An automatic control device for urban lighting project and its control method
Through the automatic control device of the urban lighting project, the urban lighting is managed remotely using the general control platform and information collector, which solves the problem of management in the existing technology, and realizes efficient remote control and management, saving manpower and expenses.
Patent Information
- Application Number
- CN202211069459.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-02
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2042-09-02
AI Technical Summary
How to effectively manage urban lighting facilities and reduce on-site service engineering and technicians and costs.
The automatic control device of urban lighting engineering is adopted, including a general control platform, a single-light controller, a regional node controller, a brightness regulator and an information collector, and remote control and management are realized through the Internet or mobile network, combining light intensity and infrared image collector for equipment opening and closing and brightness adjustment.
The unified management of urban lighting has been achieved, the field service engineering and technical personnel and expenses have been reduced, and management efficiency has been improved.
Smart Images

Figure CN115348711B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of urban lighting projects, and particularly relates to an automatic control device for urban lighting projects and a control method thereof. Background Art
[0002] At present, urban lighting is not only an important guarantee infrastructure for urban night traffic and social activities, but also makes great contributions to the prosperity of urban night economy, the display of urban cultural connotations, the highlighting of urban images, and the improvement of the living environment of citizens. In recent years, all aspects of urban lighting have continued to develop healthily, rapidly, and continuously. While the urban lighting industry is developing, how to uniformly and effectively manage an increasing number of urban lighting facilities is an urgent problem to be solved. Summary of the Invention
[0003] The technical problem to be solved by the present invention is to provide an automatic control device for urban lighting projects, which can manage the home lighting, commercial lighting, and street lighting of customers at the same time, saving a large number of on-site service engineering technicians, service time, and service costs.
[0004] To solve the above technical problem, the present invention adopts the following technical solution: an automatic control device for urban lighting projects, including a total control platform, single-lamp controllers, area node controllers, residential self-use lighting devices, commercial lighting devices, municipal engineering lighting devices, area information collectors, and brightness regulators;
[0005] Each municipal engineering lighting device is connected to a single-lamp controller. The residential self-use lighting devices, commercial lighting devices, and municipal engineering lighting devices are divided into several lighting areas according to regions. The residential self-use lighting devices and commercial lighting devices in each lighting area are controlled by the area node controller; the single-lamp controllers of the municipal engineering lighting devices in each lighting area communicate with the area node controller and are controlled by the area node controller;
[0006] An area information collector is provided in each lighting area; the area information collector is connected to the area node controller through a communication module; the brightness regulator includes an area node regulator and a single-lamp regulator; the single-lamp regulator is installed on the municipal engineering lighting device; the area node regulator is installed on the area node controller; the area information collector and the brightness regulator assist the area node controller to adjust the municipal engineering lighting device; the total control platform is connected to the area node controller through a communication module; the total control platform is connected to a mobile terminal and communicates with the mobile terminal.
[0007] Further, the area information collector includes a light intensity collector and an infrared image collector; the light intensity collector and the infrared image collector are installed on the lighting device. The light intensity collector is used to collect the external light intensity; the infrared image collector is used to collect image information. When the light intensity collected by the light intensity collector is less than a preset value, the area node controller controls the single lamp controller to turn on the municipal engineering lighting device. The infrared image collector compares the real-time collected image information with the reference image stored in the area node controller. When it detects that the image is constantly changing and at the same time the light intensity is less than the preset value, the area node controller controls the single lamp controller to turn on the municipal engineering lighting device.
[0008] Further, a fault detection unit is provided on the single lamp controller. The fault detection unit is used to detect whether the lighting device can operate normally and upload the detected data to the area node controller, and then the area node controller uploads it to the total control platform.
[0009] Further, the residential self-use lighting device and the commercial lighting device are connected to the power consumption detection and protection device; the power detection and protection device is connected to the area node controller.
[0010] Further, a time node controller is provided in the total control platform. According to the time node controller, the opening and closing of the residential self-use lighting device, the commercial lighting device, and the municipal engineering lighting device are controlled within a specific time period.
[0011] Further, the total control platform controls the area node controller to turn on or off the municipal engineering lighting devices in the area within a certain time period according to the time node controller. In the case where the municipal engineering lighting devices are turned off, according to the light intensity and infrared images collected by the area information collector, the single lamp controller is used to briefly turn on individual municipal engineering lighting devices.
[0012] Further, the brightness regulator adjusts the brightness of the municipal engineering lighting device according to the light intensity information collected by the light intensity collector.
