Intelligent city street lamp control system and street lamp control box and street lamp thereof
By combining the power and network loop management module of the street light control box with the battery module and edge computing processing, the power and network supply problems of network devices in smart cities are solved, and a smart city street light control system with stable power and network connection is realized.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 江若滐
- Filing Date
- 2025-10-21
- Publication Date
- 2026-04-21
AI Technical Summary
How to provide network and power to network devices in various public areas of a smart city to meet the construction needs of a smart city.
A street light control box is provided, which combines power circuits and network circuits, and includes a battery module, a power management module, an edge computing processing module and a network management module to realize the management and transmission of power and network, and support edge computing processing.
It provides stable power and network connectivity for network devices, supports edge computing, and meets the network device installation needs of smart cities.
Smart Images

Figure CN121908427A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of installation technology for various network devices, and more specifically, to an intelligent city street light control system capable of installing various network devices to meet the construction needs of smart cities, as well as its street light control box and street light. Background Technology
[0002] With the continuous development of network technology and the increasing application level of urban informatization, the construction of smart cities has emerged. The construction of smart cities inevitably relies on the infrastructure of network devices and power supply. That is, network and power must be provided to network devices in all public areas of the smart city to ensure their ubiquitous deployment. These network devices include, for example, network surveillance cameras used for urban security management or traffic monitoring, or network environmental detectors used to monitor urban environmental quality.
[0003] In view of this, how to provide network and power to network devices in various public areas of the city to meet the construction needs of smart cities is the technical problem to be solved by this invention. Summary of the Invention
[0004] In view of the shortcomings of the prior art, this application provides a street light control box located at an edge end, and capable of being equipped with a power circuit and a network circuit to provide power and a network respectively through the power circuit and the network circuit. The street light control box can also be equipped with a management room and a network device, wherein the management room is located at a management end and can provide management room network information, and the network device is located at the edge end and can provide network device information. The management end is located at a remote location, and the edge end is located at a near end. The street light control box includes: a control box body; a battery module capable of storing power at the edge end; and a power management module connected to the power circuit and the battery module. The power management module can provide power management and execute a circuit power supply mode and a battery power supply mode. In the circuit power supply mode, the power management module enables the power circuit to provide power to the network device; in the battery power supply mode... The configuration includes: a power management module that enables the battery module to provide power to the network device via the power circuit; an edge computing processing module that provides edge computing processing on the network device messages at the edge to generate an edge computing processing network message; and a network management module that connects the network circuit and the edge computing processing module. The network management module provides network management and executes a network message transmission mode and an edge computing processing mode. In the network message transmission mode, the network management module enables the network circuit to provide the network to the management room and the network device to transmit the network device messages to the management room, or transmit the management room network messages to the network device. In the edge computing processing mode, the network management module enables the network circuit to provide the network to the edge computing processing module and the network device to transmit the network device messages to the edge computing processing module and the edge computing processing network message to the network device.
[0005] Preferably, in the street light control box of this application, the battery module is disposed in the network device.
[0006] Preferably, the street light control box of this application further includes a carbon credit management module, which is connected to the power circuit and obtains information on the power circuit's provision of power to the network device, thereby providing carbon credit management.
[0007] Preferably, the street light control box of this application further includes a carbon trading module, which is connected to the carbon management module to obtain the carbon management status of the carbon management module and thus provide carbon trading.
[0008] Preferably, the street light control box of this application further includes a power trading module, which provides power trading to the network device or the power circuit. Specifically, when the power trading module trades power to the network device, the power management module enables the power circuit to provide the traded power to the network device; and when the power trading module trades power to the power circuit, the power management module enables the battery module to provide the traded power to the power circuit.
[0009] Preferably, the street light control box of this application further includes a network transaction module, which provides a network transaction service to the network device or the network loop. Specifically, when the network transaction module transactions the network with the network device, the network management module enables the network loop to provide the network to the network device; and when the network transaction module transactions the network with the network loop, the network management module enables the network loop to provide the network to the network loop.
[0010] Preferably, the street light control box of this application further includes a box body space rental module, and the control box body includes a box body rental space. The box body space rental module provides rental of the box body rental space, enabling the network device to operate in the box body rental space.
[0011] Preferably, the street light control box of this application further includes a box body space management module, which provides an environment for managing the leased space of the box body, so that the environment of the leased space of the box body meets the requirements for the operation of the network equipment.
[0012] Preferably, the street light control box of this application further includes a box body space temperature regulation module, wherein the box body space management module is connected to the box body space temperature regulation module, and the box body space temperature regulation module regulates the temperature of the environment of the box body rental space.
