An intelligent lamp post assembly based on Internet of Things control
Through the intelligent lamp pole assembly controlled by the Internet of Things, the combination of electric telescopic rods and magnetic parts can achieve unmanned adjustment of the lamp pole height, solving the problems of cumbersome and damage in the existing technology, improving the adjustment stability and efficiency, and meeting diverse lighting and energy-saving needs.
Patent Information
- Application Number
- CN202411774350.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-05
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2044-12-05
AI Technical Summary
In the prior art, the lamp pole adjustment process is cumbersome, requires manual operation and is prone to damage to the lamp, which cannot meet the requirements of diversified lighting needs and energy conservation and emission reduction.
The smart light pole assembly based on the Internet of Things control is adopted. Through the cooperation of the electric telescopic rod and magnetic parts, height adjustment without manual adjustment is achieved, and auxiliary support is equipped to improve the stability of the adjustment process.
It realizes accurate height adjustment without manual operation, reduces the risk of lamp damage, improves the stability and efficiency of the adjustment process, and meets the requirements of diversified lighting needs and energy conservation and emission reduction.
Smart Images

Figure CN119532696B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of lamps, and in particular to an intelligent lamp pole assembly based on Internet of Things control. Background Art
[0002] With the rapid development of science and technology and the accelerating pace of urbanization, cities are expanding, and the number of lighting fixtures is increasing. Traditional lighting management methods face numerous challenges. On the one hand, manual inspections and manual control of lighting fixtures, including turning them on and off, and adjusting parameters like brightness and height, are not only labor-intensive and inefficient, but also struggle to accurately and promptly meet diverse lighting needs in diverse scenarios. For example, they often struggle to cope with temporary events, emergencies, or seasonal and time-of-day lighting changes. On the other hand, the growing awareness of energy conservation and emission reduction has necessitated precise control of lighting energy consumption, but traditional methods struggle to achieve refined energy consumption monitoring and optimization. Furthermore, the continued maturity and widespread application of advanced technologies such as the Internet of Things, big data, and cloud computing have created favorable technical conditions for the intelligent networking of lighting fixtures. Against this backdrop, intelligent lighting networking has emerged. By connecting numerous lighting fixtures to a network, intelligent systems enable remote monitoring, automatic adjustment, and energy consumption analysis, thereby improving the overall efficiency and quality of lighting management and better meeting the needs of modern urban development and people's lives.
[0003] With the help of Internet of Things technology, managers can use mobile phones, computers and other terminal devices, no matter where they are, as long as they can connect to the Internet, they can remotely control the switching and intensity of smart lights, so as to meet the different needs of different users for lamp pole height in different scenarios. However, the adjustment of lamp pole components in the existing technology still requires operators to use tools, such as wrenches, etc., and the corresponding adjustment part is generally at the bottom of the lamp pole or a specific adjustment node. Then, by rotating the wrench, the lamp pole structure is raised or lowered to achieve a change in height. In this process, the operator needs to use both hands at the same time to perform the adjustment action, and the upper structures such as the lamp head and lampshade also move accordingly. During the operation, both hands are used to support the lamp pole. Operating with both hands at the same time not only requires certain coordination, but also occupies the attention of the workers during the adjustment process, making it impossible for them to take into account interference from other surrounding factors. Structures that are not directly in contact with lamps and other structures are prone to change in position due to gravity transfer, resulting in a cumbersome adjustment process and the lamps are easily damaged. Summary of the Invention
[0004] Technical problems solved
[0005] In view of the above-mentioned shortcomings of the prior art, the present invention provides an intelligent lamp pole assembly based on Internet of Things control, which can effectively solve the problem of tedious manual adjustment during the prior art lamp pole adjustment process.
