Vehicle roadside parking space parking management device for intelligent transportation and management system thereof
By combining vehicle positioning with electronic parking locks, the problem of parking spaces being occupied during the guidance process is solved, achieving efficient use of parking spaces and real-time navigation, thus improving the efficiency of parking management and resource utilization.
Patent Information
- Application Number
- CN202511077475.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-01
- Publication Date
- 2025-11-18
AI Technical Summary
In existing roadside parking management systems, when a vehicle enters a guided parking space, the space may be occupied due to the driver's negligence. Furthermore, the driver may encounter the problem of the space being occupied again while moving to an empty space after being guided.
By combining a vehicle positioning module, a service APP module, and an electronic parking lock, the system enables car owners to issue parking requests via voice commands. The system then detects and allocates available parking spaces in real time, provides navigation guidance, and automatically controls the parking lock upon vehicle arrival. It also starts timing and billing, and automatically reclaims the parking space after the allotted time to prevent waste.
It achieves efficient use of parking spaces, prevents parking spaces from being occupied during the guidance process, provides real-time navigation, reduces the trouble of car owners looking for parking spaces, and automatically reclaims parking spaces after the time limit to improve resource utilization.
Smart Images

Figure CN120977140A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent transportation, in particular to a vehicle roadside parking space parking management device for intelligent transportation and a management system thereof. BACKGROUND
[0002] The existing vehicle roadside parking space parking management system installs a parking space detector on each parking space and sets a parking guidance screen at the entrance of a road section, so that the vehicle owner can master the number of empty parking spaces and the approximate direction of the empty parking spaces in real time when entering the road section. However, this method loses the guiding effect due to the negligence or forgetfulness of the vehicle owner after the vehicle passes the guidance screen, and other vehicles often enter the parking space first in the process of moving to the empty parking space under the guidance, resulting in the need to go to other empty parking spaces according to the guidance screen again. SUMMARY
[0003] In view of the deficiencies of the prior art, the present application provides a vehicle roadside parking space parking management device for intelligent transportation and a management system thereof, which solves the problems raised in the background art.
[0004] To achieve the above purpose, the present application realizes the following technical scheme: a vehicle roadside parking space parking management system for intelligent transportation, which comprises:
[0005] A vehicle positioning module for positioning the vehicle position in real time through GPS;
[0006] A service APP module for providing real-time guidance and parking space allocation for the vehicle owner;
[0007] The service APP module specifically comprises:
[0008] A parking demand issuing unit for receiving and identifying the parking demand information issued by the vehicle owner through voice interaction;
[0009] A parking destination unit for identifying the parking destination based on the voice parking information issued by the vehicle owner;
[0010] A parking space searching unit for searching the roadside parking spaces around the parking destination;
[0011] An empty space display unit for displaying the remaining empty parking space positions in the roadside parking spaces;
[0012] A parking space allocation unit for allocating the parking space to the vehicle owner based on the remaining empty parking space positions;
[0013] A parking space self-locking unit for controlling the opening of the electronic parking space lock on the allocated parking space after the parking space allocation is completed;
[0014] A parking space navigation unit provides real-time navigation guidance for the vehicle owner based on the real-time location of the vehicle and the assigned parking space location of the vehicle;
[0015] A parking space unlocking unit controls the electronic lock of the parking space to close for the vehicle to be parked in the parking space when the vehicle reaches the assigned parking space location.
[0016] Further, the vehicle roadside parking space management system for intelligent transportation further comprises:
[0017] A charging and deduction module is used to charge by time after the vehicle is parked in the parking space, and automatically deducts the fee after the vehicle leaves the parking space. The vehicle owner needs to agree to the automatic deduction agreement before the deduction.
[0018] Further, the vehicle roadside parking space management system for intelligent transportation further comprises:
[0019] A timeout resetting module is used to time after the parking space is assigned to the vehicle owner and the parking space is locked, and prompts the vehicle owner to arrive at the assigned parking space as soon as possible when the preset time is about to arrive. The parking space lock is automatically closed and the parking space is re-entered into the distribution of other vehicles after the timeout.
