Base structure, intelligent rod and intelligent street lamp
By creating multiple installation ports around the load-bearing base of the smart street light, equipment compartments of different management units can be installed independently, solving the problem of equipment failure caused by maintenance personnel's misoperation and realizing independent maintenance and efficient repair of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-12
- Publication Date
- 2026-03-31
AI Technical Summary
The centralized installation of electronic equipment from different management units in smart streetlights can easily lead to misoperation by maintenance personnel, causing equipment failures.
Design a base structure that forms multiple mounting ports around the load-bearing base to accommodate equipment compartments of different management units, and allows for independent installation of equipment from different management units by closing or opening these mounting ports through a movable shell.
This avoids equipment failures caused by maintenance personnel's misoperation, ensures independent maintenance of equipment in each managed unit, and improves the efficiency and reliability of equipment maintenance.
Smart Images

Figure CN224065380U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of smart street light technology, and in particular to a base structure, a smart pole, and a smart street light. Background Technology
[0002] Compared to ordinary streetlights, smart streetlights combine multiple functions such as lighting and monitoring. This necessitates the installation of various electronic devices with different functions. Currently, different functional electronic devices are under the jurisdiction of different authorities; for example, lighting equipment falls under the jurisdiction of the streetlight authority, while monitoring equipment falls under the jurisdiction of the public security bureau. Therefore, if lighting and monitoring equipment are installed together during maintenance by the relevant authorities, it can easily lead to maintenance personnel misoperating other equipment, causing malfunctions. Utility Model Content
[0003] The main purpose of this utility model is to provide a base structure that enables independent installation of electronic equipment in different management units, thereby avoiding equipment failures caused by maintenance personnel's misoperation.
[0004] To achieve the above objectives, the present invention proposes a base structure comprising: a load-bearing base and a housing. The load-bearing base is used to install an external load. Multiple mounting openings are formed on the periphery of the load-bearing base. The multiple mounting openings are arranged around the installed external load to accommodate equipment compartments of different management units. The housing is movably disposed on the load-bearing base to close or open the multiple mounting openings.
[0005] Optionally, the load-bearing base includes a support frame and a partition plate. The external load protrudes from the support frame, the support frame has a receiving space communicating with the outside, and the partition plate is placed in the receiving space to divide the receiving space into multiple mounting ports.
[0006] Optionally, the load-bearing base includes a plurality of partition plates, which are arranged crosswise in the accommodating space to divide the accommodating space into multiple sets of adjacent mounting ports.
[0007] Optionally, the load-bearing base includes two partition plates arranged opposite to each other, with the two partition plates spaced apart in the receiving space, so that the receiving space is divided to form a wire passage and two mounting ports arranged back to back.
[0008] Optionally, the support frame includes a base, a top cover, and two side plates. The two side plates are respectively disposed between the base and the top cover and enclose the receiving space. The external load protrudes from the top cover, and the two partition plates are respectively sandwiched between the two side plates.
[0009] Optionally, the partition plate abuts against the base and the top cover, and the partition plate has a cable outlet on the side facing the base so that the cable passing through the cable passage can exit through the cable outlet.
[0010] Optionally, the outer shell has a cylindrical structure that is slidably fitted onto the load-bearing seat to simultaneously close or open multiple mounting ports.
[0011] This utility model also proposes a smart pole, including a pole body, multiple equipment compartments and the aforementioned base structure, wherein the pole body protrudes from the load-bearing seat of the base structure, and the multiple equipment compartments are respectively installed in the multiple mounting ports of the base structure.
[0012] Optionally, the equipment compartment is provided with a partition plate that divides the equipment compartment into two installation spaces, so that the high-voltage equipment and the low-voltage equipment are installed separately in the two installation spaces.
[0013] This utility model also proposes a smart street light, including a lamp head and the aforementioned smart pole, wherein the lamp head is disposed on the pole body of the smart pole.
