Combined plate-type stepping power generation device and intelligent street lamps for residential parks and urban roads including the same
By integrating the integrated panel pedaling power generation device, wind generator and solar panels in smart street lights, the problems of large energy consumption and inconvenient operation and maintenance of street lights are solved, and timely monitoring of traffic accidents and energy supply of new energy vehicles are achieved.
Patent Information
- Application Number
- CN202310757591.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-26
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2043-06-26
AI Technical Summary
Street lights in residential communities consume a lot of energy, inconvenient operation and maintenance, untimely monitoring of traffic accidents on urban roads, inaccurate tracking and positioning of escaped vehicles, and insufficient energy for new energy vehicles.
The combined plate pedaling power generation device is adopted to collect pedestrian pedaling energy through the pedaling power generation device, combine wind turbines and solar panels to provide a variety of energy sources, provide smart street lights, and connect with various modules through data control boxes to achieve comprehensive application.
It effectively reduces the energy consumption of street lights, improves the convenience of operation and maintenance, realizes timely monitoring of traffic accidents and accurate tracking and positioning of escaped vehicles, and ensures the energy supply of new energy vehicles.
Smart Images

Figure CN116792276B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a combined plate-type stepping power generation device, a smart street lamp for a residential park, and a smart street lamp for an urban road including the same, belonging to the field of smart communities. Background Art
[0002] As an important part of a smart city, smart street lamps have also attracted much attention in recent years. From the development status of smart street lamps, they have transformed from the initial lighting demand into a smart street lamp robot integrating modules such as lighting, communication, monitoring, parking positioning, artificial intelligence, traffic management information collection, vehicle networking, and new energy vehicle charging.
[0003] At present, many transportation equipment enterprises have developed this multi-functional smart street lamp. Judging from their actual pilot situations, this smart street lamp has indeed greatly improved in terms of performance, but its energy consumption has increased compared with traditional street lamps. Secondly, the model establishment of major street lamp enterprises is also too single, making subsequent operation and maintenance not simple and easy. Therefore, a new type of smart street lamp structure is proposed to solve the above problems. Summary of the Invention
[0004] The present invention provides a combined plate-type stepping power generation device, a smart street lamp for a residential park, and a smart street lamp for an urban road including the same, which solves problems such as large energy consumption of street lamps in residential communities, inconvenient operation and maintenance, untimely monitoring of traffic accidents in urban roads, inaccurate tracking and positioning of escaped vehicles, and insufficient energy of new energy vehicles.
[0005] The technical solution adopted by the present invention to solve its technical problems is as follows:
[0006] The combined plate-type stepping power generation device includes a stepping power generation device body, which includes a stepping plate and a fixed bottom plate. A support ring is installed at the center position of the bottom surface of the stepping plate. The support ring is arranged in a columnar structure, and a spherical cavity is opened at the center position inside the support ring; an annular coil is wound along the inner wall of the spherical cavity;
[0007] A spherical magnet is installed at the center position of the surface of the fixed plate, and the spherical magnet is embedded in the spherical cavity where the annular coil is wound;
[0008] A storage battery is symmetrically installed on the inner wall of the support ring, and the storage battery is connected to the annular coil;
[0009] When stepping on the plane of the stepping plate, the side of the stepping plate tilts towards the side of the fixed bottom plate that matches it until the side of the stepping plate contacts the side of the fixed bottom plate. During the tilting process of the stepping plate, an induced current is generated in the annular coil in the magnetic field of the spherical magnet;
[0010] As a further preference of the present invention, the body of the stepping power generation device includes several, and adjacent bodies of the stepping power generation device are connected by connecting plates;
[0011] The intelligent street lamp for a residential park including the combined plate type stepping power generation device comprises an intelligent street lamp body for a residential park, which includes a main pole body, a spherical lampshade is installed at the top end of the main pole body, an LED light strip is installed inside the spherical lampshade, a wind turbine is installed at a position close to the top end of the main pole body, and a monitoring camera is installed at a position where the bracket of the wind turbine faces the ground;
[0012] On the main pole body, a plurality of solar panels are installed around the main pole body below the wind turbine;
