An intelligent street lighting monitoring terminal system
Through the multi-function integration of the intelligent street light lighting monitoring terminal system and cloud service interoperability, the problem of low urban monitoring and resource utilization is solved, and efficient resource sharing and low-cost management of smart cities are realized.
Patent Information
- Application Number
- CN202211452043.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-21
- Publication Date
- 2025-05-20
- Estimated Expiration
- 2042-11-21
AI Technical Summary
In the prior art, urban monitoring, street lights, charging piles, outdoor advertising and other facilities are independently arranged, resulting in waste of resources, low integration, high cost, and blind spots in wireless network coverage and security monitoring.
An intelligent street light lighting monitoring terminal system is proposed, integrating monitoring, wireless coverage, lighting, charging, advertising and other functions, and the interconnection and sharing of equipment resources and sensor data through open cloud services, avoid duplicate construction, and form an integrated perception carrier for smart cities.
It realizes multi-function integration, improves resource utilization, reduces costs, avoids duplicate construction of basic sensor networks in smart cities, and supports smart applications of urban management.
Smart Images

Figure CN115767815B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of lighting monitoring, and particularly relates to an intelligent street lamp lighting monitoring terminal system. Background Art
[0002] At present, the rapid development of urbanization has brought various conveniences to people, but it has also led to many problems: independent arrangements of monitoring, street lamps, charging piles, outdoor advertisements, etc., resulting in waste of resources, low integration, and high costs; there are blind spots in wireless network coverage; there are many blind spots in security monitoring, and there are monitoring dead corners in remote alleys. Summary of the Invention
[0003] The present invention aims to solve at least one of the technical problems in the above technologies to some extent. For this purpose, the object of the present invention is to propose an intelligent street lamp lighting monitoring terminal system, which realizes the integration of multiple functions such as monitoring, wireless coverage, lighting, charging, advertising, etc., has high integration, improves the effective utilization of resources, reduces costs, and realizes the interconnection and sharing of the device resources and sensing data management resources of the smart city sensing terminal in the form of an open cloud service, avoids the repeated construction of the smart city basic sensing network, achieves the high sharing of multiple sensing terminal devices and information resources, and forms an integrated perception carrier service for the construction of the smart city through unified cloud platform big data management, supporting the intelligent application of urban management.
[0004] To achieve the above object, an embodiment of the present invention proposes an intelligent street lamp lighting monitoring terminal system, including:
[0005] Light poles, which are arranged on both sides of the roads in the city;
[0006] A wireless transmission module, a public wifi service module, an LED light source machine single lamp control module, a camera module, a broadcast module, an advertising screen, an environmental detection sensor, and a charging module arranged on the light poles;
[0007] The wireless transmission module is respectively connected to the public wifi service module, the LED light source machine single lamp control module, the camera module, the broadcast module, the advertising screen, the environmental detection sensor, the charging module, and the background server.
[0008] According to some embodiments of the present invention, the LED light source machine single lamp control module is used for intelligent control of the LED, including dimming, switching on and off, voltage, current, power, power consumption statistics, fault alarm, energy consumption analysis, GIS map, strategy control, and loop monitoring.
[0009] According to some embodiments of the present invention, the camera module is used for establishing video monitoring and providing video services according to the monitoring results.
[0010] According to some embodiments of the present invention, the broadcast module is configured to receive broadcast instructions issued by the background server and perform voice broadcasts.
[0011] The advertisement screen is configured to receive advertisement instructions issued by the background server and display advertisement information, where the advertisement information includes release slogans, traffic congestion conditions, rainstorm warnings, child abduction information, and commercial advertisements.
[0012] According to some embodiments of the present invention, the environmental detection sensor includes: a temperature sensor, a humidity sensor, a PM2.5 sensor, and a noise intensity detection sensor.