[0020] Further, the timeout resetting module specifically comprises:
[0021] A timing unit is used to time the time when the vehicle arrives at the parking space after the vehicle is assigned to the parking space;
[0022] A timeout prompting unit is used to timely prompt the vehicle owner of the information of the upcoming timeout before the timeout, so as to prompt the vehicle owner to park the vehicle in the assigned parking space before the timeout.
[0023] Further, the timeout resetting module specifically further comprises:
[0024] A parking space resetting unit recycles the parking space and re-enters it into the empty space display unit to participate in the parking space distribution of other vehicles when the vehicle still does not park in the assigned parking space after the timeout.
[0025] Further, the vehicle roadside parking space management system for intelligent transportation further comprises:
[0026] A parking space high utilization module analyzes the parking time of the vehicle owner in each property place according to the parking information of each vehicle owner, so as to pre-assign the parking space where the vehicle is about to leave.
[0027] Further, the parking space high utilization module specifically comprises:
[0028] A parking record unit is used to record the vehicle information, parking location or destination, parking surrounding place information and parking time information.
[0029] Further, the parking space high utilization module specifically further comprises:
[0030] The classification unit divides each parking surrounding place into parking time length classes of different time length sections according to time length information and time length section.
[0031] Further, the parking space high utilization module specifically further comprises:
[0032] The parking time length prediction unit pre-judges the parking time length of the vehicle based on the surrounding place property of the parking position of the vehicle and the parking time length of the same place property recorded in the past, and sends the judgment information to the empty space display unit.
[0033] A vehicle roadside parking space management device for intelligent transportation is applied to the vehicle roadside parking space management system for intelligent transportation, and the vehicle roadside parking space management device for intelligent transportation comprises a server, an electronic terminal, a vehicle sensor and a parking space electronic lock.
[0034] The electronic terminal is a mobile phone or a vehicle central control screen loaded with the APP of the vehicle roadside parking space management system for intelligent transportation.
[0035] The server is used for realizing information interaction by wireless connection with the electronic terminal through a network, so as to provide voice interaction and parking space display navigation.
[0036] The vehicle sensor is embedded in each parking space and is used for detecting whether a vehicle is parked in real time, so as to judge whether the parking space is empty.
[0037] The parking space electronic lock is used for locking the empty parking space after the empty parking space is allocated.
[0038] The application provides a vehicle roadside parking space management device for intelligent transportation and a management system thereof, which has the following beneficial effects:
[0039] 1. After the vehicle owner actively sends a parking instruction, the vehicle roadside parking space management device for intelligent transportation and the management system thereof can quickly search for an empty parking space based on a parking destination, lock the empty parking space, prevent other vehicles from occupying the parking space during the process of the vehicle going to the empty parking space, provide route guidance for the vehicle owner in real time during the process of the vehicle going to the parking space, prevent the vehicle owner from losing the guidance after passing an induction screen, make it more convenient for the vehicle owner to park, and automatically recover the parking space and participate in the allocation of other vehicles if the vehicle owner does not park the vehicle in the parking space after overtime, so as to prevent waste caused by long-time locking of the parking space.
[0040] 2. The intelligent transportation vehicle roadside parking management device and its management system, wherein the parking space high utilization module analyzes the parking time of each car owner in various types of locations based on the parking information of each car owner, so as to predict the parking time of each vehicle in various types of locations, and sends the judgment information to the vacancy display unit. The vacancy display unit displays the parking spaces that are about to be left at the same time as the parking spaces based on the time when the vehicle arrives at the parking space, and allocates such parking spaces to vehicles that can arrive at the parking space within the predicted vacancy time based on the predicted vacancy time, thereby achieving a high utilization rate of parking spaces. Attached Figure Description
[0041] Fig. 1 This is a schematic diagram of the internal framework of the service APP module of a vehicle roadside parking space management device and its management system for intelligent transportation according to the present invention.
[0042] Fig. 2 This is a schematic diagram of the internal framework of the timeout reset module of a vehicle roadside parking space management device and its management system for intelligent transportation according to the present invention.
[0043] Fig. 3 This is a schematic diagram of the internal framework of the parking space high utilization module of a vehicle roadside parking space management device and its management system for intelligent transportation according to the present invention.