[0013] A base is installed at the bottom of the main pole body, the base is fixed to the ground by bolts, a data control box is installed inside the base, the combined plate type stepping power generation device is arranged close to the base, and the data control box is simultaneously connected to the storage battery, the LED light strip, the wind turbine, the monitoring camera and the solar panels of the combined plate type stepping power generation device;
[0014] As a further preference of the present invention, a tipping structure is installed at the bottom end of the main pole body, the tipping structure includes a tipping block, a tipping block protruding block protrudes from one side of the tipping block, a plurality of through tipping block fixing bolt holes are formed in the tipping block protruding block, an extension end is connected to the bottom end of the tipping block, and a through tipping block fixing hole is formed in the extension end;
[0015] The tipping structure further includes a through base fixing hole formed at the top of the base, a base protruding block protrudes from one side of the base, and a plurality of through base fixing bolt holes are formed in the base protruding block;
[0016] The bottom of the tipping block is embedded in the top end of the base, and a rotating shaft passes through the base fixing bolt hole and the tipping block fixing bolt hole;
[0017] When a fixing bolt passes through the tipping block fixing bolt hole and the base fixing bolt hole, the main pole body is fixed perpendicular to the ground;
[0018] When the fixing bolt is pulled out from the tipping block fixing bolt hole and the base fixing bolt hole, the main pole body can rotate towards the ground direction through the rotating shaft until the main pole body is parallel to the ground;
[0019] As a further preference of the present invention, the spherical lampshade is spherical, made of a transparent light-transmitting material, hollow inside, and fixed to the top end of the main pole body by four embedded curved support bars;
[0020] Three solar panels are installed around the main pole body below the wind turbine, and each solar panel is fixed by a connecting rod;
[0021] The intelligent street lamp for urban roads incorporating the combined plate-type trampling power generation device includes an intelligent street lamp body for urban roads, which includes a flat rod body, the top of which is connected to a lamp head through a wheel axle structure, and an embedded wind turbine, a monitoring dome camera, and an LED display screen are sequentially installed on the flat rod body from top to bottom;
[0022] A base is installed at the bottom of the flat rod body, a data control box is arranged inside the base, the combined plate-type trampling power generation device is arranged close to the base, and the data control box is simultaneously connected to the storage battery, the lamp head, the wind turbine, the monitoring dome camera, and the LED display screen of the combined plate-type trampling power generation device;
[0023] As a further preference of the present invention, a dumping structure is arranged at the bottom of the data control box. The dumping structure includes a connecting block protruding from the bottom of the data control box, and connecting shafts are respectively arranged on both sides of the connecting block;
[0024] It further includes a disc, which is arranged in an elliptical shape and fixed to the ground by bolts; a raised block is arranged at the center of the disc surface, a through raised block fixing hole is opened in the raised block, the connecting block is embedded in the raised block, and the connecting shafts on both sides of the connecting block are respectively embedded in the matching raised block fixing holes;
[0025] A convex block is connected to one side wall of the data control box, a through fixing bolt hole is opened in the convex block, a disc convex block is arranged on the side wall of the disc, and a through disc fixing bolt hole is opened in the disc convex block;
[0026] When the fixing bolt passes through the fixing bolt hole and the disc fixing bolt hole, the flat rod body is fixed perpendicular to the ground;
[0027] When the fixing bolt is pulled out from the fixing bolt hole and the disc fixing bolt hole, the flat rod body can rotate towards the ground direction through the connecting shaft until the flat rod body is parallel to the ground;
[0028] As a further preference of the present invention, the top of the flat rod body is rotatably connected to the end of the lamp head through a wheel axle structure, and both sides of the lamp head are respectively fixed to the rod body near the top of the flat rod body through fixing shafts;
[0029] A solar panel is embedded inside the lamp head;
[0030] As a further preference of the present invention, a vehicle charging hole is arranged on another side wall of the data control box.
[0031] Through the above technical solutions, compared with the prior art, the present invention has the following beneficial effects:
[0032] 1. The combined plate-type stepping power generation device provided by the present invention can generate induced current in the toroidal coil in the magnetic field of the spherical magnet during the tilting process of the stepping plate when passers-by step on the stepping plate, providing further power supply for the intelligent street lights in the residential park and the intelligent street lights on the urban roads that include it, and solving the problem of large energy consumption of street lights.