[0013] Preferably, the street light control box of this application further includes a box body space humidity adjustment module. The box body space management module is connected to the box body space humidity adjustment module, and the box body space humidity adjustment module adjusts the humidity of the environment of the box body rental space.
[0014] Preferably, the street light control box of this application further includes a box body beam power transmission module, wherein the power management module is connected to the box body beam power transmission module. In the circuit power supply mode, the power management module can transmit power through the beam via the box body beam power transmission module, thereby enabling the power circuit to provide power to the network device; and in the battery power supply mode, the power management module can transmit power through the box body beam power transmission module, thereby enabling the battery module to provide power to the network device via the power circuit.
[0015] Preferably, the street light control box of this application further includes a box body network device positioning module, wherein the box body beam power transmission module is connected to the box body network device positioning module, and the box body beam power transmission module can locate the network device through the box body network device positioning module, and can provide power to the located network device through the beam.
[0016] Preferably, in the street light control box of this application, the battery module, the power management module, the edge computing processing module, and the network management module are disposed inside or outside the control box body.
[0017] Additionally, this application provides a street light that is paired with the street light control box as described above, wherein the street light is located at the edge end, the street light includes a street light body and a street light space rental module, the street light body includes a street light rental space, and the street light space rental module provides rental of the street light rental space, enabling the network device to operate in the street light rental space.
[0018] Preferably, in the street light of this application, the battery module is disposed on the street light body or the control box body, and the street light space rental module is disposed on the street light body or the control box body.
[0019] Preferably, the street light of this application also includes a street light space management module, which provides an environment for managing the street light rental space, so that the environment of the street light rental space meets the requirements for the network device to perform operations.
[0020] Preferably, the street light of this application further includes a street light space temperature regulation module, wherein the street light space management module is connected to the street light space temperature regulation module, and the street light space temperature regulation module regulates the ambient temperature of the street light rental space.
[0021] Preferably, the street light of this application further includes a street light space humidity adjustment module, the street light space management module is connected to the street light space humidity adjustment module, and the humidity of the environment of the street light rental space is adjusted through the street light space humidity adjustment module.
[0022] Preferably, the street light of this application further includes a street light beam power transmission module, wherein the power management module is connected to the street light beam power transmission module. In the circuit power supply mode, the power management module can transmit power through the street light beam power transmission module via the beam, thereby enabling the power circuit to provide power to the network device; and in the battery power supply mode, the power management module can transmit power through the street light beam power transmission module, thereby enabling the battery module to provide power to the network device via the power circuit.
[0023] Preferably, the street light of this application further includes a street light network device positioning module, wherein the street light beam power transmission module is connected to the street light network device positioning module, and the box body beam power transmission module can locate the network device through the street light network device positioning module, and can provide power to the located network device through the beam.
[0024] Furthermore, this application provides an intelligent urban street light control system, comprising: a plurality of street light control boxes as described above, wherein the street light control boxes are capable of providing power to each other via a light beam.
[0025] Compared to prior art, this application provides an intelligent city street light control system, its street light control box, and street lights. The street light control box can install various network devices and provide network management, power management, and edge computing for these devices to meet the construction needs of smart cities. The provided street light control box can be equipped with a battery module to provide power to various network devices and power circuits, thus meeting the power consumption requirements of smart cities. Attached Figure Description
[0026] The features and other advantages of this application will be more clearly understood in conjunction with the following description of embodiments.
[0027] Figure 1 The diagram shown is a block diagram illustrating the architecture of an embodiment of the street light control box and street light of this application.
[0028] Figure 2 The diagram shown is a block diagram illustrating the architecture of an embodiment of the street light control box and street light of this application.
[0029] Figure 3The diagram shown is an architectural block diagram of an embodiment of the intelligent urban street light control system of this application.
[0030] Figure 4 The diagram shown is an architectural block diagram of an embodiment of the street light control box of this application.
[0031] Figure 5 The diagram shown is a perspective view of an embodiment of the streetlight of this application.
[0032] Figure 6 The diagram shown is a perspective view of an embodiment of the streetlight of this application.
