An integrated solar street light
By designing an automated solar street light system, remote monitoring and automatic replacement of LED lights were achieved, solving the problems of difficult maintenance and high cost in existing technologies, and improving the convenience and reliability of the system.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JINGYANG LIGHTING CO LTD
- Filing Date
- 2025-05-28
- Publication Date
- 2026-05-26
AI Technical Summary
When existing integrated solar streetlights are used outdoors for extended periods, the LED lights are prone to damage due to environmental factors, leading to difficult repairs and high maintenance costs, and they lack automatic replacement functionality.
A solar street light system comprising a lamp post assembly, a rotating assembly, a pushing assembly, and a monitor was designed. The system enables remote replacement and waste collection of LED lamps through remote monitoring and automated mechanical structures, reducing human intervention.
It enables automated replacement of LED lights, reduces maintenance costs, improves convenience and lifespan, is suitable for nighttime lighting in remote areas, and reduces maintenance risks.
Smart Images

Figure CN224284425U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of solar street light technology, specifically an integrated solar street light. Background Technology
[0002] When existing integrated solar streetlights are used outdoors for extended periods, the LED lights are prone to damage due to environmental factors (such as wind and rain erosion, voltage fluctuations, or natural aging). Since these streetlights are typically installed in suburban, remote areas, or highway locations far from urban areas, it is difficult for maintenance personnel to reach the site in a timely manner to replace the damaged LED lights once a malfunction occurs. This results in the streetlights being unable to function properly for extended periods, severely impacting nighttime lighting effects and traffic safety.
[0003] Currently, most traditional solar streetlights use fixed LED light structures, which require manual disassembly and replacement of the entire light head or related components when damaged, making the operation cumbersome and maintenance costly. Furthermore, existing solar streetlights lack the function of automatically replacing LED lights.
[0004] Therefore, in order to solve the above problems, how to design an integrated solar street light is a technical problem that the industry urgently needs to solve. Utility Model Content
[0005] The purpose of this invention is to provide an integrated solar street light to solve the problem mentioned in the background art of the inability to automatically replace LED lights.
[0006] The above-mentioned technical objective of this utility model is achieved through the following technical solution:
[0007] An integrated solar street light includes a lamp post assembly, a lamp base plate at the top of the lamp post assembly, a rotating assembly on the lamp base plate, a symmetrical set of pushing assemblies on the rotating assembly, the pushing assemblies being located between the lamp base plate and the rotating assembly, a lamp being located below the pushing assemblies, the pushing assemblies being detachably connected to the lamp, and a socket being provided on the lamp base plate, the socket cooperating with the lamp.
[0008] Preferably, the lamp post assembly is provided with a monitor, the lamp base plate is provided with an illumination cavity, the illumination cavity is directly opposite the front lamp, and the monitor faces the illumination cavity.
[0009] Preferably, the rotating assembly includes a rotating motor located inside the lamp base plate, the driving end of the rotating motor is provided with a rotating shaft located above the lamp base plate, and a rotating wheel is provided on the rotating shaft.
[0010] Preferably, the pushing component includes a positioning block connected to a rotating wheel. The positioning block is located between the lamp base plate and the rotating wheel. One end of the positioning block facing the socket is provided with a pneumatic telescopic rod. The extended end of the pneumatic telescopic rod is provided with a pushing block. The pushing block is provided with several sets of electric suction cups, which adsorb the lamp.
[0011] Preferably, the base plate of the lamp is provided with a lifting cavity and a waste cavity. The waste cavity is located on the path of the lamp rotation. The lower part of the base plate of the lamp is provided with a support frame. The support frame is connected to the base plate of the lamp by screws. The support frame is provided with a power component. The side end of the support frame is provided with a disassembly plate. The disassembly plate covers the waste cavity.
[0012] Preferably, the power assembly includes a hydraulic telescopic cylinder, which is connected to the support frame. One end of the hydraulic telescopic cylinder is provided with a push plate, which is inserted into the lifting cavity.
[0013] Preferably, the lamp post assembly includes a lamp post body, an adjustment component is provided inside the lamp post body, the adjustment component is connected to the lamp base plate, a set of symmetrical guide frames are provided on the side of the lamp post body, and a sealing component is provided on the guide frames.
