is sent to the visitor client, so that the visitor vehicle arrives at the entrance of the VIP parking space;
[0116] acquire the license plate of the visitor vehicle located at the entrance through the license plate recognition device;
[0117] According to the license plate of the visitor vehicle, a drop lock signal is generated, which is used to control the smart ground lock of the VIP parking space to perform a drop lock action, so that the visitor vehicle is parked in the VIP parking space, and a VIP parking result is obtained.
[0118] In some embodiments, when the visitor type is a VIP visitor, the visitor vehicle can be guided to a VIP parking space according to a smart park navigation model to obtain a VIP parking result. The VIP parking space can be determined according to the target company information, and then a VIP parking space navigation trajectory can be generated using the smart park navigation model according to the VIP parking space, and the VIP parking space navigation trajectory can be sent to the visitor client to guide the visitor vehicle to the entrance of the VIP parking space. Illustratively, after determining the VIP parking space and generating the VIP parking space navigation trajectory, the VIP parking space navigation trajectory of the target visitor can be sent to the visitor client through the park navigation module, and the target visitor can be guided to the VIP parking space (i.e., the VIP parking space) of the building where the target company is located. The license plate of the visitor vehicle located at the entrance can be acquired through the license plate recognition device, and finally a drop lock signal can be generated according to the license plate of the visitor vehicle, wherein the drop lock signal is used to control the smart ground lock of the VIP parking space to perform a drop lock action, so that the visitor vehicle is parked in the VIP parking space, and a VIP parking result is obtained. Illustratively, the parking management module can be used for management, based on the anti-occupancy system formed by the smart ground lock and the license plate recognition high camera, the parking management module assigns a parking space, and then verifies it through the license plate recognition high camera. After the license plate of the target visitor is captured by the high camera, the smart ground lock is remotely controlled to drop lock, and the target visitor can perform parking operation. The smart ground lock has a 5G module and a lithium battery, and supports long-time operation without wiring. The license plate recognition high camera supports "one-drag-two" mode to manage two VIP parking spaces at the same time. When a VIP vehicle approaches a VIP parking space, it is captured and verified by the high camera, and the result can be uploaded to the system and linked to the smart ground lock to open or close. It can be understood that the VIP parking space can be managed by using the smart ground lock and the high license plate recognition technology, and the VIP visitor can be accurately opened after arriving at the parking space, and automatically reset after the vehicle leaves. The system supports remote diagnosis, remote control, and real-time uploading of state data. The parking management module can display the ground lock state, vehicle information, time, and access company information, etc., to facilitate the management of the park management end.
[0119] In some embodiments, in step S107, the visitor vehicle is managed according to the target parking result using a parking management strategy, which can include but is not limited to the following steps:
[0120] When the parking management strategy is the overtime vehicle management strategy, parking overtime information is generated according to the target parking result, the scheduled visit start time and the scheduled visit end time, and the parking overtime information is sent to the visitor client to remind the target visitor to take the vehicle;
[0121] When the parking management strategy is the low-frequency use parking space management strategy, a parking space use condition report is generated according to a preset period, and the low-frequency use parking space is obtained by analyzing the parking space use condition report, and the low-frequency use parking space is used as a priority parking space for parking space supply;
[0122] When the parking management strategy is the non-standard parking vehicle management strategy, non-standard parking information is generated according to the non-standard parking vehicle image, and the non-standard parking information is sent to the visitor client to remind the target visitor to take the vehicle;
[0123] When the parking management strategy is the long-term parking vehicle management strategy, long-term parking information is generated according to a preset parking time threshold and a parking time of the visitor vehicle, and the long-term parking information is sent to the visitor client to remind the target visitor to take the vehicle;
[0124] When the parking management strategy is the charging management strategy, parking fee information is calculated according to the parking time of the visitor vehicle, and the parking fee information is sent to the visitor client to remind the target visitor to pay the fee.
[0125] In some embodiments, the visitor vehicle can be managed by using the parking management strategy according to the target parking result. The target parking result includes a ground parking result, a stereo garage parking result or a VIP parking result, and the parking management strategy includes an overtime vehicle management strategy, a low-frequency use parking space management strategy, a non-standard parking vehicle management strategy, a long-term parking vehicle management strategy or a charging management strategy.
[0126] When the parking management strategy is the overtime vehicle management strategy, parking overtime information can be generated according to the target parking result, the scheduled visit start time and the scheduled visit end time, and the parking overtime information is sent to the visitor client to remind the target visitor to take the vehicle. In the overtime vehicle management strategy, the parking management operation module can assign a parking position in the corresponding period according to the “visit start time” and “visit end time” filled in the visitor reservation module by the visitor. When the vehicle of the visitor actually parks beyond the “visit end time”, the parking management operation module discriminates the information, sends the information to the client of the visitor through the management platform, and reminds the visitor to move the vehicle in time to realize the overtime vehicle management.
