Energy storage base of intelligent street lamp or monitoring rod body
By using a modularly designed smart street light energy storage base, combined with intelligent charging and discharging control and heat dissipation modules, the problems of high energy consumption and complex equipment in smart street lights are solved, achieving efficient utilization of power resources and improved safety.
Patent Information
- Application Number
- CN202422946400.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-11-11
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Existing smart streetlights have high energy consumption, low power resource utilization efficiency, complex and easily confused electrical equipment inside the base, posing safety hazards and inconvenient maintenance.
Design an energy storage base including a hollow structure base body, with built-in electrical components and energy storage components. It adopts a modular design, integrates an intelligent charging and discharging controller, has intelligent adjustment function during peak and valley periods, and is equipped with a heat dissipation module and emergency backup power supply.
It has enabled the efficient use of power resources, reduced energy costs, improved equipment safety and ease of maintenance, and ensured continuous power supply to critical loads.
Smart Images

Figure CN223539787U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of bases, and more specifically, to an energy storage base for a smart street light or monitoring pole. Background Technology
[0002] With the continuous development of the country, smart streetlights, as an important component of smart city construction, have received high attention and vigorous promotion from relevant departments. The National Energy Conservation Center has proposed to use "smart streetlight poles" as a starting point to promote energy conservation and consumption reduction in lighting and the construction of the Internet of Things, so as to achieve resource "sharing, intensive and coordinated" development, significantly reduce construction costs and improve operation and maintenance efficiency. At the same time, smart streetlights are equipped with communication micro base stations, monitoring cameras, LED display screens and other equipment, integrating traffic, security, communication and information dissemination functions to achieve the goal of "multi-pole integration". This forms a clustering effect of co-construction, sharing and intensive construction of various pole components, and is an intelligent integrated pole that can not only carry various hardware and facilities, but also realize the distribution of collected data.
[0003] Smart streetlights are lighting facilities typically installed on both sides or in the center of roads. As an important part of infrastructure, they primarily provide illumination for vehicles and pedestrians at night. They generally consist of a base, a pole, and a lamp head. The energy required for smart streetlights is usually supplied by the power grid. Because streetlights are used in environments with insufficient light or at night, their main on / off times are from 7 PM to 7 AM the following day (the on / off times may vary depending on the season and region). This time period falls precisely within the peak electricity consumption period (6 PM - 11 PM) and off-peak period (11 PM - 7 AM) according to the national peak-valley-flat period division. Using streetlights during peak electricity consumption periods incurs significant economic costs, results in substantial waste of electricity resources, and places a heavy burden on the power grid.
[0004] However, as smart streetlights incorporate more functional devices, the energy consumption per streetlight also increases. Therefore, improving the efficiency of electricity utilization and saving energy has become a crucial issue. Most existing smart streetlights use individual lamp controllers to control the on / off times and adjust the brightness of the light source to save energy. This method typically only reduces a portion of the electricity consumption and cannot achieve significant energy savings. Furthermore, the existing bases contain complex electrical components, leading to messy wiring, safety hazards, and inconvenient maintenance. Utility Model Content
[0005] The present invention aims to overcome the defects of the prior art and provide an energy storage base for smart streetlights or monitoring poles.
[0006] To achieve the above objectives, this utility model provides the following technical solution: A base, comprising a hollow base body, in which an electrical component and an energy storage component are installed. The base body has mounting holes, and a cover plate is installed at the mounting holes. The electrical component includes a box with an open front, in which a functional module, a control module, a heat dissipation module, an intelligent charge / discharge controller, a drive power supply, and a fiber optic cable are installed. The intelligent charge / discharge controller, the drive power supply, and the fiber optic cable are all mounted on the inner wall of the box via a fixing bracket. An mounting plate is installed at the opening of the box, and the mounting plate has a mounting surface for mounting the electrical components. The package includes mounting slots for functional modules and control modules. The functional modules include an ONU smart gateway, a switch, and multiple cable management boards. The control modules include terminal blocks, a smart circuit breaker, a smart meter, and a socket. The heat dissipation module includes a heat dissipation module mounting panel and a cooling fan mounted on the mounting panel. The bottom of the housing has an air inlet, the heat dissipation module mounting panel has a first air outlet, and the door cover has a second air outlet corresponding to the first air outlet. The energy storage component includes a mounting bracket and an energy storage device mounted on the mounting bracket. The energy storage device is connected to a smart charge / discharge controller.
