An integrated intelligent security streetlight system with wind and solar complementarity
By designing a wind and light complementary street light system that integrates wind power generation, photovoltaic power generation, energy storage, security and meteorological monitoring functions, the existing street lights are easily damaged, difficult to maintain and single functions, and efficient, energy-saving and safe street light operation is achieved.
Patent Information
- Application Number
- CN202411455280.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2044-10-18
AI Technical Summary
The existing complementary street lights of the landscape are easily damaged in harsh outdoor environments, difficult to maintain, and have a single function, lacking integrated security and meteorological monitoring functions.
A integrated intelligent security street light system with complementary scenery is designed, integrating wind turbines, photovoltaic components, energy storage devices, cameras, meteorological monitoring sensors and controllers. The components are lifted and lowered through the combination of chutes, pulleys and steel cables, which facilitates maintenance and functional adjustment.
The closed-loop operation of the street light system is realized, the power generation efficiency and the independence of street lights are improved, the maintenance process is simplified, and intelligent security and meteorological monitoring functions are integrated, which improves road safety and power generation efficiency.
Smart Images

Figure CN118998698B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of lighting technology, and in particular to an integrated intelligent security street lamp system with wind and solar complementarity. Background Art
[0002] Wind energy and solar energy are both commonly used clean energy sources. Using them as energy sources for street lamps has important practical significance in saving line laying and reducing laying difficulty.
[0003] In the prior art, a wind power generation device and a solar power generation device are often installed on the same street lamp to achieve wind-solar complementarity, thereby ensuring the stable operation of the street lamp lighting system. However, the inventors found that, on the one hand, since both the wind power generation device and the solar power generation device are exposed to harsh outdoor environments for a long time, it is inevitable that the power generation device will be damaged. At the same time, it is also necessary to regularly maintain the power generation device to improve the power generation efficiency, such as regularly cleaning the dust on the photovoltaic panel to avoid affecting the acquisition of solar radiation energy. However, the existing wind-solar complementary street lamps do not take these influencing factors into consideration, resulting in the technical defects of wind-solar complementary street lamps being difficult to repair and maintain, long cycles, and difficult to maximize the luminous efficiency during actual use. On the other hand, while the road system needs to achieve lighting, it is also necessary to set up corresponding security equipment to ensure the safety of road personnel. However, in the prior art, the street lamp system and the security system are mostly set up independently of each other, resulting in a high structural complexity of the entire road system. Summary of the invention
[0004] The purpose of the present invention is to provide an integrated intelligent security street lamp system of wind-solar complementary, so as to improve the technical problems of existing wind-solar complementary street lamps, such as high difficulty and long maintenance cycle, difficulty in maximizing luminous efficiency and single function.
[0005] To achieve the above object, the present invention proposes the following technical solutions:
[0006] An integrated intelligent security street lamp system with wind and solar complementarity, comprising:
[0007] A support rod, wherein a first slide groove is provided on one side wall along the length direction of the support rod, and a second slide groove is provided on the other side wall, first auxiliary grooves in the same direction are provided on both wings of the first slide groove, and second auxiliary grooves in the same direction are provided on both wings of the second slide groove; first pulleys are provided at both ends of the first slide groove, and second pulleys are provided at both ends of the second slide groove;
[0008] A street lamp, a rail groove connector, a first cable and a first motor; the rail groove connector includes a main body and a plurality of first protrusions fixed to each other, the main body is an H-shaped structure, and each first protrusion is vertically extended outward along the back of the main body; wherein the non-luminous area of the street lamp is fixed to the same side ends of two parallel prisms in the main body, and the free ends of each first protrusion are respectively correspondingly clamped in the first slide groove and each first auxiliary groove; the first cable sequentially passes around the first pulleys at both ends of the first slide groove, and the two ends are respectively fixed to the rail groove connector and the first pulley; the first motor is matched with the first pulley to which the free end of the first cable is fixed to drive it to rotate;