[0033] Component designation explanation
[0034] 1. Street light control box
[0035] 11. Control box body
[0036] 111 container rental space
[0037] 12 Battery Modules
[0038] 13 Power Management Module
[0039] 14 Edge computing processing module
[0040] 15 Network Management Module
[0041] 161 Power Trading Module
[0042] 162 Online Transaction Module
[0043] 163-unit container space rental module
[0044] 164 Container Body Space Management Module
[0045] 1641 Box Body Space Temperature Regulation Module
[0046] 1642 Box Body Space Humidity Control Module
[0047] 165-box body beam power transmission module
[0048] 1651 Box-based network device positioning module
[0049] 166 Carbon Credit Management Module
[0050] 1661 Carbon Trading Module
[0051] 2. Management Computer Room
[0052] 3. Network equipment
[0053] 4 streetlights
[0054] 41 Streetlight body
[0055] 411 Streetlight Rental Space
[0056] 42 Streetlight Space Rental Module
[0057] 43 Streetlight Space Management Module
[0058] 431 Streetlight Space Temperature Regulation Module
[0059] 432 Streetlight Space Humidity Control Module
[0060] 44 Streetlight Beam Power Transmission Module
[0061] 441 Streetlight Network Equipment Positioning Module
[0062] 5. Intelligent Urban Street Light Control System
[0063] L1 power circuit
[0064] L2 network loop
[0065] S1 edge end
[0066] S2 Management Terminal Detailed Implementation
[0067] The following description, accompanied by accompanying drawings, illustrates the technical content of this application through specific embodiments. Those skilled in the art can easily understand the other advantages and effects of this application from the content disclosed in this specification. This application can be implemented or applied through other different specific embodiments. Various details in this specification can be modified and changed based on different viewpoints and applications without departing from the spirit of this application. In particular, the proportional relationships and relative positions of the various components in the drawings are for illustrative purposes only and do not represent the actual implementation of this application.
[0068] This application provides an intelligent city street light control system, its street light control box, and street lights to meet the installation needs of various network devices and related equipment in smart cities. Generally, street light control boxes are used for street light circuit power distribution, switching, and as interfaces with the public power grid. Currently, on average, there is at least one street light control box for every 30 street lights in a city. Therefore, street light control boxes and street lights are densely distributed throughout the city, serving as energy centers for power sources. This application utilizes the street light control boxes and street lights in the city to provide network and power to network devices, thereby constructing an intelligent city street light control system to meet the construction needs of smart cities.
[0069] For a description of the embodiments disclosed in this application, please refer to [link / reference needed]. Figures 1 to 6 .
[0070] At Figures 1 to 3 In the illustrated embodiment, a street light control box 1 and a street light 4 are disclosed located at an edge end S1. The street light control box 1 can be used to control the street light 4. In the above embodiment, the street light control box 1 can be equipped with a power circuit L1 and a network circuit L2 to provide or receive power and a network through the power circuit L1 and the network circuit L2 respectively.
[0071] In the above embodiments, the power circuit L1 is, for example, a street light circuit connected to the public power grid at the edge end S1, and the network circuit L2 is, for example, a network circuit connected to the public network of a smart city at the edge end S1.
[0072] The street light control box 1 can also be equipped with a management room 2 and a network device 3. In the above embodiment, the management room 2 is located at a management end S2 to provide management room network information, and the network device 3 is located at the edge end S1 to provide network device information. In the above embodiment, the management end S2 is located remotely, so that the management room 2 can be set at one end of an operator (e.g., a power operator, network operator, etc.). The edge end S1 is located near the edge, and the network device 3 is located at the edge end S1 and can be installed in the street light control box 1 or the street light 4.
[0073] It should be noted that the network device 3 can be a network device that is connected to the street light control box 1 or the street light 4 via the power circuit L1 and the network circuit L2 through an unmanned vehicle or via a wired or wireless connection to seek services by providing network device information.
[0074] In the above embodiments, the street light control box 1 includes: a control box body 11, a battery module 12, a power management module 13, an edge computing processing module 14, and a network management module 15.
[0075] The control box body 11 can be the enclosure of a street light control box.
[0076] The battery module 12 is used to store the power at the edge end S1. In this application, the battery module 12 is capable of off-peak energy storage and green energy storage.
[0077] It should be noted that the battery module 12 is composed of a battery array system. Furthermore, the battery module 12 can employ, for example, a fuel cell such as a hydrogen fuel cell or a non-fuel cell such as a lithium iron phosphate battery. Therefore, the battery module 12 can function as a regional uninterruptible power supply (UPS) to power the street light control box 1 or the street light 4 after a power outage in the public grid. Furthermore, the battery module 12 can also supply power to the public grid via the power circuit L1. Thus, the street light control box 1 can integrate the public grid to become a regional power center for the smart city, feeding back and balancing the power supply and demand of the entire smart city.
[0078] The power management module 13 connects the power circuit L1 and the battery module 12, and is able to provide power management to execute a single-circuit power supply mode and a single-battery power supply mode.
