Charging parking space management system

By using parking space detection equipment and charging piles in the charging space management system, real-time monitoring and management of charging space status is achieved, the problem of charging pile parking spaces being occupied is solved, and the convenience and efficiency of charging electric vehicles are improved.

CN223051783UActive Publication Date: 2025-07-01XIAN IRAIN IOT TECH SERVICES CO LTD
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Patent Information

Application Number
CN202421619565.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-06-07
Filing Date
2024-07-09
Publication Date
2025-07-01
Estimated Expiration
2034-07-09

AI Technical Summary

Technical Problem

The prior art is difficult to effectively manage charging parking spaces with charging pile areas installed, resulting in charging pile parking spaces being occupied by uncharged cars for a long time, affecting the charging convenience of electric vehicles.

Method used

A charging space management system is provided, including a parking space detection device and a charging pile. The parking space detection device identifies the status information and vehicle information of the charging space through a parking space detector and an indication device, and communicates with the charging pile through a network, generates instructions to control the indication device to display the corresponding color, so as to realize the effective management of the charging space.

Benefits of technology

Through the charging space management system, charging pile parking spaces can be effectively prevented from becoming public parking lots, providing convenience for electric vehicles to charge, and improving the utilization efficiency of charging parking spaces.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides a charging parking space management system. The charging parking space management system comprises parking space detection equipment and a charging pile, the parking space detection device comprises a parking space detector and an indication device connected with the parking space detector, and the charging pile is in communication connection with the parking space detector through a network; the parking space detector is used for identifying the state information of the charging parking space and the vehicle information on the charging parking space, and the charging pile is used for charging the vehicle on the charging parking space and outputting charging information to the parking space detector. The indicating equipment is used for correspondingly indicating according to the state information of the charging parking space, the vehicle information on the charging parking space and the charging information of the charging pile; the parking space detector is further used for generating an indication instruction according to the state information of the charging parking space, the information of the vehicle on the charging parking space and the charging information and sending the indication instruction to the indication device, and the indication instruction is used for controlling the indication device to carry out corresponding color display. The system disclosed by the utility model can solve the problem that the charging parking space in the area provided with the charging pile cannot be effectively managed.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of electric vehicle charging equipment, and in particular to a charging parking space management system. Background Art

[0002] At present, China has become the largest automobile market in the world. However, with the continuous expansion of the market scale, the pressure on the environment and resources has gradually increased. New energy vehicles can not only reduce the dependence on traditional energy, but also reduce environmental pollution. With the support of national policies, new energy vehicles have also become the target of investment pursued by capital. Whether it is traditional automobile enterprises or new car-making forces, a large amount of capital has been invested in promoting new energy vehicles, and at present, China's technology level in the field of pure electric vehicles has reached the world's advanced level.

[0003] With the increasing support of national policies, China has ranked first in the world in the production and sales of new energy vehicles for many consecutive years, and the number of electric vehicles has increased linearly. Electric vehicles need to be charged for use. The charging piles adapted to electric vehicles are like gas stations for conventional fuel vehicles and are the main stations for electric vehicles to replenish energy. With the continuous growth of the number of urban vehicles, whether new energy vehicles or conventional fuel vehicles, the urban parking spaces have tended to be saturated, and the areas where charging piles are set in the already space-constrained cities have become many public parking lots, often occupied by non-charging vehicles for a long time, while the electric vehicles that need to be charged cannot be charged, lacking effective management of the charging piles. Utility Model Content

[0004] The charging parking space management system provided by the present disclosure can solve the problem that the charging parking spaces in the areas where charging piles are installed cannot be effectively managed.

[0005] According to the first aspect of the embodiments of the present disclosure, a charging parking space management system is provided. The charging parking space management system includes a parking space detection device and a charging pile;

[0006] The parking space detection device includes a parking space detector and an indication device connected to the parking space detector. The charging pile is connected to the parking space detector through network communication;

[0007] The parking space detector is used to identify the status information of the charging parking space and the vehicle information on the charging parking space;

[0008] The charging pile is used to charge the vehicle on the charging parking space and output charging information to the parking space detector;

[0009] The indication device is used to give corresponding indications according to the status information of the charging parking space, the vehicle information on the charging parking space and the charging information of the charging pile;

[0010] The parking space detector is further configured to generate an indication instruction based on the status information of the charging parking space, the vehicle information on the charging parking space, and the charging information, and send the indication instruction to the indicating device, where the indication instruction is used to control the indicating device to perform corresponding color display.