[0033] 2. The intelligent street lights in the residential park and the intelligent street lights on the urban roads provided by the present invention have comprehensive applications of multiple modules such as lighting, communication, monitoring, parking positioning, artificial intelligence, traffic management, vehicle networking, and electric vehicle charging, solving problems such as inconvenient operation and maintenance of street lights in residential communities, untimely monitoring of traffic accidents on urban roads, inaccurate tracking and positioning of escaping vehicles, and insufficient energy of new energy vehicles. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] The present invention will be further described below in conjunction with the drawings and embodiments.
[0035] Figures 1 - 6 is a schematic structural diagram of the combined plate-type stepping power generation device provided by the present invention;
[0036] Figure 7 is the effect of the crosswalk where the combined plate-type stepping power generation device provided by the present invention is arranged in the preferred embodiment;
[0037] Figure 8 is a schematic structural diagram of the intelligent street light when the combined plate-type stepping power generation device provided by the present invention is applied in a residential park;
[0038] Figures 9 - 15 is a schematic structural diagram of each part of the intelligent street light in the residential park provided by the present invention;
[0039] Figure 16 is a schematic structural diagram of the intelligent street light when the combined plate-type stepping power generation device provided by the present invention is applied in an urban road;
[0040] Figures 17 - 22 is a schematic structural diagram of each part of the intelligent street light on the urban road provided by the present invention.
[0041] In the figure: Figures 1 - 7 In the combined plate-type stepping power generation device, 25 is the stepping plate, 26 is the support ring, 27 is the spherical cavity, 28 is the toroidal coil, 29 is the storage battery, 30 is the spherical magnet, 31 is the fixed bottom plate, 32 is the circular shaft hole, and 33 is the connecting plate;
[0042] For Figures 8 - 15 In the intelligent street light in the residential park, 1 is the spherical lampshade, 2 is the support bar, 3 is the wind turbine, 4 is the monitoring camera ball, 5 is the solar panel, 6 is the main pole body, 7 is the tilting structure, 8 is the base fixing bolt hole, 9 is the fixing bolt, 10 is the base fixing hole, and 11 is the tilting block fixing bolt hole;
[0043] In the intelligent street lamp for urban roads Figures 16 - 22 shown in the figure, 12 is a solar panel, 13 is a lamp head, 14 is a fixed shaft, 15 is a wind turbine, 16 is a surveillance camera ball, 17 is a flat rod body, 18 is an LED display screen, 19 is a data control box, 20 is a vehicle charging hole, 21 is a dumping structure, 22 is a connecting shaft, 23 is a disk fixing bolt hole, and 24 is a raised block fixing hole. Embodiment
[0044] Now, the present invention will be further described in detail with reference to the accompanying drawings. In the description of this application, it should be understood that the orientation or positional relationship indicated by terms such as "left side", "right side", "upper part", "lower part", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. "First", "second", etc. do not represent the importance of components, so they cannot be understood as limitations to the present invention. The specific dimensions adopted in this embodiment are only for illustrating the technical solution by way of example, and do not limit the protection scope of the present invention.
[0045] Regarding the traditional intelligent street lamp pointed out in the background art, its biggest problem lies in how to solve the increase in energy consumption, while improving the diversity of the intelligent street lamp in model establishment, and enhancing the efficiency of operation and maintenance.
[0046] The first innovation point of this application lies in how to solve the problem of increased energy consumption. Since intelligent street lamps are all set in residential areas or beside urban roads, considering the environment where they are set, there will be a large number of passers-by. Therefore, this application first provides a combined plate-type stepping power generation device, which is laid beside the intelligent street lamp. When people pass by densely and step on it, part of the electric energy for the intelligent street lamp can be obtained.