[0014] Preferably, the control component includes a sliding motor, the driving end of the sliding motor is provided with a sliding shaft, the sliding shaft is provided with a movable threaded slider, the threaded slider is threadedly engaged with the sliding shaft, the threaded slider abuts against the lamp post body, the threaded slider is connected to the lamp base plate, the front end face of the threaded slider is connected to a monitor, and the lamp post body is provided with a controller.
[0015] Preferably, the sealing assembly includes an electric telescopic rod, one extended end of which is provided with a dustproof plate located on the front side of the lamp post body. The dustproof plate is provided with a set of symmetrical guide cavities, and a main housing is provided on the dustproof plate. The main housing is located on the side of the guide cavities, and a telescopic cavity is provided inside the main housing. A telescopic spring is provided on the main housing, and a push block is provided at the other end of the telescopic spring. The push block is located inside the telescopic cavity and can block the guide cavity.
[0016] Compared with the prior art, the advantages of this utility model are:
[0017] 1. The advantages of this utility model are as follows: Workers can remotely monitor the lighting cavity via a monitor, observing the lighting fixtures that illuminate the cavity at night to ensure their illumination status. If the brightness of the lighting fixture is insufficient, the front pushing component moves the electric suction cup and the fixture away from the socket. When it is away from the socket, the rotating component moves the pushing component to exchange positions with the fixture. Once the position is exchanged, the pushing component on the socket side inserts the fixture into the socket, thus achieving remote automatic replacement of the fixture. This eliminates the need for manual replacement, making it suitable for use in remote areas and suburbs, further improving convenience. The automatic replacement of the fixture significantly extends its service life, further ensuring its practicality.
[0018] 2. The advantages of this utility model are: since the waste chamber is on the path of the rotating disc, it is convenient to collect the scrapped lamps, thereby ensuring the smooth replacement of lamps.
[0019] 3. The advantages of this utility model are as follows: When maintenance is not required, the threaded slider in the control component moves upward to the top, at which point the sealing component is just locked onto the threaded slider. Due to the action of the telescopic spring, the push block in the lower guide cavity is blocked. When maintenance is required, the threaded slider in the control component moves downward to the bottom, and the electric telescopic rod repeats the above movement, thereby ensuring that the symmetrical dustproof plate and the lamp post body cover the sliding shaft, thus preventing dust from affecting the sliding shaft. At the same time, it ensures that the height of all parts on the solar panel and lamp base plate can be adjusted, thus ensuring that no workers need to climb to height for maintenance, thereby reducing the danger of maintenance and upkeep. Attached Figure Description
[0020] Figure 1 This is a perspective view of the present invention;
[0021] Figure 2 This is a front view of the present invention;
[0022] Figure 3 This is a utility model Figure 2 A diagram of AA in the middle;
[0023] Figure 4 This utility model Figure 3 Enlarged structural diagram at point A in the diagram;
[0024] Figure 5 This is a utility model Figure 2 A schematic diagram of BB;
[0025] Figure 6 This is a utility model Figure 2 A schematic diagram of CC in the middle;
[0026] Figure 7 This is a utility model Figure 4 A schematic diagram of the external appearance of the central support frame component;
[0027] Figure 8 This is a schematic diagram of the structure of the base plate of the lamp of this utility model.
[0028] In the picture:
[0029] 1. Lamp post assembly; 11. Lamp post body; 12. Control assembly; 121. Sliding motor; 122. Sliding shaft; 123. Threaded slider; 2. Lamp base plate; 21. Rotating assembly; 211. Rotating motor; 212. Rotating shaft; 213. Rotating wheel; 22. Pushing assembly; 23. Electric suction cup; 24. Lamp; 25. Socket; 26. Support frame; 27. Power assembly; 271. Hydraulic telescopic cylinder; 272. Push plate; 273. Lifting chamber; 28. Waste chamber; 29. Disassembly plate; 3. Solar panel; 31. Placement rack; 32. Solar panel; 4. Guide frame; 5. Sealing assembly; 51. Electric telescopic rod; 52. Dustproof plate; 53. Guide chamber; 54. Main housing; 55. Telescopic spring; 56. Telescopic chamber; 57. Push block; 6. Monitor; 7. Lighting chamber. Detailed Implementation
[0030] The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings, so that the advantages and features of the present invention can be more easily understood by those skilled in the art, thereby providing a clearer and more definite definition of the scope of protection of the present invention.