[0044] In the diagram: 1. Vehicle positioning module; 2. Service APP module; 201. Parking request unit; 202. Parking destination unit; 203. Parking space search unit; 204. Available space display unit; 205. Parking space allocation unit; 206. Parking space self-locking unit; 207. Parking space navigation unit; 208. Parking space unlocking unit; 3. Billing and deduction module; 4. Timeout reset module; 401. Timing unit; 402. Timeout reminder unit; 403. Parking space reset unit; 5. Parking space high utilization module; 501. Parking record unit; 502. Classification unit; 503. Parking duration estimation unit. Detailed Implementation
[0045] The embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of the invention.
[0046] like Figs. 1-3 As shown, the present invention provides a technical solution: a roadside parking management system for intelligent transportation, comprising:
[0047] Vehicle positioning module 1, which uses GPS to locate the vehicle's position in real time;
[0048] Service APP module 2 is used to provide car owners with real-time guidance and parking space allocation for roadside parking spaces;
[0049] The service APP module 2 specifically comprises:
[0050] A parking demand issuing unit 201 receives parking demand information issued by a vehicle owner through voice interaction;
[0051] A parking destination unit 202 identifies a parking destination based on the voice parking information issued by the vehicle owner;
[0052] A parking space searching unit 203 is configured to search for roadside parking spaces around the parking destination;
[0053] A vacant space display unit 204 is configured to display the positions of vacant spaces in the roadside parking spaces;
[0054] A parking space allocation unit 205 allocates a parking space to the vehicle owner based on the positions of the vacant spaces;
[0055] A parking space self-locking unit 206 controls an electronic parking space lock on the allocated parking space to be opened after the allocation of the parking space is completed;
[0056] A parking space navigation unit 207 provides navigation guidance to the vehicle owner in real time based on the real-time position of the vehicle and the position of the parking space allocated to the vehicle;
[0057] A parking space unlocking unit 208 controls the electronic parking space lock to be closed when the vehicle reaches the position of the allocated parking space so that the vehicle can be parked in the parking space;
[0058] A charging and deduction module 3 is configured to perform timing charging after the vehicle is parked in the parking space and automatically perform deduction after the vehicle leaves the parking space, and the vehicle owner needs to agree to the automatic deduction agreement before the deduction;
[0059] The vehicle roadside parking space management system for intelligent transportation further comprises:
[0060] A timeout resetting module 4 is configured to perform timing after a parking space is allocated to the vehicle owner and the parking space is locked, and to prompt the vehicle owner to reach the allocated parking space as soon as possible when the preset time is about to be reached, and to automatically close the parking space lock and put the parking space back into the allocation of other vehicles after the timeout; the timeout resetting module 4 specifically comprises:
[0061] A timing unit 401 is configured to perform timing of the time when the vehicle reaches the parking space after the vehicle is allocated to the parking space;
[0062] A timeout prompting unit 402 is configured to timely prompt the vehicle owner of the information that the timeout is about to occur before the timeout, so as to prompt the vehicle owner to park the vehicle in the allocated parking space before the timeout.
[0063] a parking space resetting unit 403 which recycles the parking space and re-enters it into the empty space display unit 204 to participate in the parking space allocation for other vehicles when the vehicle has not parked in the allocated parking space after the time-out;
[0064] The specific operation is as follows: the GPS carried by the mobile phone or the vehicle central control system is used to locate the real-time position of the vehicle, the vehicle owner initiatively issues the voice instruction of needing to park through the parking demand issuing unit 201 in the form of voice interaction, the voice instruction contains the destination information, the parking destination unit 202 recognizes the parking destination in the voice instruction, then detects the roadside parking space around the parking destination through the parking space detecting unit 203, displays the remaining empty parking space position based on the feedback of the vehicle sensor, and then allocates the parking space for the vehicle owner based on the remaining empty parking space position through the parking space allocating unit 205, at this time, the electronic parking lock on the allocated empty parking space is opened through the parking space self-locking unit 206, and the parking navigation unit 207 provides real-time navigation guidance for the vehicle owner based on the real-time position of the vehicle and the position of the allocated parking space until the vehicle reaches the allocated parking space position, in this process, the electronic parking lock is opened on the allocated empty parking space to prevent other vehicles from parking, and the electronic parking lock is closed through the parking space unlocking unit 208 to enable the vehicle to park in the parking space only when the vehicle reaches the parking space position, the charging and deduction module 3 charges and times after the vehicle parks in the parking space, and automatically deducts the fee after the vehicle leaves the parking space, and the vehicle owner needs to agree to the automatic deduction agreement before the deduction;
[0065] When the parking space is allocated for the vehicle and the allocated parking space is locked, the timing unit 401 times the time when the vehicle reaches the parking space, the time-out prompt unit 402 issues a prompt of the time-out if the time is about to be up and the vehicle has not reached the parking space to prompt the vehicle owner to park the vehicle in the allocated parking space before the time-out, and the parking space resetting unit 403 recycles the parking space and re-enters it into the empty space display unit 204 to participate in the parking space allocation for other vehicles when the vehicle has not parked in the allocated parking space after the time-out.