[0047] The structure of the combined plate-type stepping power generation device is as Figure 1 shown, and it includes a stepping power generation device body, which includes a stepping plate 25 and a fixed bottom plate 31. Figure 2 As shown, a support ring 26 is installed at the center position of the bottom surface of the stepping plate. The support ring is arranged in a columnar structure, and a spherical cavity 27 is opened at the center position inside the support ring; an annular coil 28 is wound along the inner wall of the spherical cavity. Figure 3 As shown, a spherical magnet 30 is installed at the center position of the surface of the fixed plate. The spherical magnet is embedded in the spherical cavity where the annular coil is wound. The spherical cavity is slightly larger than half of the spherical magnet; storage batteries 29 are symmetrically installed on the inner wall of the support ring, and the storage batteries are connected to the annular coil; the design of the support ring can enable the stepping plate to stabilize the entire inclined surface when the stepping plate is stepped on and tilts to one side. Figure 4As shown in the figure, when stepping on the plane of the pedal board, the side of the pedal board inclines towards the side matching the fixed bottom plate until the side of the pedal board contacts the side of the fixed bottom plate. Since there is a magnetic field around the spherical magnet, during the inclination process of the pedal board, the ring-shaped coil in the spherical magnetic field cuts the magnetic induction lines to generate an induced current, and the storage battery collects the electric energy generated by the induced current.
[0048] In actual use, multiple pedal power generation device bodies will be set up to cover the sidewalk on the side of the smart street lamp, collect the energy when pedestrians step on it, convert it into electric energy, and then supply it for the smart street lamp to use. Then, multiple pedal power generation device bodies need to be connected. For example, Figure 5 As shown in the figure, circular shaft holes 32 are respectively added at the four corner positions of the pedal board, and both ends of the connecting plate 33 are connected in the circular shaft holes, that is, adjacent pedal power generation device bodies are connected through the connecting plate. Regarding the connecting plate, relevant preferred embodiments are given here. Figure 6 As shown in the figure, the structure of the connecting plate is formed by connecting five horizontal plates in a concave shape, and the five horizontal plates are also fixed by circular shaft holes and circular shafts. Then, two pedal power generation device bodies and one connecting plate form a unit for splicing, plus support blocks, thus forming Figure 7 the effect of the paved crosswalk as shown in the figure.
[0049] The entire pedal power generation device can be used as an auxiliary energy system for the front smart street lamp, which not only broadens the energy channels of the smart street lamp, but also conforms to the low-carbon, energy-saving and environmental protection concept advocated by the country at this stage.
[0050] Since smart street lamps need to be applied in different scenarios, for residential areas, more attention should be paid to ensuring the light source illumination of the main roads and small roads. For urban roads, more attention should be paid to ensuring lighting, communication, monitoring, parking positioning, artificial intelligence, traffic management, vehicle networking, and electric vehicle charging. At the same time, since it is a smart street lamp, in urban roads, it should also solve problems such as untimely monitoring of traffic accidents, inaccurate tracking and positioning of escaped vehicles, and insufficient energy of new energy vehicles.
[0051] Figure 8 As shown in the figure, it is the smart street lamp structure when the combined plate-type pedal power generation device provided by this application is applied in a residential area, including the residential area smart street lamp body, which includes a main pole body 6, and a spherical lampshade 1 is installed at the top of the main pole body. Figure 9As shown, the spherical shape enables the light source to illuminate the surroundings, maximizing the brightness of the LED light strip to illuminate the surroundings. This can satisfy the requirement that the lighting fixture of the main road is spherical in shape. It is made of transparent light-transmitting material and is hollow inside. It is fixed at the top of the main pole body by four embedded curved support bars 2, which can make the spherical lampshade more firmly fixed on the top of the main pole body and prevent it from falling off easily. An LED light strip is installed inside the spherical lampshade. Through the scattering effect of the spherical surface on the light source, it can meet the lighting requirements of part of the winding path, and at the same time, it is more energy-saving. Installed near the top of the main pole body Figure 10 the wind turbine 3 shown. The design of the wind turbine adopts the principle of triangular stability. The bracket is connected and fixed by inclined rods and horizontal rods. A monitoring camera ball 4 is installed at the position of the wind turbine bracket facing the ground, that is, below the horizontal rod, so that the monitoring angle of view is wider and it plays a role in collecting traffic image information. The wind turbine converts kinetic energy into electrical energy to provide a certain power supply for the monitoring and lighting, achieving energy conservation and low carbon;
[0052] On the main pole body, a plurality of solar panels 5 are installed around the main pole body below the wind turbine. Figure 11 As shown, in the preferred embodiment of the present application, three solar panels are installed around the main pole body below the wind turbine, and each solar panel is fixed by a connecting rod. The three solar panels are arranged in a rotating array and inclined at a certain angle to increase the contact area with sunlight and improve the energy supply efficiency. The solar panels convert solar energy into electrical energy to provide a certain power supply for the monitoring camera ball and the lighting fixture, so as to achieve the purpose of energy conservation. A base is installed at the bottom of the main pole body. The base is fixed to the ground by bolts. A data control box is installed inside the base. The combined plate-type stepping power generation device is arranged near the base. The data control box is simultaneously connected to the storage battery of the combined plate-type stepping power generation device, the LED light strip, the wind turbine, the monitoring camera ball, and the solar panels. The wind turbine and the solar panels respectively convert wind energy and light energy into electrical energy and store them through the data control box, serving as auxiliary energy sources for the intelligent street lights in the residential park to achieve the purpose of energy conservation.