[0079] Specifically, when the power management module 13 executes the loop power supply mode, it directs the power loop L1 to provide power to the network device 3, allowing the public power grid to supply power to the network device 3 through the power loop L1. When the power management module 13 executes the battery power supply mode, it can allow the battery module 12 to provide power to the network device 3 via the power loop L1 without going through the public power grid. Furthermore, even when the public power grid loses power, the battery module 12 can still supply power to the public power grid via the power loop L1.
[0080] In addition, the power management module 13 can also perform power circuit management and battery energy storage management. It should be noted that the power management module 13 includes a power meter, a distribution panel (PDP), a power monitoring system, and a lighting controller gateway, enabling the power management module 13 to perform power circuit management to monitor and control the power supply of power circuit L1, thereby managing the power supply of power circuit L1. When the power management module 13 performs the battery energy storage management, it can manage the energy storage of the battery module 12, enabling it to store energy for the battery module 12 during off-peak hours and output power during peak hours. This allows the battery module 12 to function as an uninterruptible power supply (UPS) to fill power gaps and effectively mitigate power fluctuations in the public power grid. Accordingly, the power management module 13 can optionally include an energy storage component, a battery management system, an energy storage battery cabinet, a fuel cell, a power conversion and regulation system (PCS), and an energy management system (EMS). The power management module 13 can provide an automatic frequency control system (AFC) for energy storage. Thus, if the power load is too high, the energy supply is insufficient, or the power generation equipment malfunctions, the AFC frequency control system can be used to schedule power supply until the power supply equipment can operate normally. In addition, the power management module 13 can also optionally include a solar panel and can use a hybrid inverter system to convert AC to DC power, so that the battery module 12 can perform energy storage or power supply functions.
[0081] Optionally, the street light control box 1 may further include a power trading module 161, which provides power trading to the network device 3 or the power circuit L1.
[0082] It should be noted that when the power trading module 161 executes a power transaction to the network device 3, the power management module 13 can instruct the power circuit L1 to provide the traded power to the network device 3. When the power trading module 161 executes a power transaction to the power circuit L1, the power management module 13 can instruct the battery module 12 to provide the traded power to the power circuit L1, and then provide the traded power to the management room 2 via the power circuit L1. The power trading module 161 can monitor the status of the network device 3 and the battery module 12 through the power management module 13, and conduct subsequent transaction activities including pricing, leasing, bidding, and auctions through the telecommunications network (including software-defined networking systems, etc.) interface service operator or power operator trading platform.
[0083] Optionally, the street light control box 1 may further include a carbon credit management module 166 and a carbon credit trading module 1661. The carbon credit management module 166 is connected to the power circuit L1 and obtains information on the status of the power circuit L1 providing power to the network device 3, thereby providing carbon credit management. The carbon credit trading module 1661 is connected to the carbon credit management module 166 and obtains information on the carbon credit management status of the carbon credit management module 166, thereby providing carbon credit trading.
[0084] It should be noted that the power management module 13 can set up a monitoring system for the power consumption of the network device 3 to obtain the power consumption status of the network device 3. Thus, the carbon credit management module 166 can obtain the power consumption status of the network device 3 through the power management module 13 and provide carbon credit management. Furthermore, the power trading module 161 and the carbon credit trading module 1661 can connect to the trading platforms of service operators or power operators through telecommunications networks (including software-defined networking systems, etc.) to conduct subsequent transactions related to electricity and carbon credits, including pricing, leasing, bidding, and auctions. Therefore, the street light control box 1 can integrate the trading platforms of the power exchange and the carbon credit exchange to conduct the electricity and carbon credit transactions required by future industries.
[0085] The edge computing processing module 14 is used to provide edge computing processing on the network device message at the edge end S1 to generate an edge computing processed network message.
[0086] It should be noted that the edge computing processing module 14 may optionally include a content cache module, an edge computing system and platform (MEC), a radio intelligent controller (RIC), a user data function platform (UPF), a central / distribution unit (C / DU), a pair of grandmaster clocks, and a precision timing switch (PTP switch), enabling the edge computing processing module 14 to provide high-bandwidth and low-latency edge computing processing for network device messages of the network device 3 (including network devices such as mobile base stations and unmanned vehicles) to a mobile edge computing center or a multi-access edge computing center.
[0087] The network management module 15 connects the network loop L2 and the edge computing processing module 14, and is able to provide network management to execute a network message transmission mode and an edge computing processing mode.
[0088] Specifically, when the network management module 15 executes the network message transmission mode, it enables the network loop L2 to provide the network for the management room 2 and the network device 3, so as to transmit the network device messages to the management room 2 for non-edge computing, and then transmit the non-edge-computed network messages of the management room to the network device 3. When the network management module 15 executes edge computing processing, it enables the network loop L2 to provide the network for the edge computing processing module 14 and the network device 3, so as to transmit the network device messages to the edge computing processing module 14 for edge computing, and then transmit the edge computing processing network messages generated by the edge computing processing module 14 to the network device 3.