[0031] Example 1
[0032] See Figures 1-8 This is the first embodiment of the present invention, which provides an integrated solar street light, including a lamp post assembly 1. The lamp post assembly 1 has a lamp base plate 2 at its top. A rotating assembly 21 is mounted on the lamp base plate 2. A symmetrical set of pushing assemblies 22 are mounted on the rotating assembly 21. The pushing assemblies 22 are located between the lamp base plate 2 and the rotating assembly 21. A lamp 24 is located below the pushing assemblies 22. The pushing assemblies 22 and the lamp 24 are detachably connected. A socket 25 is mounted on the lamp base plate 2, and the socket 25 cooperates with the lamp 24. When the lamp 24 is inserted into the socket 25, the pushing assemblies 22 begin to move away from the socket 25. When they move away from the socket 25, the rotating assembly 21 is activated, thereby swapping the positions of the symmetrical pushing assemblies 22 and the lamp 24. Then, another lamp 24 is inserted into the socket 25, thus achieving the replacement of the lamp 24.
[0033] Optionally, luminaire 24 is model SYLED-LD-052, which is used to illuminate the road surface.
[0034] See Figures 3-8 Specifically, the lamp post assembly is equipped with a monitor, specifically a monitor 6 on the lamp post assembly 1, and an illumination cavity 7 on the lamp base plate 2. The illumination cavity 7 faces the lamp 24 on the front side, and the monitor 6 faces the illumination cavity 7. Workers can monitor the illumination cavity 7 through the monitor 6, observing the lamp 24 illuminated by the illumination cavity 7 at night, thereby ensuring the illumination status of the lamp 24.
[0035] Optionally, Monitor 6 uses the Reolink Argus 3 Pro Solar model to monitor the lighting conditions of Lighting Fixture 24.
[0036] See Figure 3 Specifically, the rotating assembly 21 includes a rotating motor 211 located inside the lamp base plate 2. The driving end of the rotating motor 211 has a rotating shaft 212 located above the lamp base plate 2, and a rotating disc 213 is mounted on the rotating shaft 212. Starting the rotating motor 211 in the rotating assembly 21 causes the rotating shaft 212 and the rotating disc 213 to rotate, thereby changing the position of the symmetrically positioned pushing assembly 22.
[0037] See Figures 3-4 Specifically, the pushing component 22 includes a positioning block 221 connected to a rotating wheel 213. The positioning block 221 is located between the lamp base plate 2 and the rotating wheel 213. A pneumatic telescopic rod 222 is provided at one end of the positioning block 221 facing the socket 25. A pushing block 223 is provided at the extended end of the pneumatic telescopic rod 222. Several sets of electric suction cups 23 are provided on the pushing block 223, which adsorb the lamp 24. By controlling the extension and retraction of the pneumatic telescopic rod 222 in the pushing component 22, the pushing block 223, the electric suction cups 23, and the lamp 24 begin to move, thereby realizing the insertion and removal of the lamp 24 from the socket 25.
[0038] Optionally, the pneumatic telescopic rod 222 is a STABILUS 20-300-600-1 model, which enables the plugging and unplugging of the lamp 24.
[0039] Optionally, the motorized suction cup 23 is a SCHMALZ EGP-40 model, which provides sufficient suction to ensure that the lamp 24 is held in place.
[0040] See Figures 4-8Specifically, the lamp base plate 2 is provided with a lifting chamber 273 and a waste chamber 28. The waste chamber 28 is located on the rotation path of the lamp 24. A support frame 26 is provided at the lower part of the lamp base plate 2. The support frame 26 is connected to the lamp base plate 2 by screws. A power assembly 27 is provided on the support frame 26. A disassembly plate 29 is provided on the side end of the support frame 26, and the disassembly plate 29 covers the waste chamber 28. By removing the screws, the power assembly 27 and the support frame 26 can be quickly separated from the lamp base plate 2, and the waste chamber 28 is on the rotation path of the rotating wheel 213, thus facilitating the collection of scrapped lamps 24.
[0041] See Figures 3-4 Specifically, the power assembly 27 includes a hydraulic telescopic cylinder 271, which is connected to the support frame 26. One extended end of the hydraulic telescopic cylinder 271 is provided with a push plate 272, which is inserted into the lifting cavity 273. When the hydraulic telescopic cylinder 271 in the power assembly 27 begins to extend, it drives the other groups of lamps 24 in the lifting cavity 273 to move upwards, thereby allowing the rear electric suction cup 23 to contact and adhere to the other groups of lamps 24.
[0042] Optionally, the hydraulic telescopic cylinder 271 is a Parker HMI-32-1000-S model, which ensures that the push plate 272 can be moved.