[0007] Furthermore, a baffle is installed at the opening of the box body, and the mounting plate and the heat dissipation module mounting panel are both fixedly connected to the baffle.
[0008] Furthermore, the mounting plate has a mounting through hole, and the baffle has a corresponding threaded hole.
[0009] This makes the mounting plate easy to install and secure.
[0010] Furthermore, the heat dissipation module mounting panel has mounting through holes, and the baffle has corresponding threaded holes.
[0011] This makes it easy to install and remove the heat dissipation module.
[0012] Furthermore, the ONU smart gateway is connected to a smart gateway mounting panel, the smart gateway mounting panel has mounting through holes, and the mounting plate has corresponding threaded holes.
[0013] Furthermore, the switch is connected to a switch mounting panel, the switch mounting panel has mounting through holes, and the mounting plate has corresponding threaded holes.
[0014] Furthermore, the cable clamp plate has a mounting through hole, and the mounting plate has a corresponding threaded hole.
[0015] Furthermore, the control module also includes a control module mounting panel, which has mounting through holes, and the mounting plate has corresponding threaded holes.
[0016] Furthermore, the energy storage component is located below the electrical components, and the bottom of the housing has a wiring groove.
[0017] This facilitates the connection of the lines.
[0018] Furthermore, the mounting bracket includes a bracket base plate and four L-shaped bracket surround plates. The bracket surround plates are fixedly connected to the bracket base plate, and the bracket base plate and the four bracket surround plates surround and form a mounting cavity, in which the energy storage device is placed.
[0019] This makes the installation of energy storage equipment more stable.
[0020] Furthermore, the energy storage device is an energy storage battery.
[0021] Furthermore, the electrical component is fixedly connected to the base body by a first bolt. The top and bottom of the opening side of the box body have protruding edges, and the protruding edges have bolt through holes that mate with the first bolt. The base body has a first threaded hole that mates with the first bolt.
[0022] This makes it easy to assemble and disassemble electrical components.
[0023] Furthermore, the door cover is fixedly connected to the base body by a second bolt, the door cover has a countersunk hole that mates with the second bolt, and the base body has a second threaded hole that mates with the second bolt.
[0024] This makes the door cover easy to install and remove, and convenient for maintenance.
[0025] Furthermore, a ring rib is provided at the mounting hole, and the door cover plate is located inside the ring rib.
[0026] This enhances the structural strength of the base body.
[0027] Furthermore, a base flange is fixedly connected to the bottom of the base body, and multiple reinforcing ribs are provided between the base flange and the base body.
[0028] Compared with the prior art, the beneficial effects of this utility model are:
[0029] 1. The base, electrical components, and energy storage components of this application are modularly assembled, which makes the installation simple, time-saving, labor-saving, safe, and easy to maintain.
[0030] 2. The base of this application effectively improves the heat dissipation efficiency of electrical components through the heat dissipation module, avoids excessive internal temperature of the base, and ensures stable operation of the equipment inside the base.
[0031] 3. The base and controller of this application adopt an intelligent charge and discharge controller, which can intelligently adjust the charging and discharging of the energy storage device according to the peak and valley conditions of the power grid, thereby balancing the power load, improving energy utilization, and reducing costs.
[0032] 4. The base of this application provides emergency backup power. When the mains power is interrupted or unstable, the energy storage device provides power to ensure the continuous operation of important loads. Attached Figure Description
[0033] Figure 1 This is a sectional view of the base;
[0034] Figure 2 This is a schematic diagram of the base structure;
[0035] Figure 3 This is a schematic diagram showing the base without electrical components and door panels installed.
[0036] Figure 4 This is a first-person view diagram of the electrical components.
[0037] Figure 5 This is a second-view schematic diagram of an electrical component;
[0038] Figure 6 This is a schematic diagram showing the separation of electrical components;
[0039] Figure 7 This is a schematic diagram showing the components of an energy storage module separated from each other.