[0013] The control method of the automatic control device for the urban lighting project of the present invention is characterized in that it includes the following steps:
[0014] 1) The total control platform obtains various information of the residential self-use lighting device, the commercial lighting device, the municipal engineering lighting device, and the area information collector collected by the area node controller;
[0015] 2) For the residential self-use lighting device and the commercial lighting device; the area node controller monitors the current, voltage, power consumption, and power of the residential self-use lighting device and the commercial lighting device in the area;
[0016] 3) For municipal engineering lighting equipment, the master control platform controls the opening and closing of municipal engineering lighting equipment in the preset time period;
[0017] 4) During the time period when the municipal engineering lighting equipment is turned off, the opening and closing of the municipal engineering lighting equipment is controlled according to the information collected by the regional information collector; during the time period when the municipal engineering lighting equipment is turned on, the brightness of the municipal engineering lighting equipment is adjusted according to the information collected by the regional information collector.
[0018] The beneficial effects of the present invention are:
[0019] The lighting engineering remote control technology of the present invention adopts a control cloud platform. With the authorization of the user, the remote control and real-time operation status of the controller system can be viewed at any time according to the needs of the user through a computer or smart phone at the company or any place in the world with Internet or mobile network. The Internet or mobile network is used as a communication channel, and the customer's home lighting, street lighting, city lighting light show pattern updates, etc. can be managed at the same time, saving a large number of on-site service engineering and technical personnel, saving service time, and saving service costs. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The present invention will be further described below in conjunction with the accompanying drawings and embodiments.
[0021] Figure 1 It is a structural schematic diagram of the present invention. DETAILED DESCRIPTION
[0022] The technical solution of the present invention will be clearly and completely described below through specific implementation methods.
[0023] refer to Figure 1 , which is an automatic control device for urban lighting projects of the present invention, including a master control platform 1, a single lamp controller 2, a regional node controller 3, residential self-use lighting equipment 4, commercial lighting equipment 5 and municipal engineering lighting equipment 6, a regional information collector and a brightness adjuster.
[0024] Each municipal engineering lighting equipment is connected to a single lamp controller. Residents' self-use lighting equipment, commercial lighting equipment and municipal engineering lighting equipment are divided into several lighting zones according to the region. Residents' self-use lighting equipment and commercial lighting equipment in each lighting zone are controlled by the regional node controller; the single lamp controllers of municipal engineering lighting equipment in each lighting zone communicate with the regional node controller and are controlled by the regional node controller;
[0025] A regional information collector is provided in each lighting area; the regional information collector is connected to the regional node controller through a communication module; the brightness adjuster includes a regional node adjuster and a single lamp adjuster; the single lamp adjuster is installed on the municipal engineering lighting equipment; the regional node adjuster is installed on the regional node controller; the regional information collector and the brightness adjuster assist the regional node controller in adjusting the municipal engineering lighting equipment; the master control platform is connected to the regional node controller through a communication module; the master control platform is connected to the mobile terminal 4; and communicates with the mobile terminal 4.
[0026] The present invention sets up a mobile terminal, uses the mobile terminal to communicate with the master control platform, performs remote control and checks the real-time operating status of the controller system, and uses the Internet or mobile network as a communication channel, so as to simultaneously manage the customer's home lighting, street lighting, and city lighting light show pattern updates.
[0027] The regional information collector includes a light intensity collector and an infrared image collector; the light intensity collector and the infrared image collector are installed on the lighting equipment, the light intensity collector is used to collect the external light intensity; the infrared image collector is used to collect image information; when the light intensity collected by the light intensity collector is less than the preset value, the regional node controller controls the single lamp controller to turn on the municipal engineering lighting equipment; the infrared image collector compares the real-time collected image information with the reference image stored in the regional node controller, and when it is detected that the image is constantly changing and the light intensity is less than the preset value, the regional node controller controls the single lamp controller to turn on the municipal engineering lighting equipment.
[0028] The single lamp controller of the present invention is provided with a fault detection unit, which is used to detect whether the lighting equipment can operate normally, and upload the detected data to the regional node controller, and then upload it to the master control platform by the regional node controller.
[0029] The residential lighting equipment and commercial lighting equipment of the present invention are connected to the power detection and protection equipment; the power detection and protection equipment is connected to the regional node controller.
[0030] A time node controller is provided in the master control platform of the present invention, and the opening and closing of residents' self-use lighting equipment, commercial lighting equipment and municipal engineering lighting equipment are controlled according to the time node controller within a specific time period.
[0031] The master control platform of the present invention controls the regional node controller to turn on or off the municipal engineering lighting equipment in the area within a certain time period according to the time node controller. When the municipal engineering lighting equipment is turned off, a single municipal engineering lighting equipment is turned on for a short time through the single lamp controller according to the light intensity and infrared image collected by the regional information collector.
[0032] The brightness regulator of the present invention adjusts the brightness of the lighting equipment for municipal engineering according to the light intensity information collected by the light intensity collector.