[0014] When applied to smart streetlights, the technical solution of this invention features a pole that protrudes from a support base as an external load. Multiple mounting openings are formed around the support base, providing stable support for the pole. This integrates the electronic equipment of each management unit into a single equipment compartment. The equipment compartments of different management units are installed at different mounting openings on the support base. The outer casing is movably mounted on the support base to close or open these mounting openings, thus enabling independent installation of electronic equipment from different management units within the base structure. Maintenance personnel can then inspect only the equipment compartment corresponding to their assigned management unit's mounting opening via the movable outer casing, avoiding the need to inspect other mounting openings and preventing equipment malfunctions caused by operator error. Attached Figure Description
[0015] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0016] Figure 1 This is a schematic diagram of the structure of a smart street light according to an embodiment of the present invention;
[0017] Figure 2 for Figure 1 Maintenance status diagram of the smart pole;
[0018] Figure 3 for Figure 1 A schematic diagram of the installation of the equipment compartment within the base structure;
[0019] Figure 4 for Figure 3 Schematic diagram of the installation of the central equipment compartment on the load-bearing base;
[0020] Figure 5 for Figure 4 Schematic diagram of the structure of the central support;
[0021] Figure 6 for Figure 5 Cross-sectional structural diagram of the central support seat;
[0022] Figure 7 for Figure 3 Diagram showing the closed status of the central equipment compartment;
[0023] Figure 8 for Figure 3 Diagram showing the open status of the central equipment compartment;
[0024] Explanation of icon numbers:
[0025] name label name label Base structure 1000 Lower positioning plate 302 load-bearing seat 100 rod 2000 Installation port 100a Equipment compartment 3000 Through-line channel 100b isolation plate 3001 upper flange 101 hinge 3002 Insertion Hole 101a door lock 3003 Assembly holes 101b Hanging board 3004 Upper reinforcing ribs 102 Fixing hole 3004a Lower flange 103 hull 3100 Lower reinforcing rib 104 Heat dissipation holes 3100a support frame 110 Threading hole 3100b base body 111 hatch 3300 Top cover 112 High-voltage electrical equipment 4100 Side panel 113 Low-voltage equipment 4200 partition 130 lamp base 5000 Outlet 130a Main light head 5100 shell 300 auxiliary lamp head 5300 Threaded hole 300a Surveillance equipment 6000 Upper positioning plate 301 Display devices 7000
[0026] The realization of the purpose, functional features and advantages of this utility model will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation
[0027] 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.
[0028] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0029] See Figures 1 to 8As shown, in one embodiment of this utility model, a base structure 1000 includes: a load-bearing base 100 and a housing 300. The load-bearing base 100 is used to install an external load. A plurality of mounting openings 100a are formed on the periphery of the load-bearing base 100. The plurality of mounting openings 100a are arranged around the installed external load and are used to accommodate electronic devices of different management units respectively. The housing 300 is movably disposed on the load-bearing base 100 to close or open the plurality of mounting openings 100a.
[0030] When applied to smart streetlights, the technical solution of this utility model involves a pole 2000 protruding from a support base 100 as an external load. Multiple mounting openings 100a are formed around the periphery of the support base 100, providing stable support for the pole 2000. This integrates the electronic equipment of each management unit into an equipment compartment 3000. Different equipment compartments 3000 of different management units are installed in different mounting openings 100a of the support base 100. The outer casing 300 is movably mounted on the support base 100 to close or open multiple mounting openings 100a, thus enabling independent installation of electronic equipment from different management units within the base structure 1000. Maintenance personnel can then inspect only the equipment compartment 3000 corresponding to the mounting opening 100a of the management unit via the movable outer casing 300, avoiding the need to inspect other equipment compartments 3000 at other mounting openings 100a, thereby preventing equipment malfunctions caused by maintenance personnel misoperation.