[0009] A wind turbine, a photovoltaic assembly, an energy storage device, a second rope and a second motor; the wind turbine and the photovoltaic assembly are both arranged on the energy storage device; the photovoltaic assembly includes a photovoltaic panel, a first fixing member of a fixing plate, a second fixing member, a hinge rod and a third motor; a third slide groove and a fourth slide groove are arranged on the fixing plate, one end of the first fixing member is fixed to the photovoltaic panel, and the other end is placed in the third slide groove; one end of the second fixing member is fixed to the photovoltaic panel, and the other end is fixed to one end of the hinge rod; the other end of the hinge rod is placed in the fourth slide groove, and the third motor is matched with the end of the hinge rod placed in the fourth slide groove to drive it to move linearly in the fourth slide groove;
[0010] The energy storage device is provided with a plurality of second protrusions on the outside, and the free ends of the second protrusions are respectively correspondingly clamped in the second chute and the second auxiliary chute; the second rope is passed around the second pulleys at both ends of the second chute in sequence, and the two ends are respectively fixed to the energy storage device and the second pulley; the second motor is arranged in cooperation with the second pulley to which the free ends of the second rope are fixed to drive it to rotate;
[0011] A meteorological monitoring sensor, wherein the meteorological monitoring sensor is fixed on the energy storage device;
[0012] A camera, wherein the camera is fixed on the energy storage device;
[0013] A controller, the controller is used to control the storage of the electric energy converted by the wind turbine and the photovoltaic panel in the energy storage device to power the street lamp, the first motor, the second motor, the third motor, the meteorological monitoring sensor and the camera; to obtain image data from the camera to control the lighting or extinguishing of the street lamp based on the flow of people information, and to send an alarm message to the background control end when a safety accident occurs based on the image data; to obtain monitoring data from the meteorological monitoring sensor to drive the third motor to perform linear motion; and to obtain repair instructions or maintenance instructions to drive the first motor and / or the second motor to perform rotational motion.
[0014] Furthermore, the first sliding groove and the second sliding groove are arranged on an opposite side wall of the support rod.
[0015] Furthermore, it comprises: a plurality of first limiting rods and a plurality of second limiting rods; each first limiting rod is disposed at two ends of the first sliding slot, and each second limiting rod is disposed at two ends of the second sliding slot.
[0016] Furthermore, the camera is a detachable installation structure.
[0017] Furthermore, the width of the fixing plate is not less than the width of the photovoltaic panel.
[0018] Furthermore, the first motor is disposed at the lower end of the first slide slot.
[0019] Furthermore, the second motor is arranged at the lower end of the second slide slot.
[0020] Furthermore, a buffer is provided at the structure of the first fixing member and the second fixing member that is fixed to the photovoltaic panel.
[0021] Furthermore, the first fixing member and the second fixing member are fixed to an opposite side edge of the photovoltaic panel.
[0022] Beneficial effects:
[0023] It can be seen from the above technical solutions that the present invention provides an integrated intelligent security street lamp system of wind-solar complementary, so as to improve the various technical defects caused by the existing wind-solar complementary street lamps that do not consider the subsequent repair and maintenance issues and the single function design.
[0024] Based on the above technical solution, in the specific implementation, during the working process of the street lamp, firstly, a single street lamp system has a higher degree of integration and independence, so as to realize the closed-loop operation of a single street lamp system, which is more energy-saving and avoids the corresponding impact of the abnormality of a certain component on a single street lamp on other street lamps on the same string of roads. Specifically, the current flow of people can be obtained through the image data obtained by the camera to control the street lamp to automatically turn off when no people pass by, and automatically light up when people pass by, so as to further achieve the purpose of energy saving and ensure the stable operation of the entire street lamp system. Secondly, the corresponding monitoring data can be obtained through the meteorological monitoring sensor to drive the third motor to move. On the one hand, the angle of the photovoltaic panel can be adjusted to improve the efficiency of photovoltaic power generation, and on the other hand, the wind speed can be too high to cause irreversible damage to the photovoltaic panel. At the same time, in the structural design, the controller is also designed to obtain the image data of the camera to send an alarm message when it is determined that there is a dangerous event, so that the street lamp system is also integrated with a security function.