[0006] Technical solution
[0007] To achieve the above object, the present invention is realized through the following technical solutions:
[0008] The present invention provides an intelligent lamp post assembly based on Internet of Things control, including:
[0009] A pole body main body, with a lighting part provided at the top of the pole body main body;
[0010] A fixed base, the bottom end of the pole body main body is fixedly connected to the top end of the fixed base, an activity part is provided at the top end of the fixed base, the top end of the activity part is fixedly connected to the lighting part, the activity part is embedded in the inner wall of the pole body main body, a limiting part is movably connected to the inner wall of the pole body main body, the movement of the activity part to different positions in the inner wall of the pole body main body drives the limiting part to slide in the pole body main body, and the movement of the limiting part limits the position of the activity part to realize the height adjustment of the lighting part;
[0011] Among them, an auxiliary support part for assisting in supporting the pole body main body during the adjustment process is movably connected to the outside of the pole body main body, and a first support frame and a second support frame are symmetrically arranged on the outer wall of the pole body main body respectively.
[0012] Further, the first support frame is arranged at the lower one-third position of the pole body main body, the second support frame is arranged at the upper one-third position of the pole body main body, and the connection structures of the first support frame and the second support frame are the same.
[0013] Further, limiting grooves are opened at the upper one-third position and the lower one-third position of the inner wall of the pole body main body, the inner wall of the limiting groove is movably connected to the limiting part, and a limiting ring is opened at the top end of the pole body main body.
[0014] Further, the activity part includes an electric telescopic rod fixedly connected to the middle of the top end of the fixed base, a first magnetic part and a second magnetic part are respectively sleeved on the outer surface of the electric telescopic rod, the first magnetic part and the second magnetic part are distributed from bottom to top, and the first magnetic part and the second magnetic part are perpendicular to each other, and the top end of the first magnetic part is fixedly connected to a support plate fixedly connected to the lighting part.
[0015] Further, the limiting part includes a positioning block snap-fitted with the limiting groove, the other end of the positioning block is fixedly connected to a positioning rod, the positioning rod is slidably connected to the inner wall of the limiting groove, a telescopic spring is sleeved on the outer wall of the positioning rod, one end of the telescopic spring close to the center of the pole body main body is fixedly connected to an electromagnetic block, a fixing frame is fixedly connected to the circumferential outer surface of the electromagnetic block, and the other end of the fixing frame is fixedly connected to a positioning frame.
[0016] Further, the auxiliary support member further includes a pressing plate flexibly connected to one end of the telescopic spring. The bottom end of the pressing plate is fixedly connected to the tops of the first support frame and the second support frame respectively. A rotating shaft penetrates through the connection between the pressing plate and the first support frame and the second support frame. Both ends of the rotating shaft are rotatably connected to the side grooves formed in the outer wall of the rod body main body.
[0017] Further, the lighting portion includes a lamp. A support rod is fixedly connected to the top end of the lamp. A lamp post is fixedly connected to the bottom end of the support rod. The lamp post is in sealed sliding connection with the limiting ring. A limiting plate fixedly connected to the support plate is fixedly connected to the bottom end of the lamp post.
[0018] Beneficial effects
[0019] The technical solution provided by the present invention has the following beneficial effects compared with the prior art:
[0020] The present invention is provided with a movable member and a lighting portion. When it is necessary to adjust the height gear of the rod body main body, first start the electric telescopic rod. When the rod body main body is adjusted to the first gear height, the electric telescopic rod extends to drive the first magnetic member to move upward until the first magnetic member moves to a position flush with the limiting member at one-third of the rod body main body. The first magnetic member enters the magnetic field space of the electromagnetic block, and the first magnetic member attracts the electromagnetic block, causing the electromagnetic block to move towards a position closer to the center of the circle of the rod body main body. The movement of the electromagnetic block drives the fixed frame to move, and the movement of the fixed frame drives the positioning frame to move. The positioning frame moves to the lower surface of the support plate to support the support plate located at this position. At the same time as the electromagnetic block moves, it drives the positioning rod to move, and the positioning rod drives the positioning block to move synchronously. The positioning block is engaged with the limiting groove to ensure the smooth movement of the positioning rod. The side of the electromagnetic block is no longer in contact with the inner wall of the rod body main body, and the elastic deformation of the telescopic spring gradually recovers. The telescopic spring drives the pressing plate to rotate clockwise, and the pressing plate drives the first support frame fixedly connected thereto to rotate around the rotating shaft. Therefore, when the electric telescopic rod extends, it drives the limiting plate to move upward through the support plate, the limiting plate drives the lamp post to move upward, and the lamp post drives the lamp to move upward through the support rod, so as to realize the expansion of the first support frame of the auxiliary support member while increasing the height of the lighting portion. The first support frame rotates on the inner wall of the side groove, and the rotation of the first support frame drives the support foot to slide along the inner wall of the side groove. There is relative rotation between the first support frame and the support foot. While the first support frame is tilted, the support foot slides on the upper surface of the fixed base, achieving easy adjustment of the height of the lighting portion to the first gear, and at the same time expanding the auxiliary support member during this process, increasing the contact area between the rod body main body and the fixed base, and improving the stability of the device during the adjustment process.