[0013] According to some embodiments of the present invention, the charging module includes:
[0014] A card reader for reading the user's identity card and obtaining stored information;
[0015] An information interaction touch screen for displaying the stored information and receiving the user's input instructions after the card reader obtains the stored information;
[0016] A charging pile for providing charging services according to the input instructions.
[0017] According to some embodiments of the present invention, it further includes an energy consumption management module disposed on the lamp post, configured to detect the energy consumption information of the wireless transmission module, the public wifi service module, the LED light source single lamp control module, the camera module, the broadcast module, the advertisement screen, the environmental detection sensor, and the charging module, and transmit it to the server for statistics.
[0018] According to some embodiments of the present invention, the LED light source single lamp control module includes:
[0019] A mobile acquisition module for acquiring a first environmental image at a first position when the LED lamp is in an off state;
[0020] A determination module for converting the first environmental image from the RGB color space to the YUV color space and determining the luminance component information based on the V color channel value corresponding to each pixel point;
[0021] A control module for:
[0022] Determining a luminance histogram according to the luminance component information of each pixel point;
[0023] Determining a first intermediate luminance value according to the luminance histogram, and determining a first number of pixel points greater than the first intermediate luminance value and a second number of pixel points less than the first intermediate luminance value;
[0024] When it is determined that the second number is greater than the first number, it indicates that the environment is in a relatively dark state, and controls the LED lamp to illuminate.
[0025] According to some embodiments of the present invention, the mobile acquisition module is further configured to:
[0026] When the LED lamp is in illumination, acquire a second environmental image at a first position, acquire a third environmental image at a second position, and acquire a fourth environmental image at a fourth position;
[0027] The control module is further configured to:
[0028] Determine a second intermediate brightness value and first contrast information based on the second environmental image;
[0029] Determine a third intermediate brightness value and second contrast information based on the third environmental image;
[0030] Determine a fourth intermediate brightness value and third contrast information based on the fourth environmental image;
[0031] Determine a first brightness attenuation value according to the second intermediate brightness value and the third intermediate brightness value; determine a first contrast attenuation value according to the first contrast information and the second contrast information;
[0032] Determine a second brightness attenuation value according to the second intermediate brightness value and the fourth intermediate brightness value; determine a second contrast attenuation value according to the first contrast information and the third contrast information;
[0033] Determine a first difference according to the first brightness attenuation value and the second brightness attenuation value;
[0034] Determine a second difference according to the first contrast attenuation value and the second contrast attenuation value;
[0035] When it is determined that the first difference is greater than a preset first difference and the second difference is greater than a preset second difference, generate a prompt message indicating that the LED lamp has a large attenuation and issue a warning.
[0036] According to some embodiments of the present invention, the method for the control module to determine the first contrast information based on the second environmental image includes:
[0037] Perform recognition on the second environmental image based on an image recognition model, determine the objects included in the second environmental image, and perform contour division based on the objects to divide the second environmental image into several local regions;
[0038] Determine the contrast of each local region;
[0039] Determine the weight coefficient of the corresponding local region based on the ratio of the area of the local region to the area of the second environmental image;
[0040] Based on the contrast of each local region and the corresponding weight coefficients, weighted calculation is performed to determine the first contrast information of the second environmental image.
[0041] Other features and advantages of the present invention will be set forth in the following description, and in part will be obvious from the description, or may be learned by practice of the present invention. The objectives and other advantages of the present invention may be realized and attained by the structure particularly pointed out in the written description and the drawings.