[0031] It should be noted that the mounting opening 100a can be formed by a recess in the side wall of the support base 100, or by a partition plate 130 dividing the accommodating space of the support base 100. The outer shell 300 can be movably surrounded by multiple mounting openings 100a, so that multiple mounting openings 100a can be opened simultaneously through the movement of the outer shell 300. Of course, the outer shell 300 can be rotatably connected to the support base 100, plugged into the support base 100, or magnetically attracted to the support base 100. The outer shell 300 can also be slidably sleeved on the support base 100. As long as the movement of the outer shell 300 can achieve the closing and opening of the mounting opening 100a, this embodiment is not limited to this. All of the above are within the protection scope of this utility model. Of course, in this embodiment, the cross-section of the support base 100 can be an I-shaped structure, forming two mounting ports 100a facing each other, thereby enabling independent installation of electronic equipment from two different management units; the cross-section of the support base 100 can also be a cross-shaped structure, forming two sets of four adjacent mounting ports 100a, thereby enabling independent installation of electronic equipment from four different management units. This embodiment can set the mounting ports 100a according to the management unit corresponding to the mounted equipment, meeting the maintenance requirements of electronic equipment with different functions.
[0032] See Figures 1 to 8As shown, in one embodiment of this utility model, the load-bearing base 100 includes a support frame 110 and a partition plate 130. An external load protrudes from the support frame 110, and the support frame 110 has a receiving space communicating with the outside. The partition plate 130 is placed in the receiving space to divide the receiving space into multiple mounting openings 100a. It should be noted that in this embodiment, the external load protrudes from the support frame 110 and does not occupy the receiving space of the support frame 110, thereby maximizing the space provided by the support frame 110 for the installation of electronic equipment. Furthermore, by dividing the receiving space with the partition plate 130 to form multiple mounting openings 100a, the receiving space of the support frame 110 is fully utilized, satisfying the independent installation of multiple mounted equipment compartments 3000.
[0033] See Figures 1 to 8 As shown, in one embodiment of this utility model, the load-bearing base 100 includes multiple partition plates 130, which are intersected in the accommodating space to divide the accommodating space into multiple groups of adjacent mounting openings 100a. It should be noted that the load-bearing base 100 includes multiple partition plates 130, with one partition plate 130 intersecting other partition plates 130, thereby dividing the accommodating space into two groups of adjacent mounting openings 100a. Specifically, the load-bearing base 100 may include two partition plates 130 arranged in a cross shape, thereby dividing the accommodating space into two groups of four adjacent mounting openings 100a, thus satisfying the independent installation of the equipment compartments 3000 of four management units, and facilitating maintenance by different management units.
[0034] See Figures 1 to 8As shown, in one embodiment of this utility model, the support base 100 includes two opposing partition plates 130, which are spaced apart in the accommodating space to divide the accommodating space into a wiring channel 100b and two mounting openings 100a facing away from each other. It should be noted that in this embodiment, the pole 2000 is mounted on the wiring channel 100b, and the wiring of the equipment mounted on the pole 2000 passes through the wiring channel 100b. The wiring of the wiring channel 100b is connected to the equipment compartment 3000 of the mounting opening 100a, thus achieving the connection of the smart street light wiring while avoiding the exposure of the wiring, thereby ensuring the aesthetic appearance of the overall smart street light. Specifically, in this embodiment, the pole 2000 can mount lighting equipment and monitoring equipment 6000. The equipment compartments 3000 of the lighting equipment and the monitoring equipment 6000 are respectively installed in two mounting ports 100a that are set back from each other. This enables independent installation of equipment compartments 3000 of different management units. In this way, when the management unit performs equipment maintenance, it only needs to inspect the equipment compartment 3000 of the corresponding mounting port 100a, without involving the gaps of equipment compartments 3000 of other mounting ports 100a, thereby avoiding equipment failure caused by maintenance personnel's misoperation.