[0025] When abnormal repair or routine maintenance of photovoltaic components or wind turbines is required, the controller can be used to control the second motor to operate, drive the second pulley to rotate, and then drive the second rope to move, so that the energy storage device can be lowered for the convenience of technicians to perform related operations; and when the operation is completed, the energy storage device can be raised to quickly return the power generation device to the working position. Similarly, when abnormal repair or routine maintenance of street lamps is required, the controller can be used to control the first motor to operate, drive the first pulley to rotate, and then drive the first rope to move, so that the street lamp can be lowered for the convenience of technicians to perform related operations; and when the operation is completed, the street lamp can be raised to quickly return the street lamp to the working position.
[0026] It should be appreciated that all combinations of the foregoing concepts, as well as additional concepts described in greater detail below, may be considered to be part of the inventive subject matter of the present disclosure, provided such concepts are not mutually inconsistent.
[0027] The foregoing and other aspects, embodiments and features of the present invention can be more fully understood from the following description in conjunction with the accompanying drawings. Other additional aspects of the present invention, such as the features and / or beneficial effects of the exemplary embodiments, will be apparent from the following description or learned from the practice of the specific embodiments according to the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] The drawings are not intended to be drawn to scale. In the drawings, each identical or nearly identical component shown in various figures may be represented by the same reference numeral. For clarity, not every component is labeled in every figure. Embodiments of various aspects of the present invention will now be described by way of example and with reference to the accompanying drawings, in which:
[0029] Figure 1 This is a schematic diagram of the structure of the integrated intelligent security street lamp system with wind and solar complementarity described in this embodiment;
[0030] Figure 2 This is a schematic diagram of the installation structure of the street lamp;
[0031] Figure 3 It is a schematic diagram of the installation structure of the energy storage device;
[0032] Figure 4 Schematic diagram of the installation structure of photovoltaic modules. DETAILED DESCRIPTION
[0033] In order to make the purpose, technical solution and advantages of the embodiment of the present invention clearer, the technical solution of the embodiment of the present invention will be clearly and completely described below in conjunction with the drawings of the embodiment of the present invention. Obviously, the described embodiment is a part of the embodiment of the present invention, not all of the embodiments. Based on the described embodiment of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention. Unless otherwise defined, the technical terms or scientific terms used herein should be the common meaning understood by people with general skills in the field to which the present invention belongs.
[0034] The words "first", "second" and similar words used in the specification and claims of this application do not indicate any order, quantity or importance, but are only used to distinguish different components. Similarly, unless the context clearly indicates otherwise, the singular form of "a", "an" or "the" and other similar words do not indicate a quantitative limitation, but rather indicate the presence of at least one. Words such as "include" or "comprise" and the like mean that the elements or objects appearing before "include" or "comprise" cover the features, wholes, steps, operations, elements and / or components listed after "include" or "comprise", and do not exclude the existence or addition of one or more other features, wholes, steps, operations, elements, components and / or their collections. "Up", "down", "left", "right" and the like are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may also change accordingly.
[0035] In the prior art, since wind-solar complementary street lamps work in harsh outdoor environments for a long time, it is inevitable that the power generation device will be damaged. However, the existing wind-solar complementary street lamps do not take into account the fact that the power generation device is easily damaged during structural design and equipment installation, resulting in a technical defect that the street lamp is difficult to repair after it is damaged. This further leads to the objective problem that after the wind-solar complementary street lamp is damaged, the maintenance cycle is long and normal lighting is difficult to restore. At the same time, when designing the street lamp structure, only the street lamp itself is considered without placing it in the road system, which also leads to the defect of single function in the existing street lamp system. Based on this, this embodiment aims to provide an integrated intelligent security street lamp system with wind-solar complementary to improve the above-mentioned technical defects.