[0011] According to a second aspect of the embodiments of the present disclosure, a charging parking space management system is provided. The charging parking space management system includes a parking space detection device, a charging pile, and a server. The parking space detector and the charging pile are both connected to the server through network communication;

[0012] The parking space detection device includes a parking space detector and an indicating device connected to the parking space detector. The parking space detector is configured to identify the status information of the charging parking space and the vehicle information on the charging parking space; the indicating device is configured to perform corresponding indication according to the status information of the charging parking space, the vehicle information on the charging parking space, and the charging information of the charging pile;

[0013] The charging pile is configured to charge the vehicle on the charging parking space and output charging information to the server;

[0014] The server is configured to obtain the charging information of the charging pile and send the charging information of the charging pile to the parking space detector;

[0015] The parking space detector is configured to generate an indication instruction based on the status information of the charging parking space, the vehicle information on the charging parking space, and the charging information of the charging pile, and send the indication instruction to the indicating device, where the indication instruction is used to control the indicating device to perform corresponding color display.

[0016] In one embodiment, the indicating device is an indicator light, and the colors of the indicator light include blue, blue flashing, green, green flashing, red, and red flashing.

[0017] In one embodiment, the parking space detector is a video parking space detection device.

[0018] In one embodiment, the charging pile includes a charging control box, a communication unit, and a charging gun;

[0019] A charging control board and a smart switch are arranged in the charging control box. A reset button is arranged on the outer surface of the charging control box and connected to the smart switch; a communication module and a charging module are arranged on the charging control board. The charging control board is connected to the parking space detector through network communication by the communication module; the smart switch is connected to the parking space detector through network communication by the communication unit arranged outside the charging control box;

[0020] The input end of the intelligent switch is connected to the power supply, the output end of the intelligent switch is connected to the power input end of the charging module, and the power output end of the charging module is connected to the charging gun.

[0021] In one embodiment, the charging pile includes a charging control box, a communication unit, and a charging gun;

[0022] A charging control board and an intelligent switch are arranged in the charging control box, and a reset button is arranged on the outer surface of the charging control box and connected to the intelligent switch; a communication module and a charging module are arranged on the charging control board, and the charging control board is network communication-connected to the server through the communication module; the intelligent switch is network communication-connected to the server through the communication unit arranged outside the charging control box;

[0023] The input end of the intelligent switch is connected to the power supply, the output end of the intelligent switch is connected to the power input end of the charging module, and the power output end of the charging module is connected to the charging gun.

[0024] In one embodiment, the charging pile includes a charging control box, a communication unit, and a charging gun;

[0025] A charging control board and an intelligent switch are arranged in the charging control box, and a reset button is arranged on the outer surface of the charging control box and connected to the intelligent switch; a communication module and a charging module are arranged on the charging control board, and the charging control board is network communication-connected to the server through the communication module; the intelligent switch is network communication-connected to the server through the communication unit arranged outside the charging control box;

[0026] The input end of the intelligent switch is connected to the power supply, the output end of the intelligent switch is connected to the power input end of the charging module, and the power output end of the charging module is connected to the charging gun.

[0027] In one embodiment, the charging pile includes a charging control box and a charging gun connected to the charging control box;

[0028] A charging control board, an intelligent switch, and a communication unit are arranged in the charging control box, and a reset button is arranged on the outer surface of the charging control box and connected to the intelligent switch; a communication module and a charging module are arranged on the charging control board, and the charging control board is network communication-connected to the server through the communication module, and the intelligent switch is connected to the communication unit;

[0029] The input end of the intelligent switch is connected to the power supply, the output end of the intelligent switch is connected to the power input end of the charging module, and the power output end of the charging module is connected to the charging gun.

[0030] In one embodiment, the communication module is communicatively connected to the parking space detector through the TCP / IP or 4G / 5G network protocol; the communication unit is communicatively connected to the parking space detector through the TCP / IP or 4G / 5G network protocol, and the communication unit is connected to the intelligent switch through a data line.