[0035] See Figures 1 to 8As shown, in one embodiment of this utility model, the support frame 110 includes a base 111, a top cover 112, and two side plates 113. The side plates 113 are respectively disposed between the base 111 and the top cover 112, enclosing and forming the receiving space. The external load protrudes from the top cover 112, and two partition plates 130 are respectively sandwiched between the side plates 113. It should be noted that the base 111 and the top cover 112 are spaced apart, the two sides of the side plates 113 are respectively connected to the base 111 and the top cover 112, and the side plates 113 are disposed opposite to each other between the base 111 and the top cover 112 to enclose and form a receiving space that communicates with the outside. The two partition plates 130 are respectively sandwiched between the side plates 113 to divide the receiving space into a wire passage 100b and two mounting openings 100a that are arranged opposite to each other. In this embodiment, an external load protrudes from the top cover 112, without occupying the enclosed space, thus maximizing the space available for the installation of the equipment compartment 3000 and facilitating independent installation of equipment compartments 3000 for different management units. Furthermore, to provide strong support for the rod 2000, it can be mounted on the top cover 112 between the two partition plates 130. In this embodiment, the top cover 112 includes an upper flange 101 and an upper reinforcing rib 102. The upper flange 101 is spaced apart from the base 111 and encloses the space with the side plates 113. The two partition plates 130 are positioned opposite each other on the upper flange 101, and the upper reinforcing rib 102 is positioned between the upper flange 101 and the partition plates 130. This enhances the stability of the connection between the upper flange 101 and the partition plates 130, thereby providing strong support for the rod 2000. To facilitate the installation and fixation of the pole 2000, the upper flange 101 can be provided with insertion holes 101a on the surface between the two partition plates 130. The pole 2000 is disposed in the insertion holes 101a of the upper flange 101. The upper flange 101 has multiple assembly holes 101b surrounding the insertion holes 101a. The inserted lamp pole is installed and fixed to the base structure 1000 by fasteners engaging with the multiple assembly holes 101b. In this embodiment, a lower reinforcing rib 104 can also be provided. The lower reinforcing rib 104 is disposed between the side plate 113 and the base 111. The lower reinforcing rib 104 is a wedge-shaped block, which enhances the stability of the load-bearing seat 100 and also has a guiding function, allowing the outer shell 300 to slide onto the load-bearing seat 100, thereby enabling the closure or opening of the multiple mounting ports 100a. In addition, the base 111 can also be equipped with a lower flange 103. The base 111 is installed and fixed by the lower flange 103, which is conducive to the stable installation of the rod 2000.
[0036] See Figures 1 to 8As shown, in one embodiment of this utility model, a partition plate 130 abuts against the base 111 and the top cover 112. The partition plate 130 has a cable outlet 130a on its side facing the base 111, allowing cables passing through the cable passage 100b to exit through the cable outlet 130a. It should be noted that in this embodiment, the partition plate 130 abuts against the base 111 and the top cover 112, thereby enhancing the stability of the base structure 1000 and providing strong support for the pole 2000. In this embodiment, the cables of the equipment mounted on the pole 2000 pass through the cable passage 100b and exit through the cable outlet 130a. This allows the cables to enter the equipment compartment 3000 at the mounting opening 100a, thus achieving cable connection with the equipment compartment 3000. This embodiment achieves independent installation of equipment compartments 3000 with different functions while avoiding exposed cables, thus ensuring an aesthetically pleasing overall appearance.
[0037] See Figures 1 to 8 As shown, in one embodiment of this utility model, the outer shell 300 has a cylindrical structure, which is slidably fitted onto the support base 100 to simultaneously close or open multiple mounting ports 100a. It should be noted that the outer shell 300 has a cylindrical structure, which is slidably fitted onto the support base 100 along the height direction of the lamp post to simultaneously close or open multiple mounting ports 100a. Thus, when the responsible unit performs maintenance, the cylindrical structure slides along the height direction of the lamp post, thereby simultaneously opening multiple mounting ports 100a of the support base 100, allowing maintenance personnel to inspect and maintain the equipment compartments 3000 of the mounting ports 100a under their assigned functions; when the responsible unit completes maintenance, the cylindrical structure slides back along the height direction of the lamp post, thereby simultaneously closing multiple mounting ports 100a of the support base 100, and the equipment compartments 3000 with different functions are installed inside the base structure 1000, thus realizing the internal arrangement of the equipment compartments 3000. Of course, in this embodiment, a threaded hole 300a can be provided. The outer shell 300 on the load-bearing seat 100 can be limited by the cooperation of the fastener and the threaded hole 300a. In this embodiment, an upper positioning plate 301 and a lower positioning plate 302 can also be provided between the top cover 112 and the seat 111 respectively. The size of the upper positioning plate 301 and the lower positioning plate 302 is slightly smaller than the size of the cylindrical structure, so that the outer shell 300 is limited and installed on the load-bearing seat 100.