[0089] Optionally, the street light control box 1 further includes a network transaction module 162. The network transaction module 162 provides a network transaction to the network device 3 or the network loop L2. It should be noted that when the network transaction module 162 transactions the network to the network device 3, the network management module 15 can instruct the network loop L2 to provide the network to the network device 3. When the network transaction module 162 transactions the network to the network loop L2, the network management module 15 can provide the network to the network loop L2.
[0090] It should be noted that the network management module 15 can set up a monitoring system for the network traffic usage of the network device 3, enabling the network transaction module 162 to obtain the network traffic usage of the network device 3 through the network management module 15, and to conduct subsequent transactions related to the network, including billing, leasing, and maintenance, through the telecommunications network (including software-defined network systems, etc.) interface service operator transaction platform. The network management module 15 can perform network loop management and network traffic (inbound and outbound traffic) management. The network loop management mainly provides management for optical cross-connection processing to handle the external and internal network connections required for fiber optic network transmission. Therefore, for network loop management, the network management module 15 can optionally include an optical distribution frame (OMDF), an optical protection device (OLP), an optical waveguide multitasking device (WDM), and an optical fiber monitoring system (RFTS). In addition, for the network traffic management, the network management module 15 can select to include a software-defined wide area network, a radio network, and a security management system, and the security management system includes a firewall, a deep packet inspection (DPI), an anti-hacking system (IPS), and other security management mechanisms.
[0091] Optionally, at Figure 4 In the illustrated embodiment, the street light control box 1 further includes a box body space leasing module 163 and a box body space management module 164. Correspondingly, the control box body 11 includes a box body leasing space 111. The box body space leasing module 163 is used to lease the box body leasing space 111, enabling the network device 3 to operate within the box body leasing space 111. The box body space management module 164 provides an environment for managing the box body leasing space 111, ensuring that the environment of the box body leasing space 111 meets the operational requirements of the network device 3.
[0092] It should be noted that the cabinet space rental module 163 can also provide future transaction processing based on the operating status of the network device 3 in the cabinet rental space 111 (including the network device 3's usage time, power consumption / charging status, battery replacement, information exchange volume / traffic, microprocessor and hard disk usage, etc.).
[0093] It should be noted that the container space management module 164 can be uniformly managed through the central environmental management platform to monitor the external or internal environment of the container rental space 111, including micro-meteorological information such as air volume, rainfall, temperature and humidity, air conditioning or cooling system, security, fire protection, and environmental conditions. It can also perform operations such as opening and closing the parking bay, starting and ending charging, automatic navigation and precise docking, RTK base station and RTK computing server, image storage and recognition, so that the environment of the container rental space 111 meets the operational requirements of the network device 3.
[0094] Optionally, at Figures 1 to 2 In the illustrated embodiment, the street light control box 1 further includes a box body space temperature regulation module 1641 and a box body space humidity regulation module 1642. It should be noted that the box body space humidity regulation module 1642 can be selected to include a liquid-cooled cooling device with advantages such as low noise and low energy consumption.
[0095] It should be noted that the container body space management module 164 is connected to the container body space temperature regulation module 1641 and the container body space humidity regulation module 1642 respectively. The container body space temperature regulation module 1641 can regulate the temperature of the container body rental space 111, and the container body space humidity regulation module 1642 can regulate the humidity of the container body rental space 111.
[0096] It should be noted that the rental space 111 of the box body can provide power and network access to the network device 3, enabling the network device 3 to perform operations such as charging, battery replacement, information exchange, and data storage within the rental space 111. Additionally, the street light control box 1 can optionally include a charging device (e.g., solar panel, charging plate, or laser emitter), a protection device (e.g., opening / closing device, unmanned vehicle landing platform, drying device, or vehicle balancing device), and a network device body (e.g., camera, RTK mobile station, adjustable charging device, battery, or photovoltaic cell) within the rental space 111.
[0097] Optionally, the street light control box 1 further includes a box body beam power transmission module 165. The power management module 13 is connected to the box body beam power transmission module 165. When the power management module 13 operates in the loop power supply mode, it can transmit power through the box body beam power transmission module 165 via the beam, thus providing power to the network device 3 via the power loop L1. When the power management module 13 operates in the battery power supply mode, it can transmit power through the box body beam power transmission module 165, thus providing power to the network device 3 via the power loop L1 via the battery module 12.