[0021] The present invention can accurately raise the lighting part without manual adjustment by the staff. The limiting parts perpendicular to each other inside will not cause movement interference to the limiting parts that have extended in the first gear when lifted to the second gear, and can support them while lifting. At the same time, by setting auxiliary support parts, corresponding rotation occurs while the limiting parts extend, achieving the purpose of increasing the stability of the adjustment process.
[0022] When the present invention adjusts downward from the second gear in the subsequent height, the electric telescopic rod drives the magnetic part two and the magnetic part one to move downward in sequence. When the electric telescopic rod drives the magnetic part two to move downward, the support plate fixedly connected to the electric telescopic rod also moves downward synchronously. While the electric telescopic rod moves downward, the current directions in the magnetic part two and the magnetic part one change, and the magnetic part two and the magnetic part one no longer attract the electromagnetic block, but repel it. While lowering the height of the lighting part, the unfolded support frame two is also retracted into the rod body main body. During the process of lowering and reducing gears, the limiting parts move to the initial position, but the vibration generated during lowering can still be supported by the unfolded support frame one. At the same time, the positioning rod moves downward to the upper surface of the positioning frame, and the flexible material on the surface of the positioning frame buffers the lower surface of the downward-moving support plate, avoiding damage to the device caused by impact. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0024] Figure 1 It is a schematic diagram of the overall structure of the embodiment of the present invention;
[0025] Figure 2 It is a schematic diagram of the connection structure of the lighting part of the embodiment of the present invention;
[0026] Figure 3 It is a schematic cross-sectional view of the inner wall structure of the rod body main body of the embodiment of the present invention;
[0027] Figure 4 It is a split schematic diagram of the connection structure of the limiting part and the auxiliary support part of the embodiment of the present invention;
[0028] Figure 5 It is a schematic diagram of the connection structure of the moving part of the embodiment of the present invention;
[0029] Figure 6 It is a schematic cross-sectional view of the connection structure of the inner wall of the rod body main body of the embodiment of the present invention except for the limiting part.
[0030] The reference numerals in the figure respectively represent: 1, pole body main body; 11, side groove; 12, limit ring; 13, limit groove; 2, fixed base; 3, lighting part; 31, lamp; 32, support rod; 33, lamp post; 34, limit plate; 5, movable part; 51, electric telescopic rod; 52, magnetic part one; 53, magnetic part two; 54, support plate; 6, limiting part; 61, electromagnetic block; 62, positioning frame; 63, fixing frame; 64, positioning rod; 65, positioning block; 66, telescopic spring; 7, auxiliary support part; 71, support frame one; 72, support frame two; 73, support foot; 74, rotating shaft; 75, abutting plate. Detailed implementation manners
[0031] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0032] The present invention will be further described below with reference to the embodiments. Embodiment
[0033] Please refer to Figures 1-6 , the present invention provides a technical solution for an intelligent lamp post assembly based on Internet of Things control: As Figure 1 shown, the device includes a pole body main body 1, a fixed base 2 and a lighting part 3. The lighting part 3, the pole body main body 1 and the fixed base 2 are distributed from top to bottom in sequence. The structure refers to the intelligent lamp in the prior art, which generally consists of several main parts such as a pole body part with high strength and suitable for outdoor environment, a lighting system with high efficiency, energy saving and multi-mode adjustment, an intelligent control module including a core controller and a communication unit, a sensor system covering various environmental and functional sensors, a mounting device part such as an intelligent mounted display screen, a charging pile, a security monitoring device, etc., and a power supply and power supply system responsible for power distribution and guarantee.