[0127] When the parking management strategy is the low-frequency use parking space management strategy, a parking space use condition report can be generated according to a preset period, and the low-frequency use parking space can be obtained by analyzing the parking space use condition report. The low-frequency use parking space is used as a priority parking space for parking space supply. Illustratively, in the low-frequency use parking space management strategy, the parking management platform of the smart park can automatically generate a parking space use condition weekly report or monthly report, and analyze the low-frequency use parking space. According to the analysis result, the parking management platform automatically gives parking space use allocation suggestions for each subsidiary company in the park to maximize the use of parking space resources in the park.
[0128] When the parking management strategy is the non-standard parking vehicle management strategy, non-standard parking information can be generated according to the non-standard parking vehicle image, and the non-standard parking information is sent to the visitor client to remind the target visitor to take the vehicle. Illustratively, in the non-standard parking vehicle management strategy, when the park management personnel or security personnel find a vehicle parked in a non-standard manner during routine patrol, they can use the park client to take a photo and report it. The parking management platform matches the license plate information in the photo with the registration information in the visitor reservation module, traces the vehicle owner information, and automatically sends a reminder to the corresponding visitor to move the vehicle as soon as possible.
[0129] When the parking management strategy is the long-term parking vehicle management strategy, long-term parking information can be generated according to a preset parking time threshold and the parking time of the visitor vehicle, and the long-term parking information is sent to the visitor client to remind the target visitor to take the vehicle. Illustratively, in the long-term parking vehicle management strategy, for visitor vehicles parked in ordinary ground parking spaces and VIP parking spaces, when the parking time of the visitor vehicle exceeds the preset parking time threshold, for example, more than 1 week without leaving the park, the parking management platform sends a notification to the visitor through the visitor client and sends a notification to the visitor through an SMS message, reminding the visitor to leave the park as soon as possible. For visitor vehicles parked in a multi-level garage parking space, when the parking time of the visitor vehicle exceeds the preset parking time threshold, the parking management platform will first dispatch the visitor vehicle to a higher parking space through the multi-level garage control module to release the lower parking space and improve the access efficiency. At the same time, a notification is sent to the visitor through the visitor client and an SMS message is sent to the visitor, reminding the visitor to leave the park as soon as possible.
[0130] When the parking management strategy is the charging management strategy, parking fee information can be calculated according to the parking time of the visitor vehicle, and the parking fee information is sent to the visitor client to remind the target visitor to pay the fee. Illustratively, in the charging management strategy, for temporary parking, monthly parking, charging, and car washing, etc. in the park, the parking management platform can display the parking-related revenue in real time by grabbing the charging information from the parking management operation module, generate a report, and realize fee collection and visualization.
[0131] More, the parking management platform of the smart park sets different parking strategies for employees, VIP visitors and ordinary visitors, and realizes the parking management in the smart park. For employee vehicles, employee parking spaces are mainly divided into ordinary ground parking spaces and stereo garage parking spaces, which are allocated to employees according to the needs of enterprises in the park, and are connected with the stereo garage control module to realize the intelligent management of the parking spaces through the stereo garage dispatching system. For ordinary visitor vehicles, the park navigation module provides navigation to the ordinary ground parking spaces near the designated buildings of related enterprises for parking after the ordinary visitors make parking reservation through the intelligent parking applet in the visitor reservation module. When the ordinary ground parking spaces are full, the parking spaces of the mechanical garage can be allocated based on the visitor system to realize parking reservation, allocation and park navigation, etc., and ensure that the vehicles can be parked in the available spaces after reaching the mechanical garage. For VIP visitors, a number of VIP parking spaces are provided in the park for each company, each VIP parking space is provided with a corresponding anti-occupancy system and its supporting facilities, including an intelligent ground lock and a license plate recognition camera, the VIP visitors are identified through the conditions set by each company in the park, and the park navigation is provided to the designated VIP parking space after the VIP visitors make parking reservation through the client. The vehicle is identified through the license plate recognition system and the high-position camera system when reaching the entrance of the designated parking space, and the intelligent ground lock is locked to realize the parking of the VIP parking space.
