Sectional type intelligent lamp post based on modular mechanical connection and assembly method thereof
Through the modular mechanically connected segmented smart lamp pole design, the problem of difficult installation, high cost and difficult maintenance of solar panels is solved, efficient solar energy absorption and power generation is achieved, installation and maintenance costs are reduced, and it is suitable for street lights.
Patent Information
- Application Number
- CN202510849316.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-23
- Publication Date
- 2025-08-08
AI Technical Summary
The existing solar panels are difficult to install on street lights, costly, and have limited absorption capacity, high maintenance costs, easy to be contaminated by dust, and unbalanced power generation efficiency.
The segmented smart lamp pole design adopts a modular mechanical connection. Multiple solar panels are connected through connecting parts and reinforcements to form an enclosure cavity, increasing the lighting area, and controlling the lamps through an electrical control box to achieve rapid assembly and maintenance.
It significantly improves the absorption capacity of solar panels, reduces installation and maintenance costs, ensures effective power generation at different light angles, extends the lighting time of the lamp, and is easy to disassemble and assembly and maintenance.
Smart Images

Figure CN120444594A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of solar panel technology, and more specifically, to a segmented smart light pole based on modular mechanical connections. Furthermore, the present invention relates to an assembly method for the segmented smart light pole based on modular mechanical connections. Background Art
[0002] In existing technology, solar panels are typically a single, straight-frame structure placed on top of streetlights. However, this common installation solution presents significant installation difficulties and high costs. Furthermore, due to the limited load capacity of streetlight poles, the area and weight of the solar panels placed on top of the poles are limited, limiting the solar panel's ability to absorb solar energy. Furthermore, since the side of the solar panel that absorbs sunlight is typically facing the wind, it is easily contaminated by dust and sand, further reducing the panel's ability to absorb solar energy. Furthermore, if the solar panel on top of the pole requires maintenance and cleaning, the corresponding maintenance costs are also very high.
[0003] In summary, how to provide a solar panel structure suitable for use in street lamps, which is convenient and efficient to assemble and disassemble, and has low installation and maintenance costs, is an urgent problem to be solved by those skilled in the art. Summary of the Invention
[0004] In view of this, the purpose of the present invention is to provide a segmented smart lamp pole based on modular mechanical connection, which is suitable for use as a street lamp, and has convenient and efficient disassembly and assembly, low installation and maintenance costs, and can be promoted for use.
[0005] Another object of the present invention is to provide an assembly method for the above-mentioned segmented smart lamp pole based on modular mechanical connection.
[0006] In order to achieve the above object, the present invention provides the following technical solutions:
[0007] A segmented smart lamp pole based on modular mechanical connection, characterized by comprising:
[0008] a light pole having a light fixture provided on one side of its top;
[0009] Solar panels, at least four of which are sequentially arranged along the circumference of the lamp pole to form an enclosing cavity sleeved on the lamp pole;
[0010] a connecting piece, which is arranged along the length direction of the surrounding cavity, and is used to detachably connect two adjacent solar panels;
[0011] A reinforcement member, used for detachably fixing the ends of the plurality of solar panels;
[0012] An electric control box is arranged on the top of the lamp pole. The solar panel is connected to the electric control box to charge the electric control box. The electric control box is connected to the lamp to control the lighting and extinguishing of the lamp.
[0013] In one embodiment, the solar panel includes two first frames that are relatively distributed along the length direction of the solar panel and two second frames that are relatively distributed along the width direction of the solar panel, and the second frame is vertically arranged between the two first frames; the first frame and the connecting member are plug-connected, and the second frame and the reinforcement member are fixedly connected.
[0014] In one embodiment, the first frame is provided with a card slot along the length direction, a limiting cavity is provided inside the card slot, and the size of the limiting cavity is larger than the notch size of the card slot;
[0015] The connecting member is provided with two symmetrically distributed clamping strips for clamping with the clamping slots. The clamping strips are provided with a limiting portion clamped with the limiting cavity, and the two clamping strips of the same connecting member are respectively clamped with the clamping slots of two adjacent first frames.
[0016] In one embodiment, the first frame is provided with a recessed groove. When the first frames of the two connecting members are close to each other, the recessed grooves on the two adjacent first frames are combined to form a limiting groove. The connecting member is provided with a protrusion, and the protrusion is assembled in the limiting groove and cannot fall out of the notch of the limiting groove.