[0053] Regarding another innovation point of the intelligent street lights in the residential park, a tipping structure 7 is installed at the bottom end of the main pole body. The tipping structure includes a tipping block. Figure 12 As shown, a tipping block protruding block protrudes from one side of the tipping block. A number of through tipping block fixing bolt holes 11 are opened on the tipping block protruding block. An extension end is connected to the bottom end of the tipping block, and a through tipping block fixing hole is opened on the extension end;
[0054] Figure 13As shown, the dumping structure further includes a through base fixing hole 10 opened at the top of the base. One side of the base protrudes to form a base protruding block, and a number of through base fixing bolt holes 8 are opened on the base protruding block; the bottom of the dumping block is embedded at the top of the base, and the rotating shaft passes through the base fixing bolt hole and the dumping block fixing bolt hole.
[0055] Figure 14 As shown, when the fixing bolt 9 passes through the dumping block fixing bolt hole and the base fixing bolt hole, the main rod body is fixed perpendicular to the ground; Figure 15 As shown, when the fixing bolt is pulled out from the dumping block fixing bolt hole and the base fixing bolt hole, the main rod body can rotate towards the ground direction through the rotating shaft until the main rod body is parallel to the ground. That is to say, the design of the dumping structure can provide a 90-degree dumping of the main rod body, which is convenient for subsequent installation, operation and maintenance.
[0056] As can be seen from the above, the main design features highlighted in the residential park application scenario are energy conservation, low carbon, and convenience for operation and maintenance.
[0057] Next is as Figure 16 As shown, the intelligent street lamp structure when the combined plate type stepping power generation device provided by the present application is applied to an urban road includes an urban road intelligent street lamp body, which includes a flat rod body. Figure 21 As shown, the top end of the flat rod body is rotatably connected to the end of the lamp head 13 through a wheel shaft structure, and both sides of the lamp head are respectively fixed to the rod body near the top of the flat rod body through fixing shafts 14, so that the connection is fully reliable, and the illuminated range is adjusted by changing the angle of the lamp head. Figure 20 As shown, a solar panel 12 is embedded inside the lamp head to increase the contact area with sunlight.
[0058] Figure 17 As shown, an embedded wind turbine 15, a surveillance camera 16 and an LED display screen 18 are sequentially installed on the flat rod body 17 from the top to the bottom; the wind turbine is located in the upper middle part of the column body, and the kinetic energy is converted into electrical energy to provide a certain power supply for the surveillance and the lamp by using the triangular stability principle, achieving energy conservation and low carbon; the surveillance camera is located inside the flat main body rod, making the surveillance view wider. Next is the LED display screen, which is located at the lower part of the flat rod body and is used to real-time release information such as traffic accidents, license plates of accident vehicles, and vehicle positioning. A base is installed at the bottom end of the flat rod body, and a data control box 19 is arranged inside the base to process and store various information of traffic management facilities, communication components, WIFI, and environmental monitoring. The combined plate type stepping power generation device is arranged close to the base, and the data control box is simultaneously connected to the battery, the lamp head, the wind turbine, the surveillance camera and the LED display screen of the combined plate type stepping power generation device. An automobile charging hole 20 is arranged on another side wall of the data control box to store the electrical energy converted from solar energy and wind energy and charge new energy vehicles on the road.