[0034] As Figure 1 and Figure 5As shown, a movable member 5 is provided at the top of the fixed base 2. The movable member 5 is embedded in the inner wall of the rod body main body 1. The movable member 5 includes an electric telescopic rod 51 fixedly connected to the middle of the top of the fixed base 2. The electric telescopic rod 51 includes an outer rod and an inner rod. A first magnetic member 52 and a second magnetic member 53 are sleeved on the outer surface of the inner rod. The first magnetic member 52 and the second magnetic member 53 are distributed in sequence from bottom to top. The first magnetic member 52 and the second magnetic member 53 are symmetrically distributed with the center of the electric telescopic rod 51 as the center, and the first magnetic member 52 and the second magnetic member 53 are perpendicular to each other in the horizontal direction. The maximum height difference between the first magnetic member 52 and the second magnetic member 53 is equal to one-third of the height of the inner wall of the rod body main body 1. The top of the electric telescopic rod 51 is fixedly connected with a support plate 54.
[0035] As Figure 3 , Figure 4 Figure 6 As shown, limiting grooves 13 are provided at the upper one-third position and the lower one-third position of the inner wall of the rod body main body 1. The inner wall of the limiting groove 13 is movably connected with a limiting member 6. The limiting member 6 includes a positioning rod 64 slidably connected to the limiting groove 13. Rectangular grooves are evenly opened on the inner wall of the limiting groove 13, and the rectangular grooves are engaged with positioning blocks 65 evenly fixed on the circumferential outer surface of the positioning rod 64. One end of the positioning rod 64 close to the center of the rod body main body 1 is fixedly connected with an electromagnetic block 61. Fixing frames 63 are symmetrically fixed on the circumferential outer surface of the electromagnetic block 61. The fixing frames 63 are L-shaped. One end of the fixing frame 63 far from the electromagnetic block 61 is fixedly connected with a positioning frame 62. The distance between the positioning frames 62 is smaller than the diameter of the support plate 54. A telescopic spring 66 is sleeved on the outside of the positioning rod 64. The other end of the telescopic spring 66 is provided with an auxiliary support member 7. In the initial state, the electromagnetic blocks 61 that are symmetrically arranged repel each other. One end of the positioning rod 64 far from the center of the rod body main body 1 is in contact with the auxiliary support member 7, so that the telescopic spring 66 is elastically deformed and stretched, and one end of the electromagnetic block 61 far from the center of the rod body main body 1 is in contact with the inner wall of the rod body main body 1.
[0036] Reference Figure 1 , Figure 3 , Figure 4 and Figure 6, on the outer wall of the rod body main body 1, there are side grooves 11 provided. The side grooves 11 are set in two sizes and respectively embed a first support frame 71 and a second support frame 72. At corresponding positions on the inner wall of the rod body main body 1, there are respectively provided limit grooves 13 for limiting the limiting member 6. At the top end of the inner wall of the side groove 11, there is a rotating shaft 74 rotatably connected. At the top ends of both the first support frame 71 and the second support frame 72, there is a pressing plate 75 fixedly connected. The pressing plate 75 is set to be in an inclined state from top to bottom. The position where the first support frame 71 or the second support frame 72 is fixedly connected to the pressing plate 75 penetrates through the rotating shaft 74. The fixedly connected first support frame 71 or second support frame 72 and the pressing plate 75 can rotate around the rotating shaft 74. One end of the pressing plate 75 is elastically connected with a telescopic spring 66. When the electromagnetic block 61 is in contact with the inner wall of the rod body main body 1, the positioning rod 64 presses the pressing plate 75, so that the first support frame 71 maintains a vertical state and is in contact with the inner wall of the side groove 11. Therefore, when the moving member 5 is not activated, the first support frame 71 is completely embedded in the inner wall of the side groove 11. The bottom ends of the first support frame 71 and the second support frame 72 are both rotatably connected with support feet 73 through the penetrating knob springs. The support feet 73 are flush with the upper surface of the fixed base 2, and as the first support frame 71 or the second support frame 72 rotates, the lower surface of the support feet 73 is always flush with the upper surface of the fixed base 2.