[0043] See Figure 3 Specifically, the lamp post assembly 1 includes a lamp post body 11, within which an adjustment component 12 is provided. The adjustment component 12 is connected to the lamp base plate 2. A symmetrical set of guide frames 4 is provided on the side of the lamp post body 11, and a sealing component 5 is provided on the guide frames 4. The adjustment component 12 in the lamp post assembly 1 drives the upper parts of the lamp post assembly 1 to move up and down, thereby facilitating subsequent maintenance and repair.
[0044] See Figure 3 Specifically, the control assembly 12 includes a sliding motor 121, the driving end of which is provided with a sliding shaft 122. A movable threaded slider 123 is provided on the sliding shaft 122, which is threadedly engaged with the sliding shaft 122. The threaded slider 123 abuts against the lamp post body 11 and is connected to the lamp base plate 2. The front end face of the threaded slider 123 is connected to the monitor 6. A controller 13 is provided on the lamp post body 11. When the sliding motor 121 in the control assembly 12 is activated, it drives the sliding shaft 122 to rotate, thereby causing the threaded slider 123 and the parts on the upper side of the lamp post assembly 1 to move up and down, facilitating subsequent maintenance and repair.
[0045] Optionally, controller 13 uses a Siemens PLC controller to achieve the control of the motor.
[0046] See Figures 5-6 Specifically, the sealing assembly 5 includes an electric telescopic rod 51, with a dustproof plate 52 at one extended end. The dustproof plate 52 is located on the front side of the lamp post body 11. The dustproof plate 52 has a set of symmetrical guide cavities 53. The dustproof plate 52 has a main housing 54, which is located on the side of the guide cavities 53. The main housing 54 has a telescopic cavity 56 inside. The main housing 54 has a telescopic spring 55, and the other end of the telescopic spring 55 has a push block 57. The push block 57 is located inside the telescopic cavity 56 and can block the guide cavity 53. When maintenance is not required, the threaded slider 123 moves upward along the sliding shaft 122 to the uppermost position. At this time, the electric telescopic rod 51 in the sealing assembly 5 drives the dustproof plate 52 to move towards each other. The guide cavity 53 on the upper side of the dustproof plate 52 is just locked on the threaded slider 123, and the push block 57 blocks the lower guide cavity 53 due to the action of the telescopic spring 55. When maintenance is required, the movement of the lower electric telescopic rod 51 is the same as above, thus ensuring that the symmetrical dustproof plate 52 and the lamp post body 11 cover the sliding shaft 122, thereby preventing dust from affecting the sliding shaft 122.
[0047] Optionally, the electric telescopic rod 51 uses the LINAK LA36-200 model, ensuring that the dustproof plate 52 can be moved.
[0048] Specific workflow:
[0049] In use, staff can remotely monitor the lighting cavity 7 via monitor 6, observing the lighting fixtures 24 that illuminate the cavity 7 at night to ensure their illumination status. If the brightness of the lighting fixtures 24 is insufficient, the pneumatic telescopic rod 222 of the front pushing component 22 starts to drive the pushing block 223, electric suction cup 23, and lighting fixture 24 to move away from the socket 25. When they are away from the socket 25, the rotating motor 211 in the rotating component 21 starts, driving the rotating shaft 212 and rotating wheel 213 to rotate, thereby changing the position of the pushing component 22 and lighting fixture 24 in symmetrical positions. When the position change is completed, the pneumatic telescopic rod 222 on one side of the socket 25 begins to extend, thereby driving the lighting fixture 24 to be inserted into the socket 25, thus realizing the remote replacement of the lighting fixture 24.
[0050] Furthermore, since the waste chamber 28 is located on the path of the rotating disc 213, it facilitates the collection of scrapped lamps 24, thereby ensuring the smooth replacement of lamps 24.
[0051] When maintenance is not required, the sliding motor 121 in the control assembly 12 starts, driving the threaded slider 123 to move upward along the sliding shaft 122 to the uppermost position. At this time, the electric telescopic rod 51 in the sealing assembly 5 drives the dustproof plate 52 to move towards each other. The guide cavity 53 on the upper side of the dustproof plate 52 is just locked on the threaded slider 123, and the push block 57 blocks the lower guide cavity 53 due to the action of the telescopic spring 55. When maintenance is required, the sliding motor 121 in the control assembly 12 starts in reverse, driving the threaded slider 123 to move downward along the sliding shaft 122 to the bottom. At this time, the electric telescopic rod 51 repeats the above movement, thereby ensuring that the symmetrical dustproof plate 52 and the lamp post body 11 cover the sliding shaft 122, thus preventing dust from affecting the sliding shaft 122 and ensuring that the height of all parts on the solar panel 3 and the lamp base plate 2 can be adjusted.