[0038] See Figures 1 to 8As shown, in one embodiment of this utility model, a smart pole includes a pole body 2000, multiple device compartments 3000, and the aforementioned base structure 1000. The pole body 2000 protrudes from the load-bearing seat 100 of the base structure 1000, and the multiple device compartments 3000 are respectively installed in multiple mounting openings 100a of the base structure 1000. It should be noted that the smart pole in this embodiment can mount various functional devices, such as lighting equipment and monitoring equipment 6000, and may also include display devices 7000, etc. Of course, this embodiment is not limited to these, and all of the above are within the protection scope of this utility model. In this embodiment, the pole body 2000 protrudes from the load-bearing seat 100 as an external load. Multiple mounting openings 100a are formed on the periphery of the load-bearing seat 100, and the multiple mounting openings 100a are arranged around the pole body 2000, thereby forming a stable support for the pole body 2000. In this way, the electronic equipment of each jurisdiction unit is integrated into an equipment compartment 3000. The equipment compartments 3000 of different jurisdiction units are installed in different mounting ports 100a of the support base 100. The outer shell 300 is movably mounted on the support base 100 to close or open multiple mounting ports 100a. In this way, independent installation of the equipment compartments 3000 of different jurisdiction units within the base structure 1000 is achieved. Thus, maintenance personnel only need to inspect the equipment compartment 3000 of the corresponding jurisdiction unit's mounting port 100a through the movable outer shell 300, without involving the inspection and maintenance of equipment compartments 3000 of other mounting ports 100a, avoiding equipment failures caused by maintenance personnel's misoperation.
[0039] See Figures 1 to 8As shown, in one embodiment of this utility model, an isolation plate 3001 is provided inside the equipment compartment 3000. The isolation plate 3001 divides the equipment compartment 3000 into two installation spaces, so that the high-voltage equipment 4100 and the low-voltage equipment 4200 are installed separately in the two installation spaces. It should be noted that in this embodiment, the high-voltage equipment 4100 includes a leakage current protector, a lamp controller, and a lighting power supply, etc., and the low-voltage equipment 4200 includes a gateway, an edge calculator, and a switch, etc. In this embodiment, the isolation plate 3001 is used to separate the installation of the high-voltage equipment 4100 and the low-voltage equipment 4200, thereby avoiding interference between the high-voltage equipment 4100 and the low-voltage equipment 4200. Of course, the equipment compartment 3000 can also be provided with multiple isolation plates 3001, which are arranged along the height direction of the equipment compartment 3000, so as to achieve separate installation of different high-voltage equipment 4100 and different low-voltage equipment 4200. In this embodiment, the equipment compartment 3000 includes a compartment body 3100 and a door 3300. An isolation plate 3001 is disposed on the compartment body 3100, dividing it into two installation spaces. The door 3300 is rotatably connected to the compartment body 3100 via a hinge 3002, allowing the equipment compartment 3000 to be either enclosed internally or exposed to the outside. To prevent water from entering the interior through the gap between the door 3300 and the compartment body 3100, a sealing ring can be provided to seal the gap. Multiple heat dissipation holes 3100a can be provided at the bottom of the compartment body 3100, spaced apart from the wiring holes 3100b. This allows the electronic components of the equipment mounted on the rod 2000 to be connected to the equipment compartment 3000 via the wiring holes 3100b. This achieves heat dissipation for the equipment compartment 3000 while preventing rainwater from entering. In this embodiment, the cabin 3100 protrudes from the mounting plate 3004, and the mounting plate 3004 is provided with fixing holes 3004a. The equipment cabin 3000 can be detached and installed in the mounting opening 100a through the fixing holes 3004a, thereby facilitating the installation and maintenance of the equipment cabin 3000. Of course, in this embodiment, a door lock 3003 can also be provided between the cabin door 3300 and the cabin 3100. The cabin door 3300 is locked to the cabin 3100 by the door lock 3003, thereby achieving an anti-theft effect.