[0037] Reference Figure 1 , Figure 2 and Figure 6 , at the top end of the inner wall of the rod body main body 1, there is a limit ring 12 fixedly connected. The inner wall of the limit ring 12 is in sliding seal with the lamp post 33 of the lighting part 3. The lighting part 3 further includes a support rod 32 fixedly connected to the top end of the lamp post 33. On the other side of the bottom end of the support rod 32, there is a lamp 31 fixedly connected. At the bottom end of the lamp post 33, there is a limit plate 34 fixedly connected. The bottom end of the limit plate 34 is fixedly connected to the top end of the support plate 54. In the initial state, the support plate 54 is located at the lower part of the inner wall of the rod body main body 1, and at this time, the support plate 54 is located below the limiting member 6 which divides the inner wall of the rod body main body 1 into three equal parts.
[0038] When it is necessary to adjust the height gear of the rod body main body 1, first start the electric telescopic rod 51. When adjusting the rod body main body 1 to the first gear height, the electric telescopic rod 51 extends and drives the first magnetic member 52 to move upward until the first magnetic member 52 moves to a position flush with the limiting member 6 at one-third of the rod body main body 1. The first magnetic member 52 enters the magnetic field space of the electromagnetic block 61, and the first magnetic member 52 attracts the electromagnetic block 61, causing the electromagnetic block 61 to move towards a position closer to the center of the circle of the rod body main body 1. The movement of the electromagnetic block 61 drives the movement of the fixing frame 63, the movement of the fixing frame 63 drives the movement of the positioning frame 62, and the positioning frame 62 moves to the lower surface of the support plate 54 to support the support plate 54 located at this position. At the same time as the electromagnetic block 61 moves, it drives the movement of the positioning rod 64, and the positioning rod 64 drives the positioning block 65 to move synchronously. The positioning block 65 is engaged with the limiting groove 13 to ensure the smooth movement of the positioning rod 64. The side of the electromagnetic block 61 is no longer in contact with the inner wall of the rod body main body 1, and the elastic deformation of the telescopic spring 66 gradually recovers. The telescopic spring 66 drives the abutting plate 75 to rotate clockwise, and the abutting plate 75 drives the first support frame 71 fixedly connected thereto to rotate around the rotating shaft 74. Therefore, when the electric telescopic rod 51 extends and drives the limiting plate 34 to move upward through the support plate 54, the limiting plate 34 drives the lamp post 33 to move upward, and the lamp post 33 drives the lamp 31 to move upward through the support rod 32, thereby realizing the expansion of the first support frame 71 of the auxiliary support member 7 while increasing the height of the lighting part 3. The first support frame 71 rotates inside the inner wall of the side groove 11, and the rotation of the first support frame 71 drives the support foot 73 to slide along the inner wall of the side groove 11. There is relative rotation between the first support frame 71 and the support foot 73. While the first support frame 71 is tilted, the support foot 73 slides on the upper surface of the fixed base 2, achieving an easy first-gear adjustment of the height of the lighting part 3, and at the same time expanding the auxiliary support member 7 during this process, increasing the contact area between the rod body main body 1 and the fixed base 2, and improving the stability of the device during the adjustment process.