[0017] In one embodiment, the second frame is provided with two symmetrically distributed connecting ears, the connecting ears are provided with a first mounting hole, the reinforcement member is a circular ring member with an inner diameter larger than the outer diameter of the lamp pole, and the circular ring member is provided with a second mounting hole at a position aligned with the first mounting hole. After the first mounting hole and the second mounting hole are aligned, they are used to pass through the locking member.
[0018] In one embodiment, the reinforcement is provided with mounting grooves at equal intervals along the circumferential direction, the same number as the number of the solar panels, a mounting block is provided between two adjacent mounting grooves, the second mounting hole is provided in the mounting groove, a connecting block is provided in the mounting groove, and the connecting block is provided with a third mounting aligned with the second mounting hole.
[0019] In one embodiment, it also includes a rotating bracket for driving the lamp to rotate and a driving member for driving the rotating bracket to rotate. The rotating bracket is rotatably arranged on the top of the lamp pole, the driving member is arranged in the lamp pole, and the driving member is connected to the electrical control box.
[0020] In one embodiment, the first frame and the second frame are both made of aluminum alloy.
[0021] An assembly method, applied to any of the above-mentioned segmented smart lamp poles based on modular mechanical connections, comprising:
[0022] A plurality of solar panels are sequentially arranged along the circumference of the lamp pole, and the first frames of two adjacent solar panels are connected by a connector to form an enclosing cavity sleeved on the lamp pole;
[0023] The reinforcement member fixes the second frame of the plurality of solar panels;
[0024] The enclosing cavity is sleeved on the lamp pole, and an electric control box is installed on the top of the lamp pole, and a lamp is installed on one side of the top of the lamp pole;
[0025] The lamp and the solar panel are both connected to the electric control box.
[0026] When using the segmented smart lamp pole based on modular mechanical connection provided by the present invention, first, multiple solar panels can be arranged in sequence along the circumference of the lamp pole, and the first frames of two adjacent solar panels are connected by a connector to form an enclosing cavity sleeved on the lamp pole; then, the second frames of the multiple solar panels are fixed by a reinforcement member; thereafter, the enclosing cavity is sleeved on the lamp pole, and an electric control box is installed on the top of the lamp pole and a lamp is installed on one side of the top of the lamp pole; finally, the solar panels and the electric control box are connected to charge the electric control box through the solar panels, and the electric control box and the lamp are connected to control the lighting and extinguishing of the lamp through the electric control box.
[0027] Compared to only setting up a single small-sized solar panel on the top of the lamp pole, the present application can form a polygonal combination (i.e., a polygonal enclosed cavity formed by at least four solar panels arranged in a circumferential array) at the lamp pole position of the street lamp, and can even replace the lamp pole of the traditional street lamp, significantly increasing the overall lighting area of the street lamp and improving the solar energy absorption capacity of the solar panel. The stronger the solar energy absorption capacity of the solar panel, the more sufficient the electrical control box can be charged, which helps to increase the lighting time of the lamp.
[0028] Furthermore, the two adjacent solar panels of the present application are detachably connected via connectors, and a snap-in connection method between the solar panels and the connectors is preferred, so that multiple solar panels can be quickly assembled to form an enclosure. The snap-in connection method also facilitates the subsequent maintenance of the solar panels, reducing maintenance costs. Moreover, the reinforcements can detachably fix the ends of multiple solar panels, which helps to improve the structural stability of the enclosure. In addition, there will be solar panels at any angle of the lamp pole to generate light and electricity. Even in the morning or evening when the light angle is low, the solar panels can still receive light well, alleviating the defect that the traditional fixed planar components have high power generation efficiency only during the high light period at noon and low power generation efficiency at other times.
[0029] In summary, the segmented smart lamp pole based on modular mechanical connection provided by the present invention is suitable for use as a street lamp, and is convenient and efficient to assemble and disassemble, with low installation and maintenance costs, and can be promoted for use.
[0030] In addition, the present invention also provides an assembly method for the above-mentioned segmented smart lamp pole based on modular mechanical connection. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are merely embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on the provided drawings without paying any creative work.