[0033] Embodiment 2
[0034] The control method of the automatic control device for urban lighting engineering of the present invention is characterized in that it includes the following steps:
[0035] 1) The master control platform obtains various information of the residential self-use lighting equipment, commercial lighting equipment, lighting equipment for municipal engineering, and area information collector collected by the area node controller;
[0036] 2) For the residential self-use lighting equipment and commercial lighting equipment; the area node controller monitors the current, voltage, power consumption, and power of the residential self-use lighting equipment and commercial lighting equipment in the area;
[0037] 3) For the lighting equipment for municipal engineering, within the preset time period of the master control platform, control the opening and closing of the lighting equipment for municipal engineering;
[0038] 4) During the time period when the opening and closing of the lighting equipment for municipal engineering is closed, control the opening and closing of the lighting equipment for municipal engineering according to the information collected by the area information collector; during the time period when the opening and closing of the lighting equipment for municipal engineering is open, adjust the brightness of the lighting equipment for municipal engineering according to the information collected by the area information collector.
[0039] The above is only a preferred embodiment of the present invention and is not used to limit the present invention. Those skilled in the art can make various modifications or equivalent replacements within the essence and protection scope of the present invention, and such modifications or equivalent replacements should also be regarded as falling within the protection scope of the technical solution of the present invention.
Claims
1. An automatic control device for urban lighting projects, characterized in that: It includes a total control platform, single - lamp controllers, area node controllers, residential self - use lighting devices, commercial lighting devices, municipal engineering lighting devices, area information collectors, and brightness regulators; Each municipal engineering lighting device is connected to a single - lamp controller. The residential self - use lighting devices, commercial lighting devices, and municipal engineering lighting devices are divided into several lighting areas according to regions. The residential self - use lighting devices and commercial lighting devices in each lighting area are controlled by the area node controller; the single - lamp controllers of the municipal engineering lighting devices in each lighting area communicate with the area node controller and are controlled by the area node controller; An area information collector is set in each lighting area; the area information collector is connected to the area node controller through a communication module; the brightness regulator includes an area node regulator and a single - lamp regulator; the single - lamp regulator is installed on the municipal engineering lighting device; the area node regulator is installed on the area node controller; the area information collector and the brightness regulator assist the area node controller in adjusting the municipal engineering lighting device; the total control platform is connected to the area node controller through a communication module; The total control platform is connected to a mobile terminal; and communicates with the mobile terminal.
2. The automatic control device for urban lighting project according to claim 1, characterized in that: The area information collector includes a light intensity collector and an infrared image collector; the light intensity collector and the infrared image collector are installed on the lighting device. The light intensity collector is used to collect the external light intensity; the infrared image collector is used to collect image information; when the light intensity collected by the light intensity collector is less than a preset value, the area node controller controls the single - lamp controller to turn on the municipal engineering lighting device; the infrared image collector compares the real - time collected image information with the reference image stored in the area node controller. When it detects that the image is constantly changing and at the same time the light intensity is less than the preset value, the area node controller controls the single - lamp controller to turn on the municipal engineering lighting device.
3. The automatic control device for urban lighting project according to claim 1, characterized in that: A fault detection unit is set on the single - lamp controller. The fault detection unit is used to detect whether the lighting device can operate normally and upload the detected data to the area node controller, and then the area node controller uploads it to the total control platform.
4. An automatic control device for urban lighting projects according to claim 1, characterized in that: The residential self - use lighting devices and commercial lighting devices are connected to an electricity consumption detection and protection device; the electricity consumption detection and protection device is connected to the area node controller.
5. An automatic control device for urban lighting projects according to claim 1, characterized in that: A time - node controller is set in the total control platform, and it controls the opening and closing of the residential self - use lighting devices, commercial lighting devices, and municipal engineering lighting devices within a specific time period according to the time - node controller.
6. The automatic control device for urban lighting project according to claim 5, wherein: The total control platform controls the area node controller to turn on or off the municipal engineering lighting devices in a certain area within a certain time period according to the time - node controller. When the municipal engineering lighting devices are turned off, according to the light intensity and infrared images collected by the area information collector, the single - lamp controller is used to briefly turn on a single municipal engineering lighting device.
7. An automatic control device for an urban lighting project according to claim 1, characterized in that: The brightness regulator adjusts the brightness of the municipal engineering lighting device according to the light intensity information collected by the light intensity collector.
8. The control method of the automatic control device for urban lighting project according to claim 1, characterized in that: It includes the following steps: 1) The master control platform obtains various information of the residential self-use lighting equipment, commercial lighting equipment, municipal engineering lighting equipment, and area information collectors collected by the area node controller; 2) For the residential self-use lighting equipment and commercial lighting equipment, the area node controller monitors the current, voltage, power consumption, and power of the residential self-use lighting equipment and commercial lighting equipment in the area; 3) For the municipal engineering lighting equipment, within the preset time period by the master control platform, control the opening and closing of the municipal engineering lighting equipment; 4) During the time period when the opening and closing of the municipal engineering lighting equipment is closed, control the opening and closing of the municipal engineering lighting equipment according to the information collected by the area information collector; during the time period when the opening and closing of the municipal engineering lighting equipment is open, adjust the brightness of the municipal engineering lighting equipment according to the information collected by the area information collector.
Citation Information
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Intelligent lighting centralized control system
CN111263494A
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CN202587496U