[0036] The integrated intelligent security street lamp system with wind-solar complementarity described in this embodiment is described in detail below with reference to the accompanying drawings.
[0037] like Figure 1-4 As shown, the street light system consists of the following parts:
[0038] First, it includes a support rod 1. Specifically, a first slide groove 1.1 is provided on one side wall along the length direction of the support rod 1, and a second slide groove 1.2 is provided on the other side wall. In this embodiment, in order to prevent subsequent street lamps and power generation devices from colliding with each other during the disassembly process, the first slide groove 1.1 and the second slide groove 1.2 are arranged on opposite side walls. First auxiliary grooves 1.3 in the same direction are provided on both wings of the first slide groove 1.1, and second auxiliary grooves 1.4 in the same direction are provided on both wings of the second slide groove 1.2. First pulleys 2 are installed at both ends of the first slide groove 1.1, and second pulleys 3 are installed at both ends of the second slide groove 1.2.
[0039] Secondly, it includes a street lamp 4, a track groove connector 5, a first cable 6 and a first motor 7. The track groove connector 5 includes a main body 5.1 and a plurality of first protrusions 5.2 fixed to each other; specifically, the main body 5.1 is an H-shaped structure, and each first protrusion 5.2 is vertically extended outward along the back of the main body (defined in this embodiment as Figure 2 The side of the main body 5.1 close to the support rod 1 is its back side). Among them, the non-luminous area of the street lamp 4 is fixed to the same side ends of the two parallel edges in the main body 5.1, and the free ends of each first protrusion 5.2 are respectively correspondingly clamped in the first slide groove 1.1 and each first auxiliary groove 1.3. At this time, the cooperation between the first auxiliary groove 1.3 and the first protrusion 5.2 will improve the stability and reliability of the subsequent street lamp 4 during actual lifting and lowering operation. The first rope 6 is sequentially wound around the first pulley 2 at both ends of the first slide groove 1.1, and the two ends are respectively fixed to the rail groove connector 5 and the first pulley 2. The first motor 7 is arranged in cooperation with the first pulley to which the free end of the first rope is fixed to drive it to rotate. The lifting structure of the rope and the pulley in this embodiment is not only labor-saving, but also has the advantage of simple structure, and can be better applied to the street lamp system described in this embodiment. Specifically, the first motor 7 is arranged at the lower end of the first slide groove 1.1. At this time, when the first motor 7 fails, it can be easily maintained, thereby further improving the convenience of operation and maintenance of the street lamp system.
[0040] Furthermore, it includes a wind turbine 8, a photovoltaic assembly 9, an energy storage device 10, a second rope 11 and a second motor 12. The wind turbine 8 and the photovoltaic assembly 9 are both arranged on the energy storage device 10. The photovoltaic assembly 9 includes a photovoltaic panel 9.1, a fixing plate 9.2, a first fixing member 9.3, a second fixing member 9.4, a hinge rod 9.5 and a third motor 9.6. The fixing plate 9.2 is provided with a third slide groove 9.2a and a fourth slide groove 9.2b, one end of the first fixing member 9.3 is fixed to the photovoltaic panel 9.1, and the other end is placed in the third slide groove 9.2a. One end of the second fixing member 9.4 is fixed to the photovoltaic panel 9.1, and the other end is fixed to one end of the hinge rod 9.5. The other end of the hinge rod 9.5 is placed in the fourth slide groove 9.2b, and the third motor 9.6 is arranged in cooperation with the end of the hinge rod 9.5 placed in the fourth slide groove 9.2b to drive it to move in the fourth slide groove 9.2b. Specifically, the first fixing member 9.3 and the second fixing member 9.4 are fixed to an opposite side of the photovoltaic panel 9.1 to improve the reliability of the photovoltaic panel clamping effect, and the second motor 12 is arranged at the lower end of the second slide groove 1.3 to facilitate the maintenance of the second motor 12.