[0040] See Figures 1 to 8As shown, in one embodiment of this utility model, a smart street light includes a lamp head 5000 and a smart pole, with the lamp head 5000 disposed on the pole body 2000 of the smart pole. It should be noted that the lamp head 5000 may include a main lamp head 5100 and an auxiliary lamp head 5300, which are spaced apart on the pole body 2000. Of course, the lamp head 5000 can be directly installed on the pole body 2000, or it can be installed on the pole body 2000 using a connector. The connector can be a clamp or a support arm; this embodiment is not limited to these, and all of the above are within the protection scope of this utility model. The smart street light in this embodiment can also mount equipment compartments 3000 for different management units, such as monitoring equipment 6000. These equipment compartments 3000 are installed at different mounting ports 100a on the support base 100. The outer shell 300 is movably mounted on the support base 100 to close or open multiple mounting ports 100a, thus enabling independent installation of the equipment compartments 3000 for different management units within the base structure 1000. This allows maintenance personnel to inspect only the equipment compartment 3000 at the corresponding management unit's mounting port 100a via the movable outer shell 300, without needing to inspect the equipment compartments 3000 at other mounting ports 100a, thereby avoiding equipment malfunctions caused by maintenance personnel misoperation.
[0041] The above description is only an optional embodiment of the present utility model and does not limit the patent scope of the present utility model. All equivalent structural transformations made under the inventive concept of the present utility model using the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.
Claims
1. A base structure, characterized by, include: The load-bearing base and the outer casing are provided. The load-bearing base is used to install external loads. Multiple mounting ports are formed around the loads to accommodate equipment compartments of different management units. The outer casing is movably mounted on the load-bearing base to close or open the mounting ports.
2. The base structure of claim 1, wherein, The load-bearing base includes a support frame and a partition plate. The external load protrudes from the support frame. The support frame has a receiving space that communicates with the outside. The partition plate is placed in the receiving space so that the receiving space is divided to form multiple mounting ports.
3. The base structure of claim 2, wherein, The load-bearing base includes multiple partition plates, which are arranged crosswise in the accommodating space to divide the accommodating space into multiple sets of adjacent mounting ports.
4. The base structure of claim 2, wherein, The load-bearing base includes two partition plates arranged opposite to each other, with the two partition plates spaced apart in the accommodating space to divide the accommodating space into a wire passage and two mounting ports arranged back to back.
5. The base structure of claim 4, wherein, The support frame includes a base, a top cover, and two side plates. The two side plates are respectively disposed between the base and the top cover and enclose the receiving space. The external load protrudes from the top cover, and the two partition plates are respectively sandwiched between the two side plates.
6. The base structure of claim 5, wherein, The partition plate abuts against the base and the top cover, and the partition plate has a cable outlet on the side facing the base so that the cable passing through the cable passage can pass through the cable outlet.
7. The base structure of any one of claims 1 to 6, wherein, The outer shell has a cylindrical structure, which is slidably fitted onto the load-bearing base to simultaneously close or open multiple mounting ports.
8. A smart pole, comprising: The device includes a rod, multiple equipment compartments, and a base structure as described in any one of claims 1 to 7, wherein the rod protrudes from the load-bearing seat of the base structure, and the multiple equipment compartments are respectively installed in the multiple mounting ports of the base structure.
9. The smart pole of claim 8, wherein, The equipment compartment is equipped with a partition plate, which divides the equipment compartment into two installation spaces so that the high-voltage equipment and the low-voltage equipment can be installed separately in the two installation spaces.
10. A smart street lamp, characterized in that, It includes a lamp head and the smart pole as described in claim 8 or 9, wherein the lamp head is disposed on the pole body of the smart pole.