[0059] For smart streetlights on urban roads, there is also a major innovation point, Figures 18 - 19 As shown, a tipping structure 21 is provided at the bottom of the data control box. The tipping structure includes a connecting block protruding from the bottom of the data control box, and connecting shafts 22 are respectively provided on both sides of the connecting block; it also includes a disc, which is arranged in an elliptical shape, and the disc is fixed to the ground by bolts; a raised block is provided at the center of the disc surface, and a through raised block fixing hole 24 is opened in the raised block. The connecting block is embedded in the raised block, and the connecting shafts on both sides of the connecting block are respectively embedded in the matching ones; a convex block is connected to the side wall of the data control box, and a through fixing bolt hole is opened in the convex block. A disc convex block is provided on the side wall of the disc, and a through disc fixing bolt hole 23 is opened in the disc convex block.
[0060] Figure 22 As shown, when the fixing bolt passes through the fixing bolt hole and the disc fixing bolt hole, the flat rod is fixed perpendicular to the ground;
[0061] When the fixing bolt is pulled out from the fixing bolt hole and the disc fixing bolt hole, the flat rod can rotate towards the ground direction through the connecting shaft until the flat rod is parallel to the ground. That is to say, the design of the tipping structure can provide a 90-degree tipping of the flat rod, which is convenient for subsequent installation, operation and maintenance.
[0062] As can be seen from the above, the main prominent design features of the urban road application scenario are simple and beautiful in appearance structure, with strong adaptability, convenient for installation, replacement, operation and maintenance, trampling power generation, energy saving, led intelligent display, and energy storage and charging.
[0063] Those skilled in the art of this technology can understand that, unless otherwise defined, all terms (including technical terms and scientific terms) used here have the same meaning as the general understanding of those of ordinary skill in the field to which this application belongs. It should also be understood that terms defined in general dictionaries should be understood to have a meaning consistent with the meaning in the context of the prior art, and will not be interpreted with idealized or overly formal meanings unless defined as here.
[0064] The meaning of "and / or" described in this application refers to the situation where each exists alone or both exist simultaneously.
[0065] The meaning of "connection" described in this application can be a direct connection between components or an indirect connection between components through other components.
[0066] Taking the above-mentioned ideal embodiments of the present invention as an inspiration, through the above description, relevant staff can completely make various changes and modifications without departing from the technical idea of this invention. The technical scope of this invention is not limited to the content in the specification, and its technical scope must be determined according to the scope of the claims.
Claims
1. Combined plate-type stepping power generation device, Characterized in that: It includes a stepping power generation device body, which includes a stepping plate and a fixed bottom plate. A support ring is installed at the center position of the bottom surface of the stepping plate. The support ring is arranged in a columnar structure. A spherical cavity is opened at the center position inside the support ring; an annular coil is wound along the inner wall of the spherical cavity; a spherical magnet is installed at the center position of the surface of the fixed plate, and the spherical magnet is embedded in the spherical cavity where the annular coil is wound; storage batteries are symmetrically installed on the inner wall of the support ring, and the storage batteries are connected to the annular coil; when stepping on the plane of the stepping plate, the side of the stepping plate inclines towards the side of the fixed bottom plate that matches it until the side of the stepping plate contacts the side of the fixed bottom plate. During the tilting process of the stepping plate, an induced current is generated in the annular coil in the magnetic field of the spherical magnet; there are several stepping power generation device bodies, and adjacent stepping power generation device bodies are connected by connecting plates.
2. A smart street lamp for a residential park including the combined plate-type stepping power generation device described in claim 1, Characterized in that: It includes a smart street lamp body for a residential park, which includes a main pole body. A spherical lampshade is installed at the top of the main pole body. An LED light strip is installed inside the spherical lampshade. A wind turbine is installed near the top of the main pole body. A monitoring ball camera is installed at the position where the bracket of the wind turbine faces the ground; on the main pole body, below the wind turbine, a plurality of solar panels are installed around the main pole body; a base is installed at the bottom of the main pole body, and the base is fixed to the ground by bolts. A data control box is installed inside the base. The combined plate-type stepping power generation device is arranged near the base. The data control box is simultaneously connected to the storage battery, the LED light strip, the wind turbine, the monitoring ball camera, and the solar panels of the combined plate-type stepping power generation device.