[0039] When adjusting the rod body main body 1 to the second gear height, the electric telescopic rod 51 continues to extend and drives the second magnetic member 53 to move upward until the second magnetic member 53 moves to a position flush with the limiting member 6 at two-thirds of the rod body main body 1. The second magnetic member 53 enters the magnetic field space of the electromagnetic block 61, and the second magnetic member 53 attracts the electromagnetic block 61, causing the electromagnetic block 61 to move towards a position closer to the center of the circle of the rod body main body 1. The movement of the electromagnetic block 61 drives the fixed frame 63 to move, the movement of the fixed frame 63 drives the positioning frame 62 to move, and the positioning frame 62 moves to the lower surface of the support plate 54 to support the support plate 54 located at this position. At the same time as the electromagnetic block 61 moves, it drives the positioning rod 64 to move, and the positioning rod 64 drives the positioning block 65 to move synchronously. The positioning block 65 engages with the limiting groove 13 to ensure the smooth movement of the positioning rod 64. The side of the electromagnetic block 61 is no longer in contact with the inner wall of the rod body main body 1, and the elastic deformation of the telescopic spring 66 gradually recovers. The telescopic spring 66 drives the abutting plate 75 to rotate clockwise, and the abutting plate 75 drives the second support frame 72 fixedly connected to it to rotate around the rotating shaft 74. Therefore, when the electric telescopic rod 51 extends and drives the limiting plate 34 to move upward through the support plate 54, the limiting plate 34 drives the lamp post 33 to move upward, and the lamp post 33 drives the lamp 31 to move upward through the support rod 32. Thus, while increasing the height of the lighting part 3, the second support frame 72 of the auxiliary support member 7 is unfolded. The second support frame 72 rotates inside the inner wall of the side groove 11, and the rotation of the second support frame 72 drives the support foot 73 to slide along the inner wall of the side groove 11. There is relative rotation between the second support frame 72 and the support foot 73. While the first support frame 71 is tilted, the support foot 73 slides on the upper surface of the fixed base 2, achieving easy second-gear adjustment of the height of the lighting part 3, and at the same time unfolding the auxiliary support member 7 during this process, increasing the contact area between the rod body main body 1 and the fixed base 2, and improving the stability of the device during the adjustment process.
[0040] Without manual adjustment by the staff, the lighting part 3 can be accurately raised. The mutually perpendicular limiting members 6 inside will not cause movement interference to the limiting members 6 that have already extended in the first gear when lifted to the second gear, and can support them while lifting. At the same time, by setting the auxiliary support member 7, corresponding rotation occurs while the limiting member 6 extends, achieving the purpose of increasing the stability of the adjustment process.
[0041] When the subsequent height is adjusted downward from the second gear, the electric telescopic rod 51 drives the second magnetic member 53 and the first magnetic member 52 to move downward in sequence. When the electric telescopic rod 51 drives the second magnetic member 53 to move downward, the support plate 54 fixedly connected to the electric telescopic rod 51 also moves downward synchronously. While the electric telescopic rod 51 moves downward, the current directions in the second magnetic member 53 and the first magnetic member 52 change. The second magnetic member 53 and the first magnetic member 52 no longer attract the electromagnetic block 61, but repel it. While adjusting the height of the lighting unit 3 downward, the unfolded second support frame 72 is also retracted into the rod body main body 1. During the downward shift and gear reduction process, the limiting member 6 moves to the initial position to facilitate the downward reciprocation. However, the vibration generated during the downward movement can still be supported by the unfolded first support frame 71. At the same time, the positioning rod 64 moves downward to the upper surface of the positioning frame 62, and the flexible material on the surface of the positioning frame 62 buffers the lower surface of the downward moving support plate 54 to prevent the device from being damaged due to impact and improve the practicality of the device.
[0042] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements will not cause the essence of the corresponding technical solutions to deviate from the protection scope of the technical solutions of the various embodiments of the present invention.