[0042] The technical solutions of the present invention will be further described in detail below through the drawings and embodiments. Description of the Drawings
[0043] The drawings are used to provide a further understanding of the present invention, and constitute a part of the description. Together with the embodiments of the present invention, they are used to explain the present invention, and do not constitute a limitation to the present invention. In the drawings:
[0044] Figure 1 is a block diagram of an intelligent street lamp lighting monitoring terminal system according to an embodiment of the present invention;
[0045] Figure 2 is a schematic diagram of an intelligent street lamp lighting monitoring terminal system according to another embodiment of the present invention;
[0046] Figure 3 is a schematic diagram of the function display of an intelligent street lamp lighting monitoring terminal system according to an embodiment of the present invention;
[0047] Figure 4 is a schematic diagram of the detection result of an environmental detection sensor according to an embodiment of the present invention;
[0048] Figure 5 is a schematic diagram of the detection result of an energy consumption management module according to an embodiment of the present invention;
[0049] Figure 6 is a schematic diagram of the charging service of a charging module according to an embodiment of the present invention. Detailed Embodiments
[0050] The following describes the preferred embodiments of the present invention with reference to the drawings. It should be understood that the preferred embodiments described herein are only for the purpose of illustrating and explaining the present invention, and are not used to limit the present invention.
[0051] According to the attached Figure 1-6 An intelligent street lamp lighting monitoring terminal system is described.
[0052] An embodiment of the present invention provides an intelligent street lamp lighting monitoring terminal system, including:
[0053] Light poles are set up on both sides of the city's roads;
[0054] A wireless transmission module, a public wifi service module, a single-lamp control module of an LED light source, a camera module, a broadcast module, an advertising screen, an environmental detection sensor and a charging module are arranged on the lamp pole;
[0055] The wireless transmission module is respectively connected to the public wifi service module, the LED light source machine single lamp control module, the camera module, the broadcast module, the advertising screen, the environmental detection sensor, the charging module and the background server.
[0056] The working principle and beneficial effects of the above technical solution: Based on the realization of smart lighting and green lighting based on ordinary lamp poles, the public wifi service module, LED light source single lamp control module, camera module, broadcast module, advertising screen, environmental detection sensor and charging module are used to realize the integration of monitoring, wireless coverage, lighting, charging, advertising and other multi-functions. The integration is high, the effective utilization of resources is improved, and the cost is reduced. The connection between the corresponding module and the background server is established based on the wireless transmission module, which facilitates the background management and improves the management efficiency. The intercommunication and sharing of the equipment resources and sensor data management resources of the smart city sensor terminal are realized in the form of open cloud services, avoiding the duplication of the basic sensor network of the smart city, achieving a high degree of sharing of multiple sensor terminal equipment and information resources, and forming an integrated perception carrier service for the construction of smart cities through unified cloud platform big data management to support the smart application of urban management.
[0057] According to some embodiments of the present invention, the LED light source machine single lamp control module is used to perform intelligent control on the LED, including dimming, switching, voltage, current, power, electricity statistics, fault alarm, energy consumption analysis, GIS map, strategy control and loop monitoring.
[0058] The working principle and beneficial effects of the above technical solution: Based on the LED light source machine single lamp control module, intelligent single lamp automatic monitoring and management are carried out to realize intelligent control and management of street lamps.
[0059] According to some embodiments of the present invention, the camera module is used to establish video monitoring and provide video services based on monitoring results.
[0060] The working principle and beneficial effects of the above technical solution: video surveillance is established through camera modules to solve the practical problems of high cost and long construction period of traditional urban monitoring facilities. Compared with the construction of traditional Skynet monitoring equipment, smart street lamps are used as the installation carrier of the monitoring system, and there is no need to add new power systems, communication transmission and other engineering quantities, avoiding a series of problems caused by repeated urban construction and improving resource utilization.
[0061] In one embodiment, it further includes a power supply management module, which is used to monitor the power supply status in real time and manage the power consumption of modules that need to be powered, such as the public Wi-Fi service module, the single lamp control module of the LED light source machine, the camera module, the broadcast module, the advertising screen, the environmental detection sensor, and the charging module.
[0062] In one embodiment, the public Wi-Fi service module includes a microcomputer station.
[0063] According to some embodiments of the present invention, the broadcast module is used to receive the broadcast instructions issued by the background server and perform voice broadcasts.
[0064] The advertising screen is used to receive the advertising instructions issued by the background server and display advertising information, which includes release slogans, traffic congestion conditions, rainstorm warnings, child abduction information, and commercial advertisements.