[0041] The energy storage device 10 is provided with a plurality of second protrusions 10.1 on the outside, and the free ends of the second protrusions 10.1 are respectively correspondingly clamped in the second chute 1.2 and the second auxiliary chute 1.4. At this time, the coordinated movement of the second auxiliary chute 1.4 and the second protrusions 10.1 can improve the reliability of the lifting movement of the energy storage device 10. The second rope 11 is sequentially wound around the second pulleys 3 at both ends of the second chute 1.2, and the two ends are respectively fixed to the energy storage device 10 and the second pulley 3. The second motor 12 is arranged in coordination with the second pulley to which the free ends of the second rope are fixed to drive it to rotate.
[0042] It also includes a meteorological monitoring sensor 13 and a camera 14 , and both the meteorological monitoring sensor 13 and the camera 14 are fixed on the energy storage device 10 .
[0043] Finally, a controller is also included, which is used to control the electric energy converted by the wind turbine 8 and the photovoltaic panel 9.1 to be stored in the energy storage device 10 to supply power to the street lamp 4, the first motor 7, the second motor 12, the third motor 9.6, the meteorological monitoring sensor 13 and the camera 14. The image data of the camera 14 is obtained to control the street lamp to light up or turn off. The monitoring data of the meteorological monitoring sensor 13 is obtained to drive the third motor 9.6 to move, and the repair instruction or maintenance instruction is obtained to drive the first motor 7 and the second motor 12 to move.
[0044] At this time, during the specific implementation, during the working process of the street lamp, the closed-loop operation of the entire street lamp system can be realized, so that a single street lamp has a higher degree of integration and independence, and while being more energy-saving, it also avoids the abnormality of a component on a single street lamp from causing corresponding effects on other street lamps on the same string of roads. Specifically, the current flow of people can be calculated by the image data obtained by the camera 14 to control the street lamp to automatically turn off when no people pass by, and automatically turn on when people pass by, thereby further achieving the purpose of energy saving. Further, the image processing algorithm in the controller will perform contour extraction on the image data to control the corresponding street lamp to light up when judging the existence of personnel information, and vice versa, the corresponding street lamp will be controlled to turn off. The corresponding monitoring data can be obtained by the meteorological monitoring sensor 13 to drive the third motor 9.6 to move. On the one hand, the angle of the photovoltaic panel can be adjusted to improve the efficiency of photovoltaic power generation, and on the other hand, the wind speed can be too large to cause irreversible damage to the photovoltaic panel. Preferably, the width of the fixed plate 9.2 is also set to be not less than the width of the photovoltaic panel 9.1. At this time, when the photovoltaic panel 9.1 is placed horizontally due to the influence of wind speed, the fixing plate 9.2 will form a favorable supporting effect on the photovoltaic panel 9.1, further ensuring the structural integrity of the photovoltaic panel 9.1. When it is necessary to perform abnormal maintenance or daily maintenance of the photovoltaic assembly 9 or the wind turbine 8, the second motor 12 can be controlled by the controller to operate, drive the second pulley 3 to rotate, and then drive the second rope 11 to move so that the energy storage device 10 can be lowered for the convenience of technicians to perform related operations; and when the operation is completed, the energy storage device 10 can also be raised to quickly return the power generation device to the working position. Similarly, when it is necessary to perform abnormal maintenance or daily maintenance of the street lamp 4, the first motor 7 can be controlled by the controller to operate, drive the first pulley 2 to rotate, and then drive the first rope 6 to move so that the street lamp 4 can be lowered for the convenience of technicians to perform related operations; and when the operation is completed, the street lamp 4 can also be raised to quickly return the street lamp to the working position.