[0066] Based on the above description, after the vehicle owner initiatively issues the instruction of needing to park, the empty parking space can be quickly searched and locked based on the parking destination to prevent other vehicles from occupying the parking space in the process of the vehicle going to the empty parking space, real-time route guidance can be provided for the vehicle owner in the process of the vehicle going to the parking space to prevent the vehicle owner from losing the guidance after passing the guidance screen, so that the vehicle owner can park more conveniently, and the parking space is recycled and participates in the allocation for other vehicles if the vehicle owner has not parked the vehicle in the parking space after the time-out, so as to prevent the waste caused by the long-time locking of the parking space.
[0067] As shown in Figs. 1-3 the vehicle roadside parking space management system for intelligent traffic further comprises:
[0068] A parking space high utilization module 5 analyzes the parking duration of each property by each vehicle owner's parking information to pre-allocate the parking space that the vehicle will soon leave;
[0069] A parking record unit 501 records vehicle information, parking location or destination, parking surrounding property information, and parking duration information;
[0070] A classification unit 502 divides each parking surrounding property into different parking duration categories according to the parking duration information;
[0071] A parking duration prediction unit 503 predicts the parking duration of the vehicle based on the surrounding property of the parking location and the parking duration of the same property recorded in the past, and sends the judgment information to the empty space display unit 204, which displays the parking space that will soon leave as an empty space based on the time when the vehicle arrives at the parking space;
[0072] The specific operation is as follows: after the vehicle owner agrees to the service agreement, the parking record unit 501 in the APP records the vehicle information and the parking location or destination, parking surrounding property information, and parking duration information each time, the classification unit 502 divides each parking surrounding property into different parking duration categories according to the parking duration information, and then when the vehicle stops at a parking space in the surrounding of a similar property, the parking duration prediction unit 503 predicts the parking duration of the vehicle based on the surrounding property of the parking location and the parking duration of the same property recorded in the past, and sends the judgment information to the empty space display unit 204, which displays the parking space that will soon leave as an empty space based on the time when the vehicle arrives at the parking space, where the similar property is, for example, a shopping mall, a school, an office building, etc., and the predicted parking space is color-distinguished from the actual empty parking space and displays the predicted empty time of the parking space, and the predicted parking space is allocated to the vehicle that can arrive at the parking space at the predicted empty time when the predicted parking space is allocated;
[0073] Based on the above description, the present application analyzes the parking duration of each property by each vehicle owner's parking information through the parking space high utilization module 5 to predict the parking duration of each vehicle at each property, and sends the judgment information to the empty space display unit 204, which displays the parking space that will soon leave as an empty space based on the time when the vehicle arrives at the parking space, and allocates the predicted parking space to the vehicle that can arrive at the parking space at the predicted empty time, thereby achieving high utilization of parking spaces.
[0074] The application discloses a vehicle roadside parking space parking management device for intelligent traffic, which is applied to a vehicle roadside parking space parking management system for intelligent traffic.
[0075] The electronic terminal is a mobile phone or a vehicle central control screen loaded with an APP of the vehicle roadside parking space parking management system for intelligent traffic.
[0076] The server is used for realizing information interaction with the electronic terminal through network wireless connection, so as to provide voice interaction and parking space display navigation.