[0031] In one embodiment, the communication module is communicatively connected to the server through the TCP / IP or 4G / 5G network protocol; the communication unit is communicatively connected to the server through the TCP / IP or 4G / 5G network protocol, and the communication unit is connected to the intelligent switch through a data line.

[0032] The implementation of the present disclosure includes the following technical effects:

[0033] In the charging parking space management system provided by the embodiment of the present disclosure, by installing a charging pile and a parking space detection device near the charging parking space, and making the parking space detection device include a parking space detector and an indication device connected to the parking space detector, and connecting the charging pile to the parking space detector, so as to obtain the status information of the charging parking space and the vehicle information on the charging parking space through the parking space detector. At the same time, the indication device is connected to the parking space detector, so that the indication device can make corresponding indications according to the status information of the charging parking space, the vehicle information on the charging parking space and the charging information of the charging pile obtained from the parking space detector, so as to realize the effective management of the charging parking space, avoid the charging pile parking space becoming a public parking lot, and provide convenience for charging electric vehicles. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Figure 1 It is a schematic structural diagram of a charging parking space management system provided by an embodiment of the present disclosure.

[0035] Figure 2 It is a schematic structural diagram of a charging parking space management system provided by another embodiment of the present disclosure.

[0036] Figure 3 It is a schematic structural diagram of a charging pile provided by an embodiment of the present disclosure.

[0037] Figure 4 It is a schematic structural diagram of a charging pile provided by another embodiment of the present disclosure. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0038] The present disclosure will be described in detail below in conjunction with the embodiments and the accompanying drawings. It should be noted that the described embodiments are only for facilitating the understanding of the present disclosure and do not impose any limitation on it. The directions such as up, down, left, and right described in this application are for convenience of description with reference to the accompanying drawings and do not constitute a limitation on the protection scope.

[0039] Figure 1The structural schematic diagram of a charging parking space management system provided by an embodiment of the present disclosure. As Figure 1 shown, the charging parking space management system includes a parking space detection device 101 and a charging pile 102; the parking space detection device 101 includes a parking space detector 1011 and an indication device 1012 connected to the parking space detector 1011, and the charging pile 102 is communicatively connected to the parking space detector 1011 through a network; the parking space detector 1011 is configured to identify the status information of the charging parking space and the vehicle information on the charging parking space, the charging pile 102 is configured to charge the vehicle on the charging parking space and output charging information to the parking space detector, the indication device 1012 is configured to perform corresponding indication according to the status information of the charging parking space, the vehicle information on the charging parking space and the charging information of the charging pile, and the parking space detector 1011 is further configured to generate an indication instruction according to the status information of the charging parking space, the vehicle information on the charging parking space and the charging information, and send the indication instruction to the indication device, and the indication instruction is used to control the indication device to perform corresponding color display. Exemplarily, the parking space detector 1011 may be disposed above the front side of the charging parking space, the charging pile 102 may be disposed at the rear side of the charging parking space, and the indication device 1012 may be disposed at the side of the charging parking space.

[0040] It can be understood that one charging pile in this embodiment can simultaneously charge the vehicles on multiple parking spaces. That is to say, one charging pile in this embodiment corresponds to multiple charging parking spaces to save the installation and maintenance costs of the charging pile. At the same time, in order to reduce the installation and maintenance costs, only one indication device may be installed in this embodiment, and this one indication device can simultaneously perform corresponding indication according to the status information of multiple charging parking spaces, the vehicle information on the charging parking spaces and the charging information of the charging pile. In order to improve the accuracy of the obtained status information of the charging parking space, the vehicle information on the charging parking space and the charging information of the charging pile, the parking space detector is a video parking space detection device, and the video parking space detection device has a communication function. It should be noted that, in order to further reduce the installation cost, the indication device may be installed on the outer shell of the charging pile in this embodiment, and the charging pile may be installed on the installation rack or the wall surface.

[0041] In the charging parking space management system provided by the embodiments of the present disclosure, a charging pile and a parking space detection device are installed near the charging parking space. The parking space detection device includes a parking space detector and an indicating device connected to the parking space detector, and the charging pile is connected to the parking space detector to obtain the status information of the charging parking space and the vehicle information on the charging parking space through the parking space detector. At the same time, the indicating device is connected to the parking space detector so that the indicating device can make corresponding indications according to the status information of the charging parking space, the vehicle information on the charging parking space and the charging information output by the parking space detector, so as to realize the effective management of the charging parking space, avoid the charging pile parking space becoming a public parking lot, and provide convenience for charging electric vehicles.

[0042] Exemplarily, in this embodiment, the parking space detector will record the occupancy situation of the charging parking space in real time. After determining that there is a vehicle parked on the charging parking space, the parking space detector will take a photo of the vehicle, identify the license plate of the vehicle according to the taken photo, judge whether the vehicle is an oil vehicle or an electric vehicle according to the license plate of the vehicle, and when it is determined that the vehicle parked on the charging parking space is an oil vehicle, the parking space detector will send a vehicle moving instruction to the indicating device. When the indicating device receives the vehicle moving instruction, it will display a warning message to prompt the vehicle owner to move the vehicle; when it is determined that the vehicle parked on the charging parking space is an electric vehicle according to the license plate, the parking space detector also needs to determine whether the vehicle is charging according to the taken photo. If it is determined that the vehicle is charging, the charging information of the vehicle will be obtained from the charging pile. If it is determined that the vehicle is not charging, a vehicle moving instruction will be sent to the indicating device. When the indicating device receives the vehicle moving instruction, it will display a warning message to prompt the vehicle owner to move the vehicle.

[0043] Figure 2 It is a schematic structural diagram of a charging parking space management system provided by another embodiment of the present disclosure. As Figure 2As shown in the figure, the charging parking space management system includes a parking space detection device 201, a charging pile 202, and a server 203. The parking space detection device 201 and the charging pile 202 are both network communication-connected to the server 203. The parking space detection device 201 includes a parking space detector 2011 and an indicating device 2012 connected to the parking space detector 2011. The parking space detector 2011 is used to identify the status information of the charging parking space and the vehicle information on the charging parking space. The indicating device 2012 is used to make corresponding indications according to the status information of the charging parking space, the vehicle information on the charging parking space, and the charging information of the charging pile. The charging pile 202 is used to charge the vehicle on the charging parking space and output the charging information to the server 203. The server 203 is used to obtain the charging information of the charging pile and send the charging information of the charging pile to the parking space detector 2011. The parking space detector 2011 is used to generate an indication instruction according to the status information of the charging parking space, the vehicle information on the charging parking space, and the charging information of the charging pile, and send the indication instruction to the indicating device 2012. The indication instruction is used to control the indicating device 2012 to display corresponding colors.

[0044] In this embodiment, the charging information of the charging pile is obtained by connecting the server to the charging pile. This connection method can be a wireless network connection or a wired network connection. The charging information of the charging pile includes whether it is charging. If it is charging, the charging information also includes charging duration, current charging amount, charging time, and fee settlement method, etc. After obtaining the charging information, the server sends the charging information to the parking space detector. The parking space detector generates an indication instruction according to the charging information, the status information of the charging parking space it obtains, and the vehicle information on the charging parking space, and sends the indication instruction to the indicating device, so that the indicating device performs corresponding operations according to the indication instruction.

[0045] In one embodiment, the indicating device is an indicator light. The colors of the indicator light include blue, blue flashing, green, green flashing, red, and red flashing.

[0046] In this embodiment, the color of the indicator light can be specifically determined according to whether the ordinary parking space is idle, whether the charging parking space is idle, whether the charging pile is available, whether there is a charging electric vehicle or a fuel vehicle occupying the parking space, and the status of the parking space group.

[0047] Exemplarily, the corresponding relationship between the parking space status and the indicator light color in this embodiment is shown in Table 1 below.

[0048] Table 1

[0049]

[0050]

[0051] As can be seen from Table 1 above;

[0052] When the ordinary parking space is idle or not idle, the charging parking space is idle, the charging pile is available, there is no charging electric vehicle or fuel vehicle occupying the parking space, and the rechargeable parking space is idle, the indicator light shows blue, indicating that the vehicle can be charged;

[0053] When the ordinary parking space is idle or not idle, the charging parking space is idle, the charging pile is available, there is a charging electric vehicle or fuel vehicle occupying the parking space, and the rechargeable parking space is idle, the indicator light shows a blue flash, indicating a warning, and the vehicle can be charged when the charging electric vehicle or fuel vehicle leaves the parking space;

[0054] When both the charging parking space and the ordinary parking space are not idle, the charging pile is not available, there is or there is no charging electric vehicle or fuel vehicle occupying the parking space, and the rechargeable parking space is occupied, the indicator light shows red, indicating that the vehicle cannot be charged;

[0055] When both the charging parking space and the ordinary parking space are idle, the charging pile is available, there is a charging electric vehicle or fuel vehicle occupying the parking space, and the rechargeable parking space is occupied, the indicator light shows a red flash, indicating that the vehicle cannot be charged;

[0056] When both the charging parking space and the ordinary parking space are idle, the charging pile is available, there is a charging electric vehicle or fuel vehicle occupying the parking space, and the ordinary parking space is idle, the indicator light shows a green flash, indicating a warning, and the vehicle can be charged when the charging electric vehicle or fuel vehicle is moved to the ordinary parking space.

[0057] Except for the above classifications, the indicator light shows green in other scenarios.

[0058] Figure 3 The structural schematic diagram of a charging pile provided by an embodiment of the present disclosure is as follows Figure 3 As shown, the charging pile includes a charging control box 301, a communication unit 302, and a charging gun 303; a charging control board 3011 and a smart switch 3012 are arranged in the charging control box 301, a reset button 30121 is arranged on the outer surface of the charging control box 301 and connected to the smart switch 3012, a communication module 30111 and a charging module 30112 are arranged on the charging control board 3011, the charging control board 3011 is network communication connected to the parking space detector through the communication module 30111, the smart switch 3012 is network communication connected to the parking space detector through the communication unit 302 arranged outside the charging control box, the input end of the smart switch 3012 is connected to the power supply, the output end of the smart switch 3012 is connected to the power input end of the charging module 30112, and the power output end of the charging module 30112 is connected to the charging gun 303. It can be understood that the power supply is 220V alternating current.

[0059] In the new charging pile provided by the embodiment of the present disclosure, the intelligent switch 3012 is connected to the charging control board 3011 by setting the communication module 30111, so that through the intelligent switch 3012, not only can the user's power consumption parameters or the power supply parameters of the charging control board 3011 be monitored in real time, but also current protection can be realized. When the current value in the user's power consumption parameters or the power supply parameters of the charging control board 3011 exceeds the preset current threshold, the intelligent switch 3012 can automatically disconnect, so that the charging control board 3011 controls the charging gun 303 to stop charging; by connecting the intelligent switch 3012 to the communication unit 302, remote control of the intelligent switch 3012 can be realized, so that the new charging pile in this embodiment can realize remote maintenance, real-time remote monitoring, real-time remote setting of charging parameters, and remote control of power-off in extreme weather, thereby not only saving maintenance costs, but also realizing safer and more convenient charging pile power-on and power-off control.

[0060] It should be noted that the preset current threshold in this embodiment can be specifically set according to the actual application scenario, and the specific value of the preset current threshold is not limited in this embodiment. The extreme weather in this embodiment can be thunderstorm weather or strong wind weather.

[0061] Optionally, the communication unit 302 is connected to the intelligent switch 3012 through a data line; the charging gun 303 is connected to the charging control box 301 through a charging line. Exemplarily, the charging line can be a cable, one end of the cable is connected to the charging control box 301, and the other end of the cable is connected to the charging gun 303.

[0062] Figure 4 It is a schematic structural diagram of a charging pile provided by another embodiment of the present disclosure. As Figure 4 shown, the charging pile includes a charging control box 401 and a charging gun 402 connected to the charging control box 401; a charging control board 4011, an intelligent switch 4012, and a communication unit 4013 are arranged in the charging control box. A reset button 40121 is arranged on the outer surface of the charging control box 401 and is connected to the intelligent switch 4012. A communication module 40111 and a charging module 40412 are arranged on the charging control board 4011. The charging control board 4011 is network communication-connected to the parking space detector through the communication module 40111. The intelligent switch 4012 is connected to the communication unit 4013. The input end of the intelligent switch 4012 is connected to the power supply, the output end of the intelligent switch 4012 is connected to the power input end of the charging module 4013, and the power output end of the charging module 4013 is connected to the charging gun 402. It can be understood that the power supply is 220V alternating current.

[0063] In the charging pile provided in this embodiment, the communication module 30111 is set to connect the intelligent switch 4012 with the charging control board 4011, so that through the intelligent switch 4012, not only can the user's power consumption parameters or the power supply parameters of the charging control board 4011 be monitored in real time, but also current protection can be realized. When the current value in the user's power consumption parameters or the power supply parameters of the charging control board 4011 exceeds the preset current threshold, the intelligent switch 4012 can automatically disconnect, so that the charging control board 4011 controls the charging gun 402 to stop charging; by connecting the intelligent switch 4012 with the communication unit 4013, remote control of the intelligent switch 4012 is realized, so that the parking space detection device in this embodiment can realize remote maintenance, real-time remote monitoring, real-time remote setting of charging parameters, and remote control of power-off in extreme weather, thus not only saving maintenance costs, but also realizing safer and more convenient on-off control of the charging pile.

[0064] It should be noted that the preset current threshold in this embodiment can be specifically set according to the actual application scenario, and the specific value of the preset current threshold is not limited in this embodiment. The extreme weather in this embodiment can be thunderstorm weather or strong wind weather.

[0065] In one embodiment, the charging pile includes a charging control box, a communication unit, and a charging gun; a charging control board and an intelligent switch are arranged in the charging control box, and a reset button is arranged on the outer surface of the charging control box and connected to the intelligent switch; a communication module and a charging module are arranged on the charging control board, and the charging control board is network communication connected to the server through the communication module; the intelligent switch is network communication connected to the server through a communication unit arranged outside the charging control box.

[0066] In one embodiment, the charging pile includes a charging control box and a charging gun connected to the charging control box; a charging control board, an intelligent switch, and a communication unit are arranged in the charging control box, and a reset button is arranged on the outer surface of the charging control box and connected to the intelligent switch; a communication module and a charging module are arranged on the charging control board, the charging control board is network communication connected to the server through the communication module, and the intelligent switch is connected to the communication unit.

[0067] Specifically, the charging control board can receive charging control instructions through the communication module and control the charging module to perform charging operations. At the same time, the charging control board can send charging data through the communication module; the intelligent switch can receive control instructions through the communication unit and control the power output to be turned on or off according to the control instructions. At the same time, the intelligent switch can output power parameters such as voltage, current, and power, and the intelligent switch can receive setting instructions through the communication unit to set power parameters such as the maximum output current or the minimum output current, etc.; when the reset button is manually pressed, it can control the intelligent switch to turn off in an emergency and cut off the power output.

[0068] Optionally, the communication unit 4013 is connected to the intelligent switch 4012 through a data line.

[0069] Those skilled in the art will readily conceive of other embodiments of the present disclosure after considering the specification and practicing the disclosure herein. This application is intended to cover any variations, uses, or adaptations of the present disclosure that follow the general principles of the present disclosure and include common general knowledge or conventional technical means in the technical field not disclosed herein. The specification and examples are only to be considered as exemplary, and the true scope and spirit of the present disclosure are pointed out by the following claims.

Claims

1. A charging parking space management system, characterized in that: The charging parking space management system includes a parking space detection device and a charging pile; The parking space detection device includes a parking space detector and an indication device connected to the parking space detector, and the charging pile is connected to the parking space detector via network communication; The parking space detector is used to identify the status information of the charging parking space and the vehicle information on the charging parking space; The charging pile is used to charge the vehicle in the charging parking space and output charging information to the parking space detector; The indicating device is used to indicate accordingly according to the status information of the charging parking space, the vehicle information on the charging parking space and the charging information of the charging pile; The parking space detector is also used to generate an indication instruction based on the status information of the charging parking space, the vehicle information on the charging parking space and the charging information, and send the indication instruction to the indication device, and the indication instruction is used to control the indication device to display the corresponding color.

2. The charging parking space management system according to claim 1, characterized in that: The charging pile includes a charging control box, a communication unit and a charging gun; The charging control box is provided with a charging control board and an intelligent switch, and a reset button is provided on the outer surface of the charging control box and connected to the intelligent switch; a communication module and a charging module are provided on the charging control board, and the charging control board is connected to the parking space detector network through the communication module; the intelligent switch is connected to the parking space detector network through a communication unit provided outside the charging control box; The input end of the intelligent switch is connected to the power supply, the output end of the intelligent switch is connected to the power input end of the charging module, and the power output end of the charging module is connected to the charging gun.

3. The charging parking space management system according to claim 1, characterized in that: The charging pile includes a charging control box and a charging gun connected to the charging control box; The charging control box is provided with a charging control board, an intelligent switch and a communication unit, and a reset button is provided on the outer surface of the charging control box and is connected to the intelligent switch; a communication module and a charging module are provided on the charging control board, the charging control board is connected to the parking space detector network communication through the communication module, and the intelligent switch is connected to the communication unit; The input end of the intelligent switch is connected to the power supply, the output end of the intelligent switch is connected to the power input end of the charging module, and the power output end of the charging module is connected to the charging gun.

4. A charging parking space management system, characterized in that: The charging parking space management system comprises a parking space detection device, a charging pile and a server, wherein the parking space detection device and the charging pile are both connected to the server network communication; The parking space detection device includes a parking space detector and an indication device connected to the parking space detector, wherein the parking space detector is used to identify the state information of the charging parking space and the vehicle information on the charging parking space; The indicating device is used to indicate accordingly according to the status information of the charging parking space, the vehicle information on the charging parking space and the charging information of the charging pile; The charging pile is used to charge the vehicle in the charging parking space and output charging information to the server; The server is used to obtain the charging information of the charging pile and send the charging information of the charging pile to the parking space detector; The parking space detector is used to generate an indication instruction according to the status information of the charging parking space, the vehicle information on the charging parking space and the charging information of the charging pile, and send the indication instruction to the indication device, and the indication instruction is used to control the indication device to display the corresponding color.

5. The charging parking space management system according to claim 1 or claim 4, characterized in that: The indicating device is an indicator light, and the colors of the indicator light include blue, flashing blue, green, flashing green, red and flashing red.

6. The charging parking space management system according to claim 1 or claim 4, characterized in that: The parking space detector is a video parking space detection device.

7. The charging parking space management system according to claim 4, characterized in that: The charging pile includes a charging control box, a communication unit and a charging gun; The charging control box is provided with a charging control board and an intelligent switch, and a reset button is provided on the outer surface of the charging control box and connected to the intelligent switch; a communication module and a charging module are provided on the charging control board, and the charging control board is connected to the server network communication through the communication module; the intelligent switch is connected to the server network communication through a communication unit provided outside the charging control box The input end of the intelligent switch is connected to the power supply, the output end of the intelligent switch is connected to the power input end of the charging module, and the power output end of the charging module is connected to the charging gun.

8. The charging parking space management system according to claim 7, characterized in that: The charging pile includes a charging control box and a charging gun connected to the charging control box; The charging control box is provided with a charging control board, an intelligent switch and a communication unit, and a reset button is provided on the outer surface of the charging control box and is connected to the intelligent switch; a communication module and a charging module are provided on the charging control board, the charging control board is connected to the server network communication through the communication module, and the intelligent switch is connected to the communication unit; The input end of the intelligent switch is connected to the power supply, the output end of the intelligent switch is connected to the power input end of the charging module, and the power output end of the charging module is connected to the charging gun.

9. The charging parking space management system according to claim 7, characterized in that: The communication module is connected to the parking space detector through TCP / IP or 4G / 5G network protocol; the communication unit is connected to the parking space detector through TCP / IP or 4G / 5G network protocol, and the communication unit is connected to the smart switch through a data cable.

10. The charging parking space management system according to claim 7 or claim 8, characterized in that: The communication module is connected to the server through TCP / IP or 4G / 5G network protocol; the communication unit is connected to the server through TCP / IP or 4G / 5G network protocol, and the communication unit is connected to the smart switch through a data cable.