[0040] Explanation of reference numerals in the attached drawings: Base body 1; Mounting hole 1.1; First threaded hole 1.2; Second threaded hole 1.3; Rib 1.4; Base flange 1.5; Reinforcing rib 1.6; Functional module 2; ONU smart gateway 2.1; Smart gateway mounting panel 2.1.1; Switch 2.2; Switch mounting panel 2.2.1; Cable clip 2.3; Control module 3; Terminal block 3.1; Smart circuit breaker 3.2; Smart meter 3.3; Socket 3.4; Control module mounting panel 3.5; Heat dissipation module 4; Heat dissipation module mounting panel 4.1; Cooling fan 4.2; First air outlet 4.3; Smart charge / discharge controller 5; Drive power supply 6; Fiber fusion box 7; Box body 8; Fixing bracket 8.1; Mounting plate 8.2; Baffle 8.3; Protruding edge 8.4; Energy storage device 9; Door cover 10; Second air outlet 10.1; Mounting bracket 11; Bracket base plate 11.1; Bracket enclosure 11.2. Detailed Implementation
[0041] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0042] This utility model provides, for example Figure 1-7 The energy storage base for a smart street light or monitoring pole, as shown, includes a hollow base body 1. Electrical components and an energy storage component are installed inside the base body 1. The base body 1 has a mounting hole 1.1, and a cover plate 10 is installed at the mounting hole 1.1. The electrical components include a box 8 with an open front. A functional module 2, a control module 3, a heat dissipation module 4, a smart charge / discharge controller 5, a drive power supply 6, and a fiber optic cable 7 are installed inside the box 8. The smart charge / discharge controller 5, the drive power supply 6, and the fiber optic cable 7 are all mounted on the inner wall of the box 8 via a fixing bracket 8.1. A mounting plate 8.2 is installed at the opening of the box 8. The mounting plate 8.2 has mounting slots for installing the functional module 2 and the control module 3. The functional module 2 includes an ONU smart gateway 2.1, a switch 2.2, and multiple cable management boards 2.3; the control module 3 includes a terminal block 3.1, a smart circuit breaker 3.2, a smart meter 3.3, and a socket 3.4; the heat dissipation module 4 includes a heat dissipation module mounting panel 4.1 and a cooling fan 4.2 mounted on the heat dissipation module mounting panel 4.1; the bottom of the housing 8 has an air inlet; the heat dissipation module mounting panel 4.1 has a first air outlet 4.3; the door cover 10 has a second air outlet 10.1 corresponding to the first air outlet 4.3; the energy storage component includes a mounting bracket 11 and an energy storage device 9 mounted on the mounting bracket 11; the energy storage device 9 is connected to the smart charge and discharge controller 5.
[0043] A baffle 8.3 is installed at the opening of the housing 8. The mounting plate 8.2 and the heat dissipation module mounting panel 4.1 are both fixedly connected to the baffle 8.3. The energy storage component is located below the electrical component, and the bottom of the housing 8 has a wire passage groove. The mounting bracket 11 includes a bracket base plate 11.1 and four L-shaped bracket surround plates 11.2. The bracket surround plates 11.2 are fixedly connected to the bracket base plate 11.1. The bracket base plate 11.1 and the four bracket surround plates 11.2 surround and form a mounting cavity, in which the energy storage device 9 is placed. The electrical component is fixedly connected to the base body 1 by a first bolt. The top and bottom of the opening side of the housing 8 have protruding edges 8.4, which have bolt through holes that mate with the first bolt. The base body 1 has a first threaded hole 1.2 that mates with the first bolt. The door cover plate 10 is fixedly connected to the base body 1 by a second bolt. The door cover plate 10 has a countersunk hole that mates with the second bolt, and the base body 1 has a second threaded hole 1.3 that mates with the second bolt. A rib 1.4 is provided at the mounting hole 1.1, and the door cover plate 10 is located within the rib 1.4. A base flange 1.5 is fixedly connected to the bottom of the base body 1, and multiple reinforcing ribs 1.6 are provided between the base flange 1.5 and the base body 1.
[0044] Working Principle: The base and housing of this application connect the intelligent charge / discharge controller to the energy storage device, power supply cable, and electrical equipment (lighting or monitoring equipment). The intelligent charge / discharge controller controls the charging and discharging between the mains power and the energy storage device. It automatically charges the energy storage device during off-peak hours and releases the energy from the storage device to power the equipment during peak hours or other needed times. The intelligent charge / discharge controller also features overcharge and over-discharge protection, overload protection, short-circuit protection, and reverse polarity protection. The energy storage device can also serve as an emergency backup power source, ensuring the continuous operation of critical loads when the mains power is interrupted or unstable.