[0032] Figure 1 An exploded view of the segmented smart lamp pole based on modular mechanical connection provided by the present invention, excluding the lamp pole;
[0033] Figure 2 A schematic diagram of the structure of a segmented smart lamp pole based on modular mechanical connections, excluding the lamp pole;
[0034] Figure 3 for Figure 2 A partial enlarged view of
[0035] Figure 4 for Figure 2 The main view;
[0036] Figure 5 is a structural diagram of the connecting member, the first frame and the solar panel;
[0037] Figure 6 is a structural diagram of the connecting member and the first frame;
[0038] Figure 7 The figure is an assembly diagram of the assembly method.
[0039] Figure 1-Figure 7 middle:
[0040] 1 is the surrounding cavity, 2 is the solar panel, 21 is the first frame, 211 is the card slot, 2111 is the limiting cavity, 212 is the recessed groove, 22 is the second frame, 221 is the connecting ear, 3 is the connecting piece, 31 is the card strip, 32 is the limiting part, 33 is the protruding part, 4 is the reinforcement piece, 41 is the installation slot, 5 is the connecting block, and 6 is the limiting slot. DETAILED DESCRIPTION
[0041] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0042] The core of this invention is to provide a segmented smart light pole based on modular mechanical connections. This pole is suitable for street lighting applications and features convenient and efficient assembly and disassembly, low installation and maintenance costs, and is therefore suitable for widespread use. Another core of this invention is to provide an assembly method for this segmented smart light pole based on modular mechanical connections.
[0043] Please refer to Figures 1 to 3 This specific embodiment provides a segmented smart lamp pole based on modular mechanical connection, including:
[0044] a light pole having a light fixture provided on one side of its top;
[0045] Solar panels 2, at least four solar panels 2 are arranged in sequence along the circumference of the lamp pole to form an enclosing cavity 1 sleeved on the lamp pole;
[0046] A connecting member 3 is provided along the length direction of the surrounding cavity 1 and is used for detachably connecting two adjacent solar panels 2;
[0047] A reinforcement member 4, which is used to detachably fix the ends of the plurality of solar panels 2;
[0048] The electric control box is arranged at the top of the lamp pole. The solar panel 2 is connected to the electric control box to charge the electric control box. The electric control box is connected to the lamp to control the lighting and extinguishing of the lamp.
[0049] It should be noted that the first frame 21 and the second frame 22 can be connected by welding or bolts. In actual use, the shape, structure, number, size, and position of the lamp pole, solar panel 2, connector 3, reinforcement 4, and electrical control box can be determined according to actual conditions and actual needs.
[0050] When using the segmented smart lamp pole based on modular mechanical connection provided by the present invention, first, multiple solar panels 2 can be arranged in sequence along the circumference of the lamp pole, and the first frames 21 of two adjacent solar panels 2 are connected by a connector 3 to form an enclosing cavity 1 sleeved on the lamp pole; then, the second frames 22 of the multiple solar panels 2 are fixed by a reinforcement 4; thereafter, the enclosing cavity 1 is sleeved on the lamp pole, and an electric control box is installed on the top of the lamp pole and a lamp is installed on one side of the top of the lamp pole; finally, the solar panel 2 and the electric control box are connected to charge the electric control box through the solar panel 2, and the electric control box and the lamp are connected to control the lighting and extinguishing of the lamp through the electric control box.
[0051] Compared with only setting a single small-sized solar panel on the top of the lamp pole, the present application can form a polygonal combination (i.e., a polygonal enclosed cavity 1 formed by at least four solar panels 2 arranged in a circumferential array) at the lamp pole position of the street lamp, and can even replace the lamp pole of the traditional street lamp, significantly increasing the overall lighting area of the street lamp and improving the solar energy absorption capacity of the solar panel 2. The stronger the solar energy absorption capacity of the solar panel 2, the more sufficient the electric control box can be charged, which helps to increase the lighting time of the lamp.
