An