[0045] The ONU smart gateway primarily performs optical-to-electrical signal conversion and access control. The switch is used for connecting multiple internal terminal devices and exchanging data. The cable management board's main function is to arrange various fiber optic bundles, communication bundles, and network bundles in an orderly manner. Terminal blocks are mainly used for electrical connections between various electrical devices within the electrical components. Smart circuit breakers are primarily used for remote control, such as remote opening and closing operations via an app or background program. They also have overload protection, short-circuit protection, leakage protection functions, and data monitoring and analysis, recording electricity consumption data, including current, voltage, and power, to understand electricity usage and conduct reasonable electricity planning and energy-saving management. Smart meters are mainly used for accurate and time-of-use metering, such as measuring electricity consumption according to different time periods (e.g., peak and off-peak hours), providing a basis for time-of-use pricing. Smart meters also have remote meter reading, electricity monitoring, data communication, and anti-theft functions. Sockets primarily provide reliable power supply interfaces for temporary power needs. The drive power supply mainly converts mains power into power suitable for streetlights or monitoring equipment, while also enhancing the stability, reliability, and security of the streetlights or monitoring equipment. The function of a fusion splice box is to protect the fused optical fibers.
[0046] During installation, the electrical and energy storage components are modularly assembled, making installation simple, time-saving, and labor-saving. Furthermore, each module is easily disassembled, facilitating future maintenance. Additionally, the cooling airflow generated by the cooling fan effectively dissipates heat from the internal components, ensuring stable operation.
[0047] Although the present invention has been illustrated and described with reference to preferred embodiments, those skilled in the art should understand that various changes and modifications can be made to the present invention without departing from the scope defined by the claims.
Claims
1. An energy storage base for a smart street light or monitoring pole, characterized in that, The device includes a hollow base body, within which electrical components and an energy storage component are installed. The base body has mounting holes, and a cover plate is installed at each mounting hole. The electrical components include a box with an open front, within which functional modules, a control module, a heat dissipation module, a smart charge / discharge controller, a power supply, and a fiber optic cable are installed. The smart charge / discharge controller, power supply, and fiber optic cable are all mounted on the inner wall of the box via a mounting bracket. A mounting plate is installed at the opening of the box, and the mounting plate has mounting slots for installing the functional and control modules. The functional modules include an ONU smart gateway, a switch, and multiple cable management boards. The control module includes terminal blocks, a smart circuit breaker, a smart meter, and a socket. The heat dissipation module includes a heat dissipation module mounting panel and a cooling fan mounted on the mounting panel. The bottom of the box has an air inlet, the heat dissipation module mounting panel has a first air outlet, and the cover plate has a second air outlet corresponding to the first air outlet. The energy storage component includes a mounting bracket and an energy storage device mounted on the mounting bracket, and the energy storage device is connected to the smart charge / discharge controller.
2. The energy storage base for the smart street light or monitoring pole according to claim 1, characterized in that, A baffle is installed at the opening of the box, and the mounting plate and the heat dissipation module mounting panel are both fixedly connected to the baffle.
3. The energy storage base for the smart street light or monitoring pole according to claim 1, characterized in that, The energy storage component is located below the electrical components, and the bottom of the housing has a wire channel.
4. The energy storage base for the smart street light or monitoring pole according to claim 1, characterized in that, The mounting bracket includes a bracket base plate and four L-shaped bracket surround plates. The bracket surround plates are fixedly connected to the bracket base plate. The bracket base plate and the four bracket surround plates surround and form a mounting cavity, in which the energy storage device is placed.
5. The energy storage base for the smart street light or monitoring pole according to claim 1, characterized in that, The electrical components are fixedly connected to the base body by a first bolt. The top and bottom of the opening side of the box body have protruding edges, and the protruding edges have bolt through holes that mate with the first bolt. The base body has a first threaded hole that mates with the first bolt.
6. The energy storage base for the smart street light or monitoring pole according to claim 1, characterized in that, The door cover is fixedly connected to the base body by a second bolt. The door cover has a countersunk hole that mates with the second bolt, and the base body has a second threaded hole that mates with the second bolt.
7. The energy storage base for the smart street light or monitoring pole according to claim 1, characterized in that, A ring rib is provided at the mounting hole, and the door cover is located inside the ring rib.
8. The energy storage base for a smart street light or monitoring pole according to claim 1, characterized in that, The bottom of the base body is fixedly connected to a base flange, and there are multiple reinforcing ribs between the base flange and the base body.