[0052] Furthermore, the two adjacent solar panels 2 of the present application are detachably connected via a connector 3. A preferred connection method is a snap-in connection method between the solar panels 2 and the connector 3, so that multiple solar panels 2 can be quickly assembled to form an enclosure 1. The snap-in connection method also facilitates the subsequent maintenance of the solar panels 2, reducing maintenance costs. Moreover, the reinforcement 4 can detachably fix the ends of multiple solar panels 2, which helps to improve the structural stability of the enclosure 1. In addition, at any angle of the lamp pole, there will be a solar panel 2 for light-generating electricity. Even in the morning or evening when the light angle is low, the solar panel 2 can still receive light well, alleviating the defect that the traditional fixed planar assembly has high power generation efficiency only during the high light period at noon and low power generation efficiency during other periods.
[0053] In summary, the segmented smart lamp pole based on modular mechanical connection provided by the present invention is suitable for use as a street lamp, and is convenient and efficient to assemble and disassemble, with low installation and maintenance costs, and can be promoted for use.
[0054] In one embodiment, the solar panel 2 includes two first frames 21 that are relatively distributed along the length direction of the solar panel 2 and two second frames 22 that are relatively distributed along the width direction of the solar panel 2. The second frame 22 is vertically arranged between the two first frames 21; the first frame 21 is plug-connected to the connector 3, and the second frame 22 is fixedly connected to the reinforcement 4.
[0055] It should be noted that each solar panel 2 is provided with two first frames 21 along the length direction, and the first frames 21 of two adjacent solar panels 2 are plugged into the connector 3 to ensure the lateral positioning accuracy when the components are arranged in sequence. The second frame 22 arranged along the width direction of the solar panel 2 is fixedly connected to the reinforcement 4 to improve the rigidity of the surrounding cavity 1, that is, through the connector 3 and the reinforcement 4, the individual solar panels 2 can be connected in series into a relatively stable overall structure to effectively resist wind loads and vibrations.
[0056] In one embodiment, if Figure 5 and Figure 6 As shown, the first frame 21 is provided with a card slot 211 along the length direction, and a limiting cavity 2111 is provided inside the card slot 211. The size of the limiting cavity 2111 is larger than the notch size of the card slot 211; the connecting member 3 is provided with two symmetrically distributed card strips 31 for being engaged with the card slot 211, and the card strip 31 is provided with a limiting portion 32 engaged with the limiting cavity 2111, and the two card strips 31 of the same connecting member 3 are respectively engaged with the card slots 211 of the two adjacent first frames 21.
[0057] It should be noted that after the card strip 31 is assembled into the card slot 211, the limiting portion 32 is locked into the limiting cavity 2111. The limiting cavity 2111 can effectively prevent the card strip 31 from falling out of the notch of the card slot 211 when subjected to force or vibration. That is, the card strip 31 can only slide in the card slot 211, and cannot fall out of the notch position of the card slot 211. The card strip 31 will be locked with the limiting cavity 2111 through the limiting portion 32.
[0058] In one embodiment, if Figure 6 As shown, the first frame 21 is provided with a recessed groove 212. When the first frames 21 of the two connecting members 3 are close to each other, the recessed grooves 212 on the two adjacent first frames 21 are combined to form a limiting groove 6. The connecting member 3 is provided with a protrusion 33. The protrusion 33 is assembled in the limiting groove 6 and cannot escape from the notch of the limiting groove 6.
[0059] It should be noted that after the protrusion 33 is inserted into the retaining groove 6, it withstands shear forces, helping to reduce the possibility of damage to the retaining portion 32 during use. The protrusion 33 can be positioned between the two clips 31 of the connector 3. In actual use, the protrusion 33 and the clips 31 both prevent the connector 3 from detaching from the center of the segmented smart lamp pole based on modular mechanical connections.
[0060] In one embodiment, if Figure 3 As shown, the second frame 22 is provided with two symmetrically distributed connecting ears 221, the connecting ears 221 are provided with a first mounting hole, the reinforcement member 4 is a circular ring member with an inner diameter larger than the outer diameter of the lamp pole, and the circular ring member is provided with a second mounting hole at a position aligned with the first mounting hole. After the first mounting hole and the second mounting hole are aligned, they are used to pass through the locking member.
[0061] It should be noted that the second frame 22 can shield the connector 3, effectively limiting the connector 3 from sliding out of the two ends of the slot 211 when subjected to force, vibration or external force collision, thereby preventing the component from being misplaced or loose. In addition, the size and position of the connecting ear 221 can be pre-set on the second frame 22, corresponding one-to-one with the corresponding connection surface of the reinforcement 4, which helps to achieve "one-to-one" precise docking during on-site installation without the need for repeated measurement and debugging. The connecting ear 221 is connected to the reinforcement 4 by a locking member (bolt or rivet). During the connection process, the locking member is set along the length direction of the surrounding cavity 1, making it convenient to use the reinforcement 4 to achieve a fixed connection of multiple solar panels 2.