[0045] In order to avoid damage to the photovoltaic panel 9.1 during the adjustment process, a buffer is provided at the structure where the first fixing member 9.3 and the second fixing member 9.4 are fixed to the photovoltaic panel. Specifically, the buffer can be a rubber strip, a foam board or other structure.
[0046] During the up and down movement of the street lamp 4, in order to improve the movement stability and avoid derailment, the system is also provided to include a plurality of first limit rods 15. Specifically, the first limit rods 15 are separately arranged at the two ends of the first slide 1.1 to limit the street lamp 4. Similarly, during the up and down movement of the energy storage device 10, in order to improve the movement stability and avoid derailment, the system is also provided to include a plurality of second limit rods 16. Specifically, the second limit rods 16 are separately arranged at the two ends of the second slide 1.3 to limit the energy storage device 10.
[0047] As a preferred embodiment, in order to facilitate the use of the wind-solar complementary street lamp system in a row, to avoid the phenomenon of too many cameras on the same road section causing waste of resources; the camera 14 is set to be detachable. Specifically, the camera 14 can be installed on the energy storage device 10 by threaded matching. Further, considering the functional diversification of the wind-solar complementary street lamp in its use scenario to simplify the hardware design of the entire road system, the camera 14 is also set to have an intelligent security function. Specifically, the controller is also used to obtain the image data of the camera 14 to determine the occurrence of a safety accident and send an alarm message to the background control end. Then the relevant personnel perform corresponding processing. Specifically, the image processing data in the controller will extract the contour of the image data and compare it with the contour features in the database to determine the existence of a dangerous situation. When the alarm information is generated and sent to the background control end. Specifically, the background control end can automatically forward the alarm information to the relevant functional department, or the technicians can process and judge it and then send the alarm information to the relevant functional department.
[0048] In summary, the street lamp system described in this embodiment has the following technical advantages: First, a unique chute structure is designed, which is convenient for fixing the photovoltaic panel, and the hinge rod can be controlled by the motor, so that the photovoltaic panel and other components can be adjusted according to different lighting and wind conditions. In this way, the photovoltaic panel can always be at the best lighting angle, and the wind turbine can also better receive wind energy, thereby greatly improving the power generation efficiency. Secondly, a component lifting system is designed, and the lifting of the components can be realized through the combination of chute, pulley and steel cable, which is convenient for the maintenance and replacement of each component, saving subsequent costs and improving maintenance efficiency. Furthermore, the camera and meteorological monitoring sensor are integrated, which not only provides lighting for the road, but also realizes intelligent security and meteorological monitoring functions. The camera can monitor the surrounding environment in real time, detect abnormal conditions in time and send an alarm to the platform, which improves the safety of the road and surrounding areas. The meteorological monitoring sensor can provide the optimal angle for the operation of the photovoltaic panel and optimize the power generation efficiency. At the same time, the street lamp, wind and solar power generation system, security equipment and meteorological monitoring equipment are integrated on a support rod, realizing the compact structure and integrated functions. This design reduces the floor space and reduces the installation and maintenance costs.
[0049] Although the present invention has been disclosed as above with preferred embodiments, it is not intended to limit the present invention. A person with ordinary knowledge in the technical field to which the present invention belongs may make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the protection scope of the present invention shall be determined by the definition of the claims.