[0077] The vehicle sensor is embedded in each parking space and is used for detecting whether a vehicle is parked in the parking space in real time, so as to judge whether the parking space is empty.
[0078] The parking space electronic lock is used for locking the empty parking space after the empty parking space is allocated.
[0079] In summary, the vehicle roadside parking space parking management device for intelligent traffic and the management system thereof are used as follows: firstly, the vehicle position is positioned in real time by a GPS of a mobile phone or a vehicle central control system; a vehicle owner initiates a voice instruction of needing to park in a voice interaction mode through a parking demand issuing unit 201, the voice instruction contains destination information; a parking destination unit 202 identifies the parking destination in the voice instruction; a parking space detecting unit 203 detects roadside parking spaces around the parking destination; a vehicle sensor is used for displaying the positions of the remaining empty parking spaces in the roadside parking spaces; a parking space allocating unit 205 allocates a parking space for the vehicle owner based on the positions of the remaining empty parking spaces; at this time, the empty parking space is allocated and an electronic parking space lock on the parking space is opened through a parking space self-locking unit 206; a parking space navigation unit 207 provides navigation guidance for the vehicle owner in real time based on the real-time position of the vehicle and the position of the parking space allocated for the vehicle; the vehicle reaches the position of the allocated parking space; in the process, the electronic parking space lock on the allocated empty parking space is opened, thereby preventing other vehicles from parking in the empty parking space; only when the vehicle bound to the parking space reaches the position of the parking space, a parking space unlocking unit 208 controls the electronic parking space lock to be closed, so that the vehicle can be parked in the parking space; after the vehicle is parked in the parking space, a charging and fee deduction module 3 charges and times, and automatically deducts the fee after the vehicle drives out of the parking space; before the fee is deducted, the vehicle owner needs to agree with an automatic fee deduction agreement.
[0080] And when the vehicle is assigned a parking space and the assigned parking space is locked, the timing unit 401 times the time when the vehicle arrives at the parking space, if the time is about to expire and the vehicle has not arrived at the parking space, the time-out prompt unit 402 issues a prompt that the time is about to expire to prompt the vehicle owner to park the vehicle in the assigned parking space before the time expires, and if the vehicle has not parked in the assigned parking space after the time expires, the parking space resetting unit 403 recovers the parking space and re-enters it into the empty space display unit 204 to participate in the parking space allocation of other vehicles.
[0081] After the vehicle owner agrees to the service agreement, the parking record unit 501 in the APP records the vehicle information and the parking location or destination each time, the parking surrounding place information and the parking duration information, the classification unit 502 divides the parking duration information into different time length sections based on the parking duration information, and divides each parking surrounding place into a parking duration category of different time length sections, and when the vehicle is parked in a parking space in the surrounding place of a similar nature again, the parking duration prediction unit 503 predicts the parking duration of this time based on the nature of the surrounding place where the vehicle is parked and the parking duration of the same nature recorded in the past, and sends the prediction information to the empty space display unit 204, and the empty space display unit 204 displays the parking space that will be vacated at this time as an empty parking space based on the time when the vehicle arrives at the parking space, wherein the similar nature is, for example, a shopping mall, a school, an office building, etc., and the predicted parking space is color-distinguished from the actual empty parking space when displayed, and the empty time of the predicted parking space is displayed, and when the predicted parking space participates in the allocation, it is allocated to the vehicle that can arrive at the parking space at the empty time based on the predicted empty time.
[0082] Embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments are chosen and described in order to best explain the principles of the application and its practical application, and to enable others skilled in the art to understand the application for various embodiments with various modifications as are suited to the particular use contemplated.