[0132] In some embodiments, the visitor client can be used as a communication and service tool for visitors or employees, providing information push, integrated payment, and third-party service access capabilities (such as charging and car washing). This embodiment uses AI algorithms to further optimize and improve the scheduling operation of the mechanical garage, and to alleviate the operation efficiency during peak hours. The parking management and operation module uses mobile tools to assist security personnel to feedback non-standard parking, illegal parking, long-term parking vehicles, and overtime parking vehicles, and notifies the vehicle owners in time through the system. Using platform tools and 3D twin technology, the stereo garage displays real-time intelligent parking related data, real-time restoration of parking occupancy status, real-time display of equipment status, real-time restoration of mechanical operation actions, etc. This embodiment provides a web management background of the intelligent parking management platform, which goes through all parking related data (including mechanical garage and ground VIP parking spaces), provides data search, sorting, processing, display, export, import, management and adjustment capabilities, and can also make plans, diagnoses, responses or push for accidents or failures. The connection relationship between the modules of the intelligent parking management platform of this embodiment is as follows: Figure 2As shown, communication connection can be made through the 5G communication module, reducing the delay of communication and ensuring smooth and timely communication between modules. Real-time data of mechanical garages, VIP parking spaces and other commercial supporting facilities can be uploaded to the local edge computing server and the cloud server, and then sent to the mobile terminal applet for the visitor system or to the Web end control background for displaying the real-time capacity of the mechanical garage and VIP parking space to the 3D twin central large screen.
[0133] In some embodiments, the overall process of park navigation and parking management is as shown in Figure 3 As shown, the visitor and license plate registration information can be obtained from the visitor reservation module first, and the access and parking authorization of the target company can be requested based on the reservation registration information. After obtaining the access authorization of the target company, the visitor reservation registration information is used to determine whether the visitor is an ordinary visitor or a VIP visitor through the parking management module, and the parking trajectory in the park is sent to the visitor client of the target visitor through the park navigation module. When the target visitor is an ordinary visitor, the navigation trajectory is sent by the park navigation module to make the visitor's vehicle park in the ordinary parking space on the ground of the building where the target customer is located; when the visitor is an ordinary visitor, the navigation trajectory is sent by the park navigation module after the ordinary ground parking space is full to make the visitor's vehicle park in the stereo garage; when the visitor is a VIP visitor, the navigation trajectory is sent by the park navigation module to make the visitor's vehicle park in the VIP parking space of the building where the target company is located, and the parking is realized through the high-position camera license plate recognition and intelligent ground lock. Finally, the parking management operation module is used to manage the overtime vehicles, non-standard parking vehicles, low-frequency use parking spaces, and long-term parking vehicles, as well as the charging management.
[0134] The beneficial effects of implementing the embodiments of the present application include that the embodiments of the present application first obtain reservation registration information and park map information, then determine the visitor type according to the reservation registration information, and then establish a smart park navigation model according to the park map information. When the visitor type is an ordinary visitor and there is an idle ground parking space, the ground parking result is obtained by performing ground parking navigation on the visitor vehicle according to the smart park navigation model; when the visitor type is an ordinary visitor and there is no idle ground parking space, the stereo garage parking result is obtained by performing stereo garage parking navigation on the visitor vehicle according to the smart park navigation model using a stereo garage scheduling strategy; when the visitor type is a VIP visitor, the VIP parking result is obtained by performing VIP parking navigation on the visitor vehicle according to the smart park navigation model; and finally, the visitor vehicle is managed by using a parking management strategy according to the target parking result, so that parking management can be realized through different visitor types and vehicle scheduling strategies, thereby improving the parking efficiency and reducing the cost.
[0135] As shown in Figure 4As shown, the embodiment of the present application also provides a smart park parking management device, comprising:
[0136] The visitor reservation module 801 is configured to acquire reservation registration information and park map information, and the reservation registration information comprises target company information, visitor identity information and visitor license plate information.
[0137] The parking space management module 802 is configured to determine a visitor type according to the reservation registration information, and the visitor type comprises a common visitor or a VIP visitor.
[0138] The park navigation module 803 is configured to perform parking space navigation for the visitor vehicle according to the park map information, and obtain a target parking result, and the target parking result comprises a ground parking result, a stereo garage parking result or a VIP parking result.
[0139] The stereo garage control module 804 is configured to perform parking space scheduling of the stereo garage in the parking space navigation.
[0140] The parking management operation module 805 is configured to perform parking management for the visitor vehicle according to the target parking result by using a parking management strategy, and the parking management strategy comprises an overtime vehicle management strategy, a low-frequency use parking space management strategy, a non-standard parking vehicle management strategy, a long-term parking vehicle management strategy or a charging management strategy.