[0098] Accordingly, the street light control box 1 also includes a box body network device positioning module 1651, wherein the box body beam power transmission module 165 is connected to the box body network device positioning module 1651, the box body beam power transmission module 165 can locate the network device 3 through the box body network device positioning module 1651, and can provide power to the located network device 3 through the beam.
[0099] It should be noted that the housing beam power transmission module 165 can optionally include a photoelectric converter, a laser beam emitter, and a laser beam receiver, enabling it to provide power to the network device 3 via a laser beam. Thus, when the power circuit L1 malfunctions, the housing beam power transmission module 165 can provide backup power to the network device 3. Furthermore, the housing beam power transmission module 165 can provide remote power to the network device 3, for example, an unmanned vehicle, via a laser beam.
[0100] It should be noted that the beam power transmission module 165 of the enclosure body can transmit power to the network device 3 via wired or wireless means, either through a wired power over fiber or a wireless power over freespace method.
[0101] It should be noted that the beam power transmission module 165 of the enclosure body can also provide a beam power transmission safety mechanism. When a foreign object intrudes into the network device 3 by wirelessly transmitting a wirelessly charged beam power to the enclosure body beam power transmission module 165, the beam power transmission safety mechanism can shut off the beam power transmission of the enclosure body beam power transmission module 165 to avoid the beam power transmission affecting the intruding foreign object.
[0102] It should be noted that the container body network device positioning module 1651 can identify, locate, and lock the remote network device 3, enabling the container body power beam transmission module 165 to provide remote power supply services to the remote network device 3. Thus, the container body power beam transmission module 165 can provide remote charging services to the remote, unmanned network device 3. Furthermore, the container body network device positioning module 1651 can identify, locate, and lock remote foreign objects. If the remote foreign object is hostile, the container body power beam transmission module 165 can also destroy it using a beam.
[0103] It should be noted that the battery module 12, the power management module 13, the edge computing processing module 14, the network management module 15, the power trading module 161, the network trading module 162, the container body space leasing module 163, the container body space management module 164, the container body space temperature regulation module 1641, the container body space humidity regulation module 1642, the container body beam power transmission module 165, the container body network device positioning module 1651, the carbon credit management module 166, and the carbon credit trading module 1661 can be selectively located inside or outside the control box body 11, but are not limited thereto. For example, the battery module 12 can also be selectively located within the network device 3.
[0104] At Figures 1 to 3 In the illustrated embodiment, the street light 4 includes a street light body 41, a street light space rental module 42, and a street light space management module 43. Accordingly, in... Figure 5 In the illustrated embodiment, the street lamp body 41 includes a street lamp rental space 411. The street lamp space rental module 42 provides the option to rent the street lamp rental space 411, enabling the network device 3 to operate within the street lamp rental space 411. The street lamp space management module 43 provides an environment for managing the street lamp rental space 411, ensuring that the environment of the street lamp rental space 411 meets the operational requirements of the network device 3.
[0105] Optionally, the street light 4 may also include a street light space temperature regulation module 431 and a street light space humidity regulation module 432. Preferably, the street light space temperature regulation module 431 may be selected to include a liquid-cooled cooling device with advantages of low noise and low energy consumption.
[0106] It should be noted that the street light space management module 43 is connected to the street light space temperature regulation module 431 and the street light space humidity regulation module 432 respectively. The street light space temperature regulation module 431 can regulate the temperature of the street light rental space 411, and the street light space humidity regulation module 432 can regulate the humidity of the street light rental space 411.
[0107] It should be noted that the street light rental space 411 can provide power and network access to the network device 3, enabling the network device 3 to perform operations such as charging, battery replacement, information exchange, and data storage within the street light rental space 411. Optionally, the street light 4 can be equipped with charging devices (e.g., solar panels, charging panels, or laser emitters), protection devices (e.g., opening and closing devices, unmanned vehicle landing platforms, drying devices, or vehicle balancing devices), or network equipment (e.g., cameras, RTK mobile stations, adjustable charging devices, batteries, or photovoltaic cells) within the street light rental space 411.
[0108] Optionally, the street light 4 may also include a street light beam power transmission module 44. The power management module 13 is connected to the street light beam power transmission module 44. When the power management module 13 operates in the loop power supply mode, it can transmit power through the street light beam power transmission module 44 via the beam, thus enabling the power loop L1 to provide power to the network device 3. When the power management module 13 operates in the battery power supply mode, it can transmit power through the street light beam power transmission module 44, thus enabling the battery module 12 to provide power to the network device 3 via the power loop L1.