[0065] The working principle and beneficial effects of the above technical solution: It realizes the delivery of broadcasts and advertisements, avoids the repeated construction of corresponding equipment, and improves the resource utilization rate.
[0066] According to some embodiments of the present invention, the environmental detection sensor includes: a temperature sensor, a humidity sensor, a PM2.5 sensor, and a noise intensity detection sensor.
[0067] The working principle and beneficial effects of the above technical solution: It realizes the monitoring of various environmental information and better realizes monitoring and management.
[0068] According to some embodiments of the present invention, the charging module includes:
[0069] A card reader, which is used to read the user's identity card and obtain the stored information.
[0070] An information interaction touch screen, which is used to display the stored information and receive the user's input instructions after the card reader obtains the stored information.
[0071] A charging pile, which is used to provide charging services according to the input instructions.
[0072] The working principle and beneficial effects of the above technical solution: The card reader is used to read the user's identity card and obtain the stored information; the information interaction touch screen is used to display the stored information and receive the user's input instructions after the card reader obtains the stored information; the charging pile is used to provide charging services according to the input instructions. It realizes automated management. The charging pile service access can view the charging status and amount, and supports remote control of charging.
[0073] According to some embodiments of the present invention, it further includes an energy consumption management module disposed on the lamp post, which is used to detect the energy consumption information of the wireless transmission module, public wifi service module, single LED light source machine control module, camera module, broadcast module, advertising screen, environmental detection sensor and charging module, and transmit it to the server for statistics.
[0074] The working principle and beneficial effects of the above technical solution: It is convenient for the background to count the energy consumption information of the wireless transmission module, public wifi service module, single LED light source machine control module, camera module, broadcast module, advertising screen, environmental detection sensor and charging module, thereby facilitating the optimization of energy consumption and improving the utilization rate of resources.
[0075] In one embodiment, it further includes a one-key alarm, which is used to achieve one-key alarm, for alarm when the device fails, and can also be used for alarm when its own safety is in danger.
[0076] An intelligent street lamp lighting monitoring terminal system proposed based on the present invention realizes functions such as intelligent lighting, environmental monitoring, intelligent public security monitoring, remote advertising screen release and management, public wifi service, intelligent energy consumption management, one-key alarm and charging pile management, with high integration and improved resource utilization rate.
[0077] According to some embodiments of the present invention, the single LED light source machine control module includes:
[0078] A mobile acquisition module, which is used to acquire a first environmental image at a first position when the LED light is in an off state;
[0079] A determination module, which is used to convert the first environmental image from the RGB color space to the YUV color space, and determine the brightness component information based on the V color channel value corresponding to each pixel point;
[0080] A control module, which is used to:
[0081] Determine a brightness histogram according to the brightness component information of each pixel point;
[0082] Determine a first intermediate brightness value according to the brightness histogram, and determine a first number of pixel points greater than the first intermediate brightness value and a second number of pixel points less than the first intermediate brightness value;
[0083] When it is determined that the second number is greater than the first number, it indicates that the environment is in a relatively dark state, and the control LED light is used for lighting.
[0084] Working principle of the above technical solution: The mobile acquisition module is used to acquire a first environmental image at a first position when the LED light is in an off state; the mobile acquisition module can move to the first position at preset time intervals to acquire the first environmental image. The first position is a preset area near the lamp post. For example, the first position is 1 m directly in front of the lamp post.
[0085] The determination module is used to convert the first environmental image from the RGB color space to the YUV color space and determine the luminance component information based on the V color channel value corresponding to each pixel point; when the first environmental image is in the RGB color space, the R channel value, G channel value, and B channel value are all related to luminance, while when in the YUV color space, luminance is only related to the V channel value, which can reduce variable analysis and thus reduce the computational amount and improve the computational efficiency.