[0141] The content in the above method embodiments is applicable to the device embodiments, the device embodiments specifically realize the same functions as the above method embodiments, and achieve the same beneficial effects as the above method embodiments.
[0142] As shown in the method shown in the above method embodiments, Figure 5 The embodiment of the present application also provides a computer device, comprising:
[0143] At least one processor 901;
[0144] At least one memory 902 is configured to store at least one program;
[0145] When the at least one program is executed by the at least one processor, the at least one processor is caused to implement the method shown. Figure 1
[0146] The content in the above method embodiments is applicable to the device embodiments, the device embodiments specifically realize the same functions as the above method embodiments, and achieve the same beneficial effects as the above method embodiments.
[0147] The embodiment of the present application also provides a computer readable storage medium, the computer readable storage medium stores a computer program, and the computer program is executed by a processor to realize the method shown in the embodiment of the present application. Figure 1 The embodiment of the present application also provides a computer readable storage medium, the computer readable storage medium stores a computer program, and the computer program is executed by a processor to realize the method shown in the embodiment of the present application.
[0148] The content in the method embodiments is applicable to the storage medium embodiments, the storage medium embodiments specifically realize the same functions as the method embodiments, and the beneficial effects achieved by the storage medium embodiments are also the same as the beneficial effects achieved by the method embodiments.
[0149] The preferred embodiments of the embodiments of the present application are described above with reference to the drawings, and the right scope of the embodiments of the present application is not limited by this. Any modification, equivalent replacement and improvement made by a person skilled in the art without departing from the scope and essence of the embodiments of the present application should be within the right scope of the embodiments of the present application.
Claims
1. A smart park parking management method, characterized in that, Includes the following steps: Obtain appointment registration information and park map information, wherein the appointment registration information includes target company information, visitor identity information and visitor license plate information; Based on the reservation registration information, the visitor type is determined, which includes regular visitors or VIP visitors; Based on the park map information, a smart park navigation model is established; When the visitor type is a regular visitor and there are available ground parking spaces, the visitor's vehicle is guided to a ground parking space according to the smart park navigation model to obtain the ground parking result. When the visitor type is a regular visitor and there are no available ground parking spaces, the smart park navigation model is used to navigate the visitor's vehicle to a parking space in the multi-level parking garage using the multi-level parking garage scheduling strategy to obtain the parking result in the multi-level parking garage. The multi-level parking garage scheduling strategy includes a multi-level parking space early scheduling strategy during morning and evening peak hours, a multi-level parking space overnight parking space scheduling strategy, or a multi-level parking space reservation and pick-up scheduling strategy. When the visitor type is a VIP visitor, the smart park navigation model is used to navigate the visitor's vehicle to a VIP parking space to obtain the VIP parking result. Based on the target parking result, parking management strategies are used to manage the visitor vehicles. The target parking result includes the ground parking result, the multi-level parking garage result, or the VIP parking result. The parking management strategies include overdue vehicle management strategies, low-frequency parking space management strategies, non-standard parking vehicle management strategies, long-term parking vehicle management strategies, or fee management strategies.
2. The method according to claim 1, characterized in that, The step of determining the visitor type based on the reservation registration information includes: The reservation registration information is sent to the target company to obtain access authorization results; Based on the access authorization result, the visitor type is determined.
3. The method according to claim 1, characterized in that, The step of establishing a smart park navigation model based on the park map information includes: Based on the park map information, several positioning points are added to the preset map software; The accuracy of the aforementioned positioning points is verified. Extract park road information from the park map information; Based on the accuracy-verified positioning points and the park road information, the smart park navigation model is established.
4. The method according to claim 1, characterized in that, The step of navigating visitor vehicles to ground parking spaces based on the smart park navigation model to obtain ground parking results includes: Extract the target company's location information from the park map information; Based on the target company's location information and the preset parking distance, a group of parking spaces to be selected is determined; Based on the status of ground parking spaces, select an available parking space from the group of parking spaces to be selected as the target ground parking space; Based on the target ground parking space, the smart park navigation model is used to generate a ground parking space navigation trajectory; The ground parking space navigation trajectory is sent to the visitor client so that the visitor's vehicle can be parked in the target ground parking space, thus obtaining the ground parking result.