Claims
1. An integrated intelligent security streetlight system with wind and solar complementarity, characterized in that: include: A support rod, wherein a first slide groove is provided on one side wall along the length direction of the support rod, and a second slide groove is provided on the other side wall, first auxiliary grooves in the same direction are provided on both wings of the first slide groove, and second auxiliary grooves in the same direction are provided on both wings of the second slide groove; first pulleys are provided at both ends of the first slide groove, and second pulleys are provided at both ends of the second slide groove; A street lamp, a rail groove connector, a first cable and a first motor; the rail groove connector includes a main body and a plurality of first protrusions fixed to each other, the main body is an H-shaped structure, and each first protrusion is vertically extended outward along the back of the main body; wherein the non-luminous area of the street lamp is fixed to the same side ends of two parallel prisms in the main body, and the free ends of each first protrusion are respectively correspondingly clamped in the first slide groove and each first auxiliary groove; the first cable sequentially passes around the first pulleys at both ends of the first slide groove, and the two ends are respectively fixed to the rail groove connector and the first pulley; the first motor is matched with the first pulley to which the free end of the first cable is fixed to drive it to rotate; A wind turbine, a photovoltaic assembly, an energy storage device, a second rope and a second motor; the wind turbine and the photovoltaic assembly are both arranged on the energy storage device; the photovoltaic assembly includes a photovoltaic panel, a first fixing member of a fixing plate, a second fixing member, a hinge rod and a third motor; a third slide groove and a fourth slide groove are arranged on the fixing plate, one end of the first fixing member is fixed to the photovoltaic panel, and the other end is placed in the third slide groove; one end of the second fixing member is fixed to the photovoltaic panel, and the other end is fixed to one end of the hinge rod; the other end of the hinge rod is placed in the fourth slide groove, and the third motor is matched with the end of the hinge rod placed in the fourth slide groove to drive it to move linearly in the fourth slide groove; The energy storage device is provided with a plurality of second protrusions on the outside, and the free ends of the second protrusions are respectively correspondingly clamped in the second chute and the second auxiliary chute; the second rope is passed around the second pulleys at both ends of the second chute in sequence, and the two ends are respectively fixed to the energy storage device and the second pulley; the second motor is arranged in cooperation with the second pulley to which the free ends of the second rope are fixed to drive it to rotate; A meteorological monitoring sensor, wherein the meteorological monitoring sensor is fixed on the energy storage device; A camera, wherein the camera is fixed on the energy storage device; A controller, the controller is used to control the storage of the electric energy converted by the wind turbine and the photovoltaic panel in the energy storage device to power the street lamp, the first motor, the second motor, the third motor, the meteorological monitoring sensor and the camera; to obtain image data from the camera to control the lighting or extinguishing of the street lamp based on the flow of people information, and to send an alarm message to the background control end when a safety accident occurs based on the image data; to obtain monitoring data from the meteorological monitoring sensor to drive the third motor to perform linear motion; and to obtain repair instructions or maintenance instructions to drive the first motor and / or the second motor to perform rotational motion.
2. The integrated intelligent security street lamp system with wind and solar complementarity according to claim 1 is characterized in that: The first sliding groove and the second sliding groove are arranged on an opposite side wall of the support rod.
3. The integrated intelligent security street lamp system with wind and solar complementarity according to claim 1 is characterized in that: include: A plurality of first limiting rods and a plurality of second limiting rods; each first limiting rod is disposed at two ends of the first sliding slot, and each second limiting rod is disposed at two ends of the second sliding slot.
4. The integrated intelligent security street lamp system with wind and solar complementarity according to claim 1 is characterized in that: The camera is a detachable installation structure.
5. The integrated intelligent security street lamp system with wind and solar complementarity according to claim 1 is characterized in that: The width of the fixing plate is not less than the width of the photovoltaic panel.
6. The integrated intelligent security street lamp system with wind and solar complementarity according to claim 1 is characterized in that: The first motor is arranged at the lower end of the first sliding slot.
7. The integrated intelligent security street lamp system with wind and solar complementarity according to claim 1 is characterized in that: The second motor is arranged at the lower end of the second chute.
8. The integrated intelligent security street lamp system of wind and solar complementarity according to claim 1 is characterized in that: A buffer is provided at the structures where the first fixing member and the second fixing member are fixed to the photovoltaic panel.
9. The integrated intelligent security street lamp system of wind and solar complementarity according to claim 1 is characterized in that: The first fixing member and the second fixing member are fixed to an opposite side edge of the photovoltaic panel.
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