[0086] The control module is used to: determine a luminance histogram according to the luminance component information of each pixel point; the horizontal axis of the luminance histogram is the luminance component information, and the vertical axis is the number of pixel points corresponding to the luminance component information.
[0087] The method for determining the first intermediate luminance value according to the luminance histogram is: based on the maximum luminance component information and the minimum luminance component information in the luminance histogram, perform a subtraction calculation to obtain a difference, divide the difference by 2 to obtain the first intermediate luminance value. Based on the first intermediate luminance value, distinguish the luminance histogram to determine the first number of pixel points greater than the first intermediate luminance value and the second number of pixel points less than the first intermediate luminance value; when it is determined that the second number is greater than the first number, it indicates that the environment is in a darker state, and the LED light is controlled to illuminate.
[0088] Beneficial effects of the above technical solution: Acquire the first environmental image, perform color space conversion on the first environmental image to reduce the computational amount, statistically determine the luminance histogram, and then determine the first intermediate luminance value, determine the first number of pixel points greater than the first intermediate luminance value and the second number of pixel points less than the first intermediate luminance value; according to the comparison result of the first number and the second number, accurately and quickly determine whether the environment around the lamp post is darker or brighter, and intelligently control whether to illuminate through the LED light. It realizes the intelligent adjustment of the on / off of the LED light based on the brightness of the surrounding environment.
[0089] According to some embodiments of the present invention, the mobile acquisition module is further used to:
[0090] When the LED light is illuminating, acquire a second environmental image at the first position, a third environmental image at the second position, and a fourth environmental image at the fourth position respectively;
[0091] The control module is further used to:
[0092] Determine a second intermediate brightness value and first contrast information based on the second environmental image;
[0093] Determine a third intermediate brightness value and second contrast information based on the third environmental image;
[0094] Determine a fourth intermediate brightness value and third contrast information based on the fourth environmental image; Determine a first brightness attenuation value according to the second intermediate brightness value and the third intermediate brightness value; Determine a first contrast attenuation value according to the first contrast information and the second contrast information;
[0095] Determine a second brightness attenuation value according to the second intermediate brightness value and the fourth intermediate brightness value; Determine a second contrast attenuation value according to the first contrast information and the third contrast information;
[0096] Determine a first difference according to the first brightness attenuation value and the second brightness attenuation value;
[0097] Determine a second difference according to the first contrast attenuation value and the second contrast attenuation value;
[0098] When it is determined that the first difference is greater than a preset first difference and the second difference is greater than a preset second difference, generate a prompt message indicating that the LED lamp has a large attenuation and issue a warning.
[0099] The working principle of the above technical solution: When the LED lamp is illuminating, obtain the second environmental image at the first position, obtain the third environmental image at the second position, and obtain the fourth environmental image at the fourth position; The second position, the third position, and the fourth position are in the same direction as the first position and are preset areas that gradually move away from the lamp post. For example, the first position is 1 m directly in front of the lamp post, the second position is 2 m directly in front of the lamp post, the third position is 3 m directly in front of the lamp post, and the fourth position is 4 m directly in front of the lamp post. The distances between adjacent positions among the first position, the second position, the third position, and the fourth position are the same.
[0100] The method by which the control module determines the second intermediate brightness value based on the second environmental image, determines the third intermediate brightness value based on the third environmental image, determines the fourth intermediate brightness value based on the fourth environmental image, and determines the first intermediate brightness value based on the first environmental image is the same.
[0101] The method for determining the first brightness attenuation value according to the second intermediate brightness value and the third intermediate brightness value includes: determining the difference between the second intermediate brightness value and the third intermediate brightness value, and taking the ratio of the difference to the second intermediate brightness value as the first brightness attenuation value.
[0102] A method for determining a first contrast attenuation value according to first contrast information and second contrast information includes: determining the difference between the first contrast information and the second contrast information, and taking the ratio of the difference to the first contrast information as the first contrast attenuation value.
[0103] The method for determining the second brightness attenuation value and the second contrast attenuation value is the same as the method for determining the first brightness attenuation value and the first contrast information.