Claims
1. An intelligent lamp post assembly based on Internet of Things control, characterized in that, include: A rod body (1), wherein a lighting portion (3) is provided at the top end of the rod body (1); A fixed base (2), the bottom end of the rod body (1) is fixedly connected to the top end of the fixed base (2), a movable part (5) is provided at the top end of the fixed base (2), the top end of the movable part (5) is fixedly connected to the lighting part (3), the movable part (5) is embedded in the inner wall of the rod body (1), the inner wall of the rod body (1) is movably connected to a limiting part (6), the movable part (5) moves to different positions on the inner wall of the rod body (1) to drive the limiting part (6) to slide in the rod body (1), the limiting part (6) moves to limit the position of the movable part (5), thereby realizing height adjustment of the lighting part (3); The outer side of the rod body (1) is movably connected to an auxiliary support member (7) for auxiliary support of the rod body (1) during the adjustment process, and the auxiliary support member (7) includes a support frame 1 (71), a support frame 2 (72), a rotating shaft (74) and a support plate (75); the outer wall of the rod body (1) is provided with a side groove (11), and the side groove (11) is set to two sizes, and the support frame 1 (71) and the support frame 2 (72) are embedded respectively. The top end of the inner wall of the side groove (11) is rotatably connected to the rotating shaft (74), and the top ends of the support frame 1 (71) and the support frame 2 (72) are fixedly connected to the support plate (75), and the connection between the support plate (75) and the support frame 1 (71) and the support frame 2 (72) is penetrated by the rotating shaft (74); The first support frame (71) is arranged at a position where the lower part of the rod body (1) is divided into three equal parts, and the second support frame (72) is arranged at a position where the upper part of the rod body (1) is divided into three equal parts; Limiting grooves (13) are provided at the upper third of the inner wall of the rod body (1) and the lower third of the inner wall of the rod body (1), and the inner wall of the limiting groove (13) is movably connected to the limiting member (6); The movable part (5) comprises an electric telescopic rod (51) fixedly connected to the middle of the top of the fixed base (2); the outer surface of the electric telescopic rod (51) is respectively provided with a magnetic part 1 (52) and a magnetic part 2 (53); the magnetic part 1 (52) and the magnetic part 2 (53) are distributed in sequence from bottom to top; the top of the electric telescopic rod (51) is fixedly connected to a support plate (54) fixedly connected to the lighting part (3); The limiting member (6) includes a positioning rod (64) slidably connected to the limiting groove (13), the inner wall of the limiting groove (13) is evenly provided with rectangular grooves, and the rectangular grooves are snap-fitted with a positioning block (65) evenly fixed on the outer circumference of the positioning rod (64). The end of the positioning rod (64) close to the center of the rod body (1) is fixedly connected to the electromagnetic block (61), the outer circumference of the electromagnetic block (61) is fixedly connected to the fixing frame (63), and the end of the fixing frame (63) away from the electromagnetic block (61) is fixedly connected to the positioning frame (62). The positioning rod (64) is provided with a telescopic spring (66) on the outside, and the end of the telescopic spring (66) away from the electromagnetic block (61) is connected to the abutment plate (75).
2. The smart light pole assembly based on Internet of Things control according to claim 1, characterized in that: The auxiliary support member (7) further comprises a support foot (73), the bottom ends of the support frame 1 (71) and the support frame 2 (72) are both rotatably connected to the support foot (73) via a knob spring provided therethrough, and the support foot (73) is flush with the upper surface of the fixed base (2).
3. The intelligent lamp post assembly based on Internet of Things control according to claim 2, wherein: A limiting ring (12) is provided at the top end of the inner wall of the rod body (1); the lighting portion (3) comprises a lamp (31); the top end of the lamp (31) is fixedly connected to a support rod (32); the bottom end of the support rod (32) is fixedly connected to a lamp post (33); the lamp post (33) and the limiting ring (12) are sealed and slidable; the bottom end of the lamp post (33) is fixedly connected to a limiting plate (34) fixedly connected to a support plate (54).
Citation Information
Patent Citations
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CN118893321A
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