[0062] In one embodiment, if Figure 3 As shown, the reinforcement member 4 is provided with mounting slots 41 spaced evenly around the circumference, the same number as the solar panels 2. A mounting block is provided between adjacent mounting slots 41. A second mounting hole is provided within each mounting slot 41, and a connecting block 5 is secured within the mounting slot 41. The connecting block 5 has a third mounting hole aligned with the second mounting hole. The mounting slots 41 on the reinforcement member 4 are spaced evenly around the circumference or arranged at specific angles. These slots 41 automatically guide the connecting block 5 into position during installation, ensuring precise alignment. Furthermore, the connecting block 5 can be installed within the mounting slots 41, and then a locking member (bolt) is inserted through the first, second, and third mounting holes to securely connect the second frame 22, the reinforcement member 4, and the connecting block 5. When two adjacent segmented smart light poles using modular mechanical connection are connected (i.e., two segmented smart light poles using modular mechanical connection along the length of the cavity 1), the connecting block 5 simultaneously engages the mounting slots 41 of both adjacent segmented smart light poles using modular mechanical connection.
[0063] In one embodiment, the light fixture further includes a rotating bracket for rotating the light fixture and a driver for driving the rotating bracket. The rotating bracket is rotatably mounted on the top of the light pole, and the driver is mounted within the light pole. The driver is connected to an electrical control box. Thus, the electrical control box can control the operation of the driver (e.g., by pre-programmed or remote control). When the driver operates, it drives the rotating bracket to rotate, thereby rotating the light fixture to an appropriate angle and changing the light fixture's illumination range.
[0064] In one embodiment, the first frame 21 and the second frame 22 are both made of aluminum alloy to improve the structural strength of the solar panel 2, which is beneficial to ensuring the use effect and service life of the device.
[0065] In addition to the above-mentioned segmented smart lamp pole based on modular mechanical connection, the present invention also provides an assembly method for the segmented smart lamp pole based on modular mechanical connection. The assembly method is shown in the following process diagram: Figure 7 As shown, including:
[0066] Step S1: multiple solar panels 2 are sequentially arranged along the circumference of the lamp pole, and the first frames 21 of two adjacent solar panels 2 are connected by a connector 3 to form an enclosing cavity 1 sleeved on the lamp pole;
[0067] Step S2: The reinforcement member 4 fixes the second frame 22 of the plurality of solar panels 2;
[0068] Step S3: The enclosing cavity 1 is sleeved on the lamp pole, and an electric control box is installed on the top of the lamp pole, and a lamp is installed on one side of the top of the lamp pole;
[0069] Step S4: The lamp and the solar panel 2 are connected to the electric control box.
[0070] It should be noted that the first frame 21 and the second frame 22, the first shooting hole 111 and the second shooting hole 131 mentioned in this application document are only used to distinguish the different positions and there is no order of precedence.
[0071] In addition, it should be noted that the orientation or position relationship indicated by "top" and the like in this application is based on the orientation or position relationship shown in the accompanying drawings and is only for the purpose of simplifying the description and facilitating understanding, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as a limitation on the present invention.
[0072] The various embodiments in this specification are described in a progressive manner, and each embodiment focuses on the differences from other embodiments. The same or similar parts between the various embodiments can be referenced to each other. Any combination of all the embodiments provided by the present invention is within the scope of protection of this invention and will not be described in detail here.
[0073] The above describes in detail the segmented smart light pole based on modular mechanical connections and its assembly method provided by the present invention. This article uses specific examples to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only intended to facilitate understanding of the method and core concept of the present invention. It should be noted that those skilled in the art can make various improvements and modifications to the present invention without departing from the principles of the present invention, and such improvements and modifications also fall within the scope of protection of the claims of the present invention.