3. The smart street lamp for a residential park according to claim 2, Characterized in that: A tilting structure is installed at the bottom end of the main pole body. The tilting structure includes a tilting block. One side of the tilting block protrudes to form a tilting block protruding block. A plurality of through tilting block fixing bolt holes are opened on the tilting block protruding block. An extension end is connected to the bottom end of the tilting block. A through tilting block fixing hole is opened on the extension end; the tilting structure further includes a through base fixing hole opened at the top of the base. One side of the base protrudes to form a base protruding block. A plurality of through base fixing bolt holes are opened on the base protruding block; the bottom of the tilting block is embedded in the top of the base, and a rotating shaft passes through the base fixing bolt hole and the tilting block fixing bolt hole; when the fixing bolt passes through the tilting block fixing bolt hole and the base fixing bolt hole, the main pole body is fixed perpendicular to the ground; when the fixing bolt is pulled out from the tilting block fixing bolt hole and the base fixing bolt hole, the main pole body can rotate towards the ground direction through the rotating shaft until the main pole body is parallel to the ground.
4. The smart street lamp for a residential park according to claim 2, Characterized in that: The spherical lampshade is spherical in shape. It is made of a transparent light-transmitting material and is hollow inside. It is fixed to the top of the main pole body by four embedded curved support bars; below the wind turbine, three solar panels are installed around the main pole body, and each solar panel is fixed by a connecting rod.
5. A smart street lamp for an urban road including the combined plate-type stepping power generation device described in claim 1, Characterized in that: It includes the intelligent street lamp body for urban roads, which includes a flat rod body, the top of which is connected to the lamp head through a wheel shaft structure. An embedded wind turbine, a surveillance dome camera, and an LED display screen are sequentially installed on the flat rod body from the top to the bottom. A base is installed at the bottom of the flat rod body, and a data control box is arranged inside the base. The combined plate type stepping power generation device is arranged close to the base. The data control box is simultaneously connected to the storage battery, the lamp head, the wind turbine, the surveillance dome camera, and the LED display screen of the combined plate type stepping power generation device.
6. The intelligent street lamp for urban roads according to claim 5, characterized in that: A tipping structure is arranged at the bottom of the data control box. The tipping structure includes a connecting block protruding from the bottom of the data control box, and connecting shafts are respectively arranged on both sides of the connecting block. It also includes a disc, which is arranged in an elliptical shape, and the disc is fixed to the ground by bolts. A raised block is arranged at the center of the disc surface, and a through raised block fixing hole is opened in the raised block. The connecting block is embedded in the raised block, and the connecting shafts on both sides of the connecting block are respectively embedded in the matching raised block fixing holes. A convex block is connected to one side wall of the data control box, and a through fixing bolt hole is opened in the convex block. A disc convex block is arranged on the side wall of the disc, and a through disc fixing bolt hole is opened in the disc convex block. When the fixing bolt passes through the fixing bolt hole and the disc fixing bolt hole, the flat rod body is fixed perpendicular to the ground. When the fixing bolt is pulled out from the fixing bolt hole and the disc fixing bolt hole, the flat rod body can rotate towards the ground direction through the connecting shaft until the flat rod body is parallel to the ground.
7. The intelligent street lamp for urban roads according to claim 5, characterized in that: The top of the flat rod body is rotatably connected to the end of the lamp head through a wheel shaft structure, and both sides of the lamp head are respectively fixed to the rod body near the top of the flat rod body through fixing shafts. A solar panel is embedded inside the lamp head.
8. The intelligent street lamp for urban roads according to claim 6, characterized in that: An automobile charging hole is arranged on another side wall of the data control box.
Citation Information
Patent Citations
Lighting streetlamp based on new energy power generation technology
CN106594636A
Reversible equipment base structure
CN115743451A
Gravity induction type ground power generation system
CN211038943U
Intelligent landscape garden path equipment
CN213065946U
Intelligent automobile charging type street lamp
CN216079612U