[0109] Accordingly, at Figure 6 In the embodiment shown, the street light 4 further includes a street light network device positioning module 441, wherein the street light beam power transmission module 44 is connected to the street light network device positioning module 441, and the street light beam power transmission module 44 can locate the network device 3 through the street light network device positioning module 441, and can provide power to the located network device 3 through the beam.
[0110] It should be noted that the streetlight beam power transmission module 44 may optionally include a photoelectric converter, a laser beam emitter, and a laser beam receiver, enabling it to provide power to the network device 3 via a laser beam. Thus, when the power circuit L1 malfunctions, the streetlight beam power transmission module 44 can provide backup power to the network device 3. Furthermore, the streetlight beam power transmission module 44 can remotely power the network device 3 (e.g., an unmanned vehicle) via a laser beam.
[0111] It should be noted that the battery module 12, the street light space rental module 42, the street light space management module 43, the street light space temperature regulation module 431, the street light space humidity regulation module 432, the street light beam power transmission module 44, and the street light network device positioning module 441 can be selectively installed on the street light body 41 or the control box body 11.
[0112] At Figure 3 The illustrated embodiment discloses an intelligent urban street light control system 5, which includes a plurality of street light control boxes 1, wherein the street light control boxes 1 are capable of providing power to each other through the beam power transmission module 165 of the box body via beam transmission.
[0113] It should be noted that, in the embodiments of this application, some of the aforementioned components may be omitted. For example, the street light control box provided in this application includes: a control box body, a battery module, a power management module, an edge computing processing module, and a network management module. The battery module can store power at the edge. The power management module connects the power circuit and the battery module. The power management module can provide power management and execute circuit power supply mode and battery power supply mode. In circuit power supply mode, the power management module can enable the power circuit to provide power to network devices; in battery power supply mode, the power management module can enable the battery module to provide power to network devices via the power circuit. The edge computing processing module can provide edge computing processing on the network device information at the edge to generate edge computing processing network information. The network management module connects the network loop and the edge computing processing module. The network management module can provide network management and execute network message transmission mode and edge computing processing mode. In the network message transmission mode, the network management module enables the network loop to provide network access to the management room and network devices, so as to transmit network device messages to the management room or the management room network messages to the network devices. In the edge computing processing mode, the network management module enables the network loop to provide network access to the edge computing processing module and network devices, so as to transmit network device messages to the edge computing processing module and transmit edge computing network messages to the network devices.
[0114] The street light provided in this application includes a street light body and a street light space rental module. The street light body includes a street light rental space, and the street light space rental module provides rental street light rental space, enabling network equipment to operate within the street light rental space.
[0115] The intelligent urban street light control system provided in this application includes: a plurality of street light control boxes, wherein the street light control boxes are capable of providing power to each other through a beam of light.
[0116] In summary, this application provides an intelligent city street light control system, its street light control box, and street lights. The street light control box can install various network devices in different public areas of the city and provide network management, power management, and edge computing for these devices to meet the construction needs of smart cities. The provided street light control box can be equipped with a battery module, which can act as an uninterruptible power supply (UPS) in the event of a power outage in the public power grid, providing power to various network devices and power circuits in different public areas of the city to meet the power consumption requirements of smart cities.
[0117] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Anyone skilled in the art can modify and alter the above embodiments without departing from the spirit and scope of this application. Therefore, the scope of protection of this application should be as set forth in the claims.
Claims
1. A street light control box, characterized in that, The street light control box is located at an edge end and can be equipped with a power circuit and a network circuit to provide power and a network respectively. The street light control box can also be equipped with a management room and a network device. The management room is located at a management end and can provide management room network information. The network device is located at the edge end and can provide network device information. The management end is located at a remote location, and the edge end is located at a near end. The street light control box includes: One control box body; A battery module capable of storing the power at the edge end; A power management module is provided, connecting the power circuit and the battery module. The power management module is capable of providing power management and executing a circuit power supply mode and a battery power supply mode. In the circuit power supply mode, the power management module enables the power circuit to provide power to the network device; in the battery power supply mode, the power management module enables the battery module to provide power to the network device via the power circuit. An edge computing processing module, which is capable of providing edge computing processing on the network device messages at the edge to generate an edge computing processed network message; and A network management module connects the network loop and the edge computing processing module. The network management module provides network management by executing a network message transmission mode and an edge computing processing mode. In the network message transmission mode, the network management module enables the network loop to provide the network to the management room and the network devices, so as to transmit network device messages to the management room, or the management room network messages to the network devices. In the edge computing processing mode, the network management module enables the network loop to provide the network to the edge computing processing module and the network devices, so as to transmit network device messages to the edge computing processing module, and the edge computing processing network messages to the network devices.