Claims
1. A segmented smart lamp pole based on modular mechanical connection, characterized in that: include: a light pole having a light fixture provided on one side of its top; Solar panels (2), at least four of the solar panels (2) are sequentially arranged along the circumference of the lamp pole to form an enclosing cavity (1) sleeved on the lamp pole; A connecting piece (3) is provided along the length direction of the surrounding cavity (1), and the connecting piece (3) is used to detachably connect two adjacent solar panels (2); A reinforcement member (4) for detachably fixing the ends of the plurality of solar panels (2); An electric control box is arranged on the top of the lamp pole, the solar panel (2) is connected to the electric control box to charge the electric control box, and the electric control box is connected to the lamp to control the lighting and extinguishing of the lamp.
2. The segmented smart lamp pole based on modular mechanical connection according to claim 1, characterized in that: The solar panel (2) comprises two first frames (21) arranged and distributed oppositely along the length direction of the solar panel (2) and two second frames (22) arranged and distributed oppositely along the width direction of the solar panel (2), wherein the second frame (22) is vertically arranged between the two first frames (21); the first frame (21) and the connecting member (3) are plug-connected, and the second frame (22) and the reinforcing member (4) are fixedly connected.
3. The segmented smart lamp pole based on modular mechanical connection according to claim 2, characterized in that: The first frame (21) is provided with a slot (211) along the length direction, a limiting cavity (2111) is provided inside the slot (211), and the size of the limiting cavity (2111) is larger than the notch size of the slot (211); The connecting member (3) is provided with two symmetrically distributed clamping strips (31) for clamping with the clamping slot (211), and the clamping strip (31) is provided with a limiting portion (32) clamped with the limiting cavity (2111), and the two clamping strips (31) of the same connecting member (3) are respectively clamped with the clamping slots (211) of two adjacent first frames (21).
4. The segmented smart lamp pole based on modular mechanical connection according to claim 3 is characterized in that: The first frame (21) is provided with a recessed groove (212). When the first frames (21) of two connecting members (3) are brought close to each other, the recessed grooves (212) on the two adjacent first frames (21) are combined to form a limiting groove (6). The connecting member (3) is provided with a protruding portion (33). The protruding portion (33) is assembled in the limiting groove (6) and cannot be disengaged from the notch of the limiting groove (6).
5. The segmented smart lamp pole based on modular mechanical connection according to any one of claims 2 to 4, characterized in that: The second frame (22) is provided with two symmetrically distributed connecting ears (221), and the connecting ears (221) are provided with a first mounting hole. The reinforcing member (4) is a circular ring member with an inner diameter larger than the outer diameter of the lamp pole. A second mounting hole is provided at a position of the circular ring member aligned with the first mounting hole. The first mounting hole and the second mounting hole are aligned to pass through the locking member.
6. The segmented smart lamp pole based on modular mechanical connection according to claim 5, characterized in that: The reinforcement member (4) is provided with mounting grooves (41) of the same number as the number of the solar panels (2) at equal intervals along the circumferential direction, a mounting block is provided between two adjacent mounting grooves (41), the second mounting hole is provided in the mounting groove (41), a connecting block (5) is clamped in the mounting groove (41), and the connecting block (5) is provided with a third mounting hole aligned with the second mounting hole.
7. The segmented smart lamp pole based on modular mechanical connection according to any one of claims 2 to 4, characterized in that: It also includes a rotating bracket for driving the lamp to rotate and a driving member for driving the rotating bracket to rotate. The rotating bracket is rotatably arranged on the top of the lamp pole, the driving member is arranged in the lamp pole, and the driving member is connected to the electric control box.
8. The segmented smart lamp pole based on modular mechanical connection according to any one of claims 2 to 4, characterized in that: The first frame (21) and the second frame (22) are both made of aluminum alloy.
9. An assembly method, applied to the segmented smart lamp pole based on modular mechanical connection according to any one of claims 2 to 8, characterized in that: include: A plurality of solar panels (2) are sequentially arranged along the circumference of the lamp pole, and the first frames (21) of two adjacent solar panels (2) are connected via a connector (3) to form an enclosing cavity (1) sleeved on the lamp pole; The reinforcement member (4) fixes the second frame (22) of the plurality of solar panels (2); The enclosing cavity (1) is sleeved on the lamp pole, and an electric control box is installed on the top of the lamp pole, and a lamp is installed on one side of the top of the lamp pole; The lamp and the solar panel (2) are both connected to the electric control box.