[0104] According to the first brightness attenuation value and the second brightness attenuation value, determine a first difference; according to the first contrast attenuation value and the second contrast attenuation value, determine a second difference; when it is determined that the first difference is greater than a preset first difference and the second difference is greater than a preset second difference, generate a prompt message indicating that the LED lamp has a large attenuation and issue a warning.
[0105] The beneficial effects of the above technical solution: When the LED lamp is illuminating, obtain a second environmental image at a first position, obtain a third environmental image at a second position, and obtain a fourth environmental image at a fourth position; perform corresponding brightness attenuation detection and contrast attenuation detection. When it is determined that the first difference is greater than a preset first difference and the second difference is greater than a preset second difference, that is, when the brightness attenuation is large and the contrast attenuation is large, it indicates that the LED lamp has a large attenuation and a short lifespan, and a warning is issued, which is convenient for corresponding replacement, achieving the accuracy of fault monitoring and improving the timeliness of maintenance.
[0106] According to some embodiments of the present invention, the method for the control module to determine the first contrast information based on the second environmental image includes:
[0107] Identify the second environmental image based on an image recognition model, determine the target objects included in the second environmental image, and perform contour division based on the target objects to divide the second environmental image into several local regions;
[0108] Determine the contrast of each local region;
[0109] Based on the ratio of the area of the local region to the area of the second environmental image, determine the weight coefficient of the corresponding local region;
[0110] Based on the contrast of each local region and the corresponding weight coefficient, perform weighted calculation to determine the first contrast information of the second environmental image.
[0111] Working principle of the above technical solution: Identify the second environmental image based on an image recognition model, determine the objects included in the second environmental image, and perform contour division based on the objects to divide the second environmental image into several local regions; determine the contrast of each local region; determine the weight coefficient of the corresponding local region based on the ratio of the area of the local region to the area of the second environmental image; perform weighted calculation based on the contrast of each local region and the corresponding weight coefficient to determine the first contrast information of the second environmental image.
[0112] Beneficial effects of the above technical solution: When determining the first contrast information of the second environmental image, the local regions determined based on the contrast of each local region and the corresponding weight coefficient respectively correspond to different objects, improving the accuracy of determining the first contrast information. It avoids the inaccuracy of the calculation results caused by only considering the contrast of the overall image and not considering the local detail information in the prior art.
[0113] In one embodiment, determining the contrast of a local region includes:
[0114] Obtain the gray value of each pixel point in the local region;
[0115] Calculate the gray difference between adjacent pixel points according to the gray value of each pixel point in the local region;
[0116] Obtain the distribution probability of adjacent pixel points with the same gray difference according to the gray difference between the adjacent pixel points;
[0117] Calculate the contrast of the local region according to the gray difference between adjacent pixel points and the distribution probability of adjacent pixel points with the same gray difference.
[0118] W = ∑ S s(i, j) 2 P s(i,j)
[0119] where W is the contrast of the local region; s(i, j) is the gray difference between adjacent pixel points i and j; P s(i,j) is the distribution probability of adjacent pixel points with the same gray difference.
[0120] Obviously, those skilled in the art can make various changes and modifications to the present invention without departing from the spirit and scope of the present invention. Thus, if these modifications and variations of the present invention fall within the scope of the claims of the present invention and their equivalent technologies, the present invention also intends to include these modifications and variations.