2. The street light control box according to claim 1, characterized in that, The battery module is located in the network device.
3. The street light control box according to claim 1, characterized in that, It also includes a carbon credit management module, which is connected to the power circuit and obtains information on the status of the power circuit providing power to the network device, thereby providing carbon credit management.
4. The street light control box according to claim 3, characterized in that, It also includes a carbon trading module, which is connected to the carbon management module to obtain the carbon management status of the carbon management module and then provide carbon trading.
5. The street light control box according to claim 1, characterized in that, It also includes a power trading module that provides power trading to the network device or the power circuit, wherein, when the power trading module trades the power to the network device, the power management module enables the power circuit to provide the traded power to the network device; and when the power trading module trades the power to the power circuit, the power management module enables the battery module to provide the traded power to the power circuit.
6. The street light control box according to claim 1, characterized in that, It also includes a network transaction module, which provides a transaction service for the network to the network device or the network loop. Specifically, when the network transaction module transactions the network to the network device, the network management module enables the network loop to provide the network to the network device; and when the network transaction module transactions the network to the network loop, the network management module enables the network loop to provide the network to the network loop.
7. The street light control box according to claim 1, characterized in that, It also includes a box body space leasing module, and the control box body includes a box body leasing space. The box body space leasing module provides leasing of the box body leasing space, enabling the network device to operate in the box body leasing space.
8. The street light control box according to claim 7, characterized in that, It also includes a container space management module, which provides an environment for managing the leased space of the container, so that the environment of the leased space of the container meets the requirements for the operation of the network equipment.
9. The street light control box according to claim 8, characterized in that, It also includes a container body space temperature regulation module, wherein the container body space management module is connected to the container body space temperature regulation module, and the container body space temperature regulation module regulates the temperature of the environment of the container body rental space.
10. The street light control box according to claim 8, characterized in that, It also includes a container body space humidity control module, which is connected to the container body space management module and adjusts the humidity of the container body rental space environment through the container body space humidity control module.
11. The street light control box according to claim 1, characterized in that, It also includes a housing-based beam power transmission module, wherein the power management module is connected to the housing-based beam power transmission module. In the circuit power supply mode, the power management module can transmit power through the beam via the housing-based beam power transmission module, thereby enabling the power circuit to provide power to the network device; and in the battery power supply mode, the power management module can transmit power through the housing-based beam power transmission module, thereby enabling the battery module to provide power to the network device via the power circuit.
12. The street light control box according to claim 11, characterized in that, It also includes a container body network device positioning module, wherein the container body beam power transmission module is connected to the container body network device positioning module, and the container body beam power transmission module can locate the network device through the container body network device positioning module, and can provide power to the located network device through the beam.
13. The street light control box according to claim 1, characterized in that, The battery module, the power management module, the edge computing module, and the network management module are located inside or outside the control box body.
14. A street light equipped with a street light control box according to claim 11, characterized in that, The street light is located at the edge end. The street light includes a street light body and a street light space rental module. The street light body includes a street light rental space. The street light space rental module provides rental of the street light rental space, enabling the network device to operate in the street light rental space.
15. The street light according to claim 14, characterized in that, The battery module is installed on the street light body or the control box body, and the street light space rental module is installed on the street light body or the control box body.
16. The street light according to claim 14, characterized in that, It also includes a street light space management module, which provides an environment for managing the street light rental space, so that the environment of the street light rental space meets the requirements for the network equipment to perform operations.
17. The street light according to claim 16, characterized in that, It also includes a street light space temperature regulation module, characterized in that the street light space management module is connected to the street light space temperature regulation module, and the street light space temperature regulation module regulates the ambient temperature of the street light rental space.
18. The street light according to claim 16, characterized in that, It also includes a street light space humidity control module, which is connected to the street light space management module and adjusts the humidity of the street light rental space environment through the street light space humidity control module.
19. The street light according to claim 14, further comprising a street light beam power transmission module, characterized in that, The power management module is connected to the street light beam power transmission module. In the circuit power supply mode, the power management module can transmit power through the street light beam power transmission module to provide power to the network device via the power circuit. In the battery power supply mode, the power management module can transmit power through the street light beam power transmission module to provide power to the network device via the power circuit.
20. The street light according to claim 19, characterized in that, It also includes a street light network device positioning module, wherein the street light beam power transmission module is connected to the street light network device positioning module, and the box body beam power transmission module can locate the network device through the street light network device positioning module, and can provide power to the located network device through the beam.
21. An intelligent urban street light control system, characterized in that, include: The street light control boxes as described in claim 1, wherein the street light control boxes are capable of providing power to each other via a light beam.