[0052] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An integrated solar street light, comprising a lamp post assembly (1), wherein the lamp post assembly (1) is provided with a lamp base plate (2) on its top, characterized in that: The base plate (2) of the lamp is provided with a rotating component (21), and the rotating component (21) is provided with a symmetrical set of pushing components (22). The pushing components (22) are located between the base plate (2) of the lamp and the rotating component (21). The lamp (24) is provided below the pushing components (22). The pushing components (22) and the lamp (24) are detachably connected. The base plate (2) of the lamp is provided with a socket (25), and the socket (25) cooperates with the lamp (24).
2. The integrated solar street light according to claim 1, characterized in that: The lamp post assembly (1) is provided with a monitor (6), and the lamp base plate (2) is provided with an illumination cavity (7). The illumination cavity (7) is directly opposite the lamp (24) on the front side, and the monitor (6) faces the illumination cavity (7).
3. The integrated solar street light according to claim 1, characterized in that: The rotating assembly (21) includes a rotating motor (211), which is located inside the lamp base plate (2). The driving end of the rotating motor (211) is provided with a rotating shaft (212), which is located above the lamp base plate (2). A rotating wheel (213) is provided on the rotating shaft (212).
4. The integrated solar street light according to claim 1, characterized in that: The pushing component (22) includes a positioning block (221), which is connected to a rotating wheel (213). The positioning block (221) is located between the lamp base plate (2) and the rotating wheel (213). The end of the positioning block (221) facing the socket (25) is provided with a pneumatic telescopic rod (222). The extended end of the pneumatic telescopic rod (222) is provided with a pushing block (223). The pushing block (223) is provided with several sets of electric suction cups (23), which adsorb the lamp (24).
5. The integrated solar street light according to claim 1, characterized in that: The lamp base plate (2) is provided with a lifting cavity (273) and a waste cavity (28). The waste cavity (28) is located on the path of the lamp (24) rotation. The lamp base plate (2) is provided with a support frame (26) at the bottom. The support frame (26) is connected to the lamp base plate (2) by screws. The support frame (26) is provided with a power component (27). The side end of the support frame (26) is provided with a disassembly plate (29). The disassembly plate (29) covers the waste cavity (28).
6. The integrated solar street light according to claim 5, characterized in that: The power assembly (27) includes a hydraulic telescopic cylinder (271), which is connected to the support frame (26). One end of the hydraulic telescopic cylinder (271) is provided with a push plate (272), which is inserted into the lifting cavity (273).
7. The integrated solar street light according to claim 1, characterized in that: The lamp post assembly (1) includes a lamp post body (11), and an adjustment component (12) is provided inside the lamp post body (11). The adjustment component (12) is connected to the lamp base plate (2). A set of symmetrical guide frames (4) is provided on the side of the lamp post body (11), and a sealing component (5) is provided on the guide frame (4).
8. The integrated solar street light according to claim 7, characterized in that: The control component (12) includes a sliding motor (121), the driving end of the sliding motor (121) is provided with a sliding shaft (122), the sliding shaft (122) is provided with a movable threaded slider (123), the threaded slider (123) is threadedly engaged with the sliding shaft (122), the threaded slider (123) abuts against the lamp post body (11), the threaded slider (123) is connected to the lamp base plate (2), the front end face of the threaded slider (123) is connected to the monitor (6), and the lamp post body (11) is provided with a controller (13).
9. An integrated solar street light according to claim 7, characterized in that: The sealing assembly (5) includes an electric telescopic rod (51), one end of which is provided with a dustproof plate (52). The dustproof plate (52) is located on the front side of the lamp post body (11). The dustproof plate (52) is provided with a set of symmetrical guide cavities (53). The dustproof plate (52) is provided with a main housing (54). The main housing (54) is located on the side of the guide cavity (53). The main housing (54) is provided with a telescopic cavity (56). The main housing (54) is provided with a telescopic spring (55). The other end of the telescopic spring (55) is provided with a push block (57). The push block (57) is located in the telescopic cavity (56). The push block (57) can block the guide cavity (53).