Claims
1. A vehicle roadside parking management system for intelligent transportation, characterized in that: The intelligent transportation vehicle roadside parking management system includes: The vehicle positioning module (1) locates the vehicle's position in real time via GPS; The service APP module (2) is used to provide car owners with real-time guidance and parking space allocation for roadside parking spaces; The service APP module (2) specifically includes: The parking request issuing unit (201) receives and recognizes the parking request information issued by the car owner through voice interaction. The parking destination unit (202) identifies the parking destination based on the voice parking information issued by the car owner; Parking space retrieval unit (203), which is used to detect roadside parking spaces around the parking destination; A vacancy display unit (204) is used to display the location of remaining vacant parking spaces in roadside parking spaces; Parking space allocation unit (205) allocates parking spaces to car owners based on the remaining vacant parking spaces; The parking space self-locking unit (206) controls the electronic parking space lock on the allocated parking space to open after the parking space allocation is completed; The parking space navigation unit (207) provides real-time navigation guidance to the vehicle owner based on the vehicle's real-time location and the location of the parking space allocated to the vehicle; The parking space unlocking unit (208) controls the electronic lock of the parking space to close when the vehicle arrives at the assigned parking space location so that the vehicle can park in the parking space.
2. The intelligent transportation vehicle roadside parking management system according to claim 1, characterized in that: The intelligent transportation vehicle roadside parking management system also includes: The billing and deduction module (3) is used to calculate the time and charge after the vehicle is parked in the parking space, and to automatically deduct the charge after the vehicle leaves the parking space. The owner must agree to the automatic deduction agreement before the charge is deducted.
3. A vehicle roadside parking management system for intelligent transportation according to claim 2, characterized in that: The intelligent transportation vehicle roadside parking management system also includes: The timeout reset module (4) is used to start timing after allocating a parking space to the car owner and locking the parking space, and to remind the car owner to arrive at the allocated parking space as soon as the preset time is about to be reached. After the timeout, the parking space lock is automatically closed and the parking space is reassigned to other vehicles.
4. A vehicle roadside parking management system for intelligent transportation according to claim 3, characterized in that: The timeout reset module (4) specifically includes: A timing unit (401) is used to time the time it takes for a vehicle to arrive at a parking space after the vehicle has been assigned to that space. The timeout reminder unit (402) is used to promptly remind the car owner of the information that the timeout is about to expire, so as to remind the car owner to park the car in the assigned parking space before the timeout expires.
5. A vehicle roadside parking management system for intelligent transportation according to claim 4, characterized in that: The timeout reset module (4) further includes: The parking space reset unit (403) reclaims the parking space and puts it back into the vacancy display unit (204) to participate in the parking space allocation for other vehicles if the vehicle has not parked in the assigned parking space after the timeout period.
6. A vehicle roadside parking management system for intelligent transportation according to claim 5, characterized in that: The intelligent transportation vehicle roadside parking management system also includes: The high-utilization parking module (5) analyzes the parking time of each car owner in various types of places based on the parking information of each car owner, so as to pre-allocate the parking space where the vehicle is about to leave.
7. A vehicle roadside parking management system for intelligent transportation according to claim 6, characterized in that: The parking space high utilization module (5) specifically includes: The parking recording unit (501) is used to record vehicle information, parking location or destination, information about the surrounding area of the parking lot, and parking duration information.
8. A vehicle roadside parking management system for intelligent transportation according to claim 7, characterized in that: The parking space high utilization module (5) further includes: The classification unit (502) is based on parking duration information and divides it according to duration segments, classifying each parking area into different duration segments of parking duration categories.
9. A vehicle roadside parking management system for intelligent transportation according to claim 8, characterized in that: The parking space high utilization module (5) further includes: The parking duration prediction unit (503) predicts the parking duration of the vehicle based on the nature of the surrounding area and the parking duration of the same type of area recorded in the past, and sends the prediction information to the vacancy display unit (204). The vacancy display unit (204) displays the vacancy space as a parking space at the same time the vehicle is about to leave, based on the time the vehicle arrives at the parking space.
10. A vehicle roadside parking management device for intelligent transportation, applied to the vehicle roadside parking management system for intelligent transportation as described in any one of claims 1-9, characterized in that: The intelligent transportation vehicle roadside parking management device includes a server, electronic terminal, vehicle sensors, and electronic parking locks. The electronic terminal is a mobile phone or vehicle central control screen equipped with an APP for a roadside parking management system for intelligent transportation. The server is used to connect wirelessly to electronic terminals via the network to achieve information interaction, providing voice interaction, parking space display and navigation; Vehicle sensors are embedded in each parking space to detect in real time whether a vehicle has parked there, in order to determine whether the parking space is empty. Electronic parking locks are used to lock vacant parking spaces after they have been allocated.
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