5. The method according to claim 1, characterized in that, The step of navigating visitor vehicles to parking spaces in the multi-level parking garage using the smart park navigation model and the multi-level parking garage scheduling strategy to obtain parking results includes: When the multi-level parking garage scheduling strategy is the multi-level parking space morning and evening peak advance scheduling strategy, the late-picking vehicle will be scheduled from the low-level parking space of the multi-level parking garage to the high-level parking space, and the rescheduled low-level parking space will be used as the target multi-level parking space. The scheduled pick-up time of the late-picking vehicle is greater than the preset pick-up time threshold. When the multi-level parking garage scheduling strategy is the multi-level parking space overnight vehicle scheduling strategy, the overnight vehicle will be scheduled from the low-level parking space of the multi-level parking garage to the high-level parking space, and the rescheduled low-level parking space will be used as the target parking space of the multi-level parking garage. The reserved pick-up time of the overnight vehicle will be the next day. When the multi-level parking garage scheduling strategy is the multi-level parking space reservation and retrieval scheduling strategy, the vehicle to be retrieved will be scheduled from the high-level parking space in the multi-level parking garage to the low-level parking space, and the rescheduled low-level parking space will be designated as an unavailable multi-level parking space. Based on the status of parking spaces in the automated parking garage and the whitelist, the smart park navigation model is used to generate a navigation trajectory for the automated parking garage. The status of the parking spaces in the automated parking garage includes the target parking space or the unavailable parking space. The navigation trajectory of the parking space in the automated parking garage is sent to the visitor's client so that the visitor's vehicle can be parked in the target parking space in the automated parking garage, and the parking result of the automated parking garage is obtained.
6. The method according to claim 1, characterized in that, The step of navigating visitor vehicles to VIP parking spaces based on the smart park navigation model to obtain VIP parking results includes: Based on the target company information, determine the VIP parking spaces; Based on the VIP parking spaces, the smart park navigation model is used to generate VIP parking space navigation trajectories; Send the VIP parking space navigation trajectory to the visitor client so that the visitor vehicle arrives at the entrance of the VIP parking space; The license plate of the visitor vehicle located at the entrance is obtained through a license plate recognition device; Based on the license plate of the visitor's vehicle, a locking signal is generated. The locking signal is used to control the smart lock of the VIP parking space to perform a locking action, so that the visitor's vehicle is parked in the VIP parking space, and the VIP parking result is obtained.
7. The method according to claim 1, characterized in that, The step of managing visitor vehicles using parking management strategies based on the target parking results includes: When the parking management strategy is the overdue vehicle management strategy, parking overdue information is generated based on the target parking result, the appointment start time and the appointment end time, and the parking overdue information is sent to the visitor's client to remind the target visitor to retrieve the vehicle; When the parking management strategy is the low-frequency parking space management strategy, a parking space usage report is generated according to a preset period, and the parking space usage report is analyzed to obtain low-frequency parking spaces, which are used as priority parking spaces for parking space supply. When the parking management strategy is the non-standard parking vehicle management strategy, non-standard parking information is generated based on the non-standard parking vehicle image, and the non-standard parking information is sent to the visitor client to remind the target visitor to retrieve the vehicle; When the parking management strategy is the long-term parking vehicle management strategy, long-term parking information is generated based on the preset parking time threshold and the parking time of the visitor's vehicle, and the long-term parking information is sent to the visitor's client to remind the target visitor to retrieve the vehicle; When the parking management strategy is the charging management strategy, the parking fee information is calculated based on the parking time of the visitor's vehicle, and the parking fee information is sent to the visitor's client to remind the target visitor to pay.
8. A smart park parking management device, characterized in that, include: The visitor reservation module is used to obtain reservation registration information and park map information. The reservation registration information includes target company information, visitor identity information and visitor license plate information. The parking space management module is used to determine the visitor type based on the reservation registration information, wherein the visitor type includes ordinary visitors or VIP visitors; The park navigation module and the visitor reservation module are used to navigate to parking spaces for visitor vehicles based on the park map information to obtain the target parking result, which includes ground parking result, multi-level parking garage result or VIP parking result. A multi-level parking garage control module, which is used to perform parking space scheduling in the parking space navigation; The parking management and operation module is used to manage the visitor vehicles based on the target parking result using parking management strategies. The parking management strategies include overdue vehicle management strategies, low-frequency parking space management strategies, non-standard parking vehicle management strategies, long-term parking vehicle management strategies, or fee management strategies.
9. A computer device, characterized in that, include: At least one processor; At least one memory for storing at least one program; When the at least one program is executed by the at least one processor, the at least one processor implements the method as described in any one of claims 1-7.
10. A computer-readable storage medium storing a computer program, characterized in that, When the computer program is executed by a processor, it implements the method as described in any one of claims 1-7.
Citation Information
Patent Citations
Management device and management method
JP2023057228A
Automated parking space management system with dynamically updatable display device
US20150138001A1