Claims
1. An intelligent street lighting monitoring terminal system, characterized in that: include: Light poles are set up on both sides of the city's roads; A wireless transmission module, a public wifi service module, an LED light source single lamp control module, a camera module, a broadcast module, an advertising screen, an environmental detection sensor and a charging module are arranged on the lamp pole; The wireless transmission module is respectively connected to the public wifi service module, the LED light source machine single lamp control module, the camera module, the broadcast module, the advertising screen, the environment detection sensor, the charging module and the background server; LED light source machine single lamp control module, including: A mobile acquisition module, used for acquiring a first environment image at a first position when the LED lamp is in an off state; A determination module, used to convert the first environment image from the RGB color space to the YUV color space, and determine the brightness component information based on the V color channel value corresponding to each pixel; Control module for: Determine a brightness histogram according to the brightness component information of each pixel; Determine a first intermediate brightness value according to the brightness histogram, and determine a first number of pixel points greater than the first intermediate brightness value and a second number of pixel points less than the first intermediate brightness value; When it is determined that the second number is greater than the first number, it indicates that the environment is in a relatively dark state, and the LED lamp is controlled to illuminate; The mobile acquisition module is also used for: When the LED lamp is lighting, a second environment image is acquired at the first position, a third environment image is acquired at the second position, and a fourth environment image is acquired at the fourth position; The control module is also used for: Determine a second intermediate brightness value and first contrast information based on the second environment image; Determine a third intermediate brightness value and second contrast information based on the third environment image; Determine a fourth intermediate brightness value and third contrast information based on the fourth environment image; Determine a first brightness attenuation value according to the second intermediate brightness value and the third intermediate brightness value; determine a first contrast attenuation value according to the first contrast information and the second contrast information; Determine a second brightness attenuation value according to the second intermediate brightness value and the fourth intermediate brightness value; determine a second contrast attenuation value according to the first contrast information and the third contrast information; Determine a first difference value according to the first brightness attenuation value and the second brightness attenuation value; Determining a second difference value according to the first contrast attenuation value and the second contrast attenuation value; When it is determined that the first difference is greater than the preset first difference and the second difference is greater than the preset second difference, a prompt message indicating that the LED light attenuation is large is generated and an early warning is issued.
2. The intelligent street lighting monitoring terminal system according to claim 1, characterized in that: The LED light source machine single lamp control module is used to perform intelligent control of LEDs, including dimming, switching, voltage, current, power, electricity statistics, fault alarm, energy consumption analysis, GIS map, strategy control and loop monitoring.
3. The intelligent street lighting monitoring terminal system according to claim 1, characterized in that: The camera module is used to establish video monitoring and provide video services based on monitoring results.
4. The intelligent street lighting monitoring terminal system according to claim 1, characterized in that: The broadcast module is used to receive the broadcast instruction issued by the background server and perform voice broadcast; The advertising screen is used to receive advertising instructions issued by the background server and to display advertising information, wherein the advertising information includes slogans, traffic congestion conditions, rainstorm warnings, child abduction information, and commercial advertisements.
5. The intelligent street lighting monitoring terminal system according to claim 1, characterized in that: The environmental detection sensors include: a temperature sensor, a humidity sensor, a PM2.5 sensor, and a noise intensity detection sensor.
6. The intelligent street lighting monitoring terminal system according to claim 1, characterized in that: The charging module comprises: A card reader is used to read the user's ID card and obtain the stored information; The information interaction touch screen is used to display the stored information and receive the user's input instructions after the card reader obtains the stored information; The charging pile is used to provide charging service according to the input instruction.
7. The intelligent street lighting monitoring terminal system according to claim 1, characterized in that: It also includes an energy consumption management module arranged on the lamp pole, which is used to detect the energy consumption information of the wireless transmission module, public wifi service module, LED light source single lamp control module, camera module, broadcast module, advertising screen, environmental detection sensor and charging module, and transmit it to the server for statistics.
8. The intelligent street lighting monitoring terminal system according to claim 1, characterized in that: The method in which the control module determines the first contrast information based on the second environment image includes: Identify the second environment image based on the image recognition model, determine the target object included in the second environment image, and divide the second environment image into a plurality of local areas based on the contour of the target object; Determine the contrast of each local area; Determining a weight coefficient of the corresponding local area based on a ratio of an area of the local area to an area of the second environment image; Based on the contrast of each local area and the corresponding weight coefficient, a weighted calculation is performed to determine the first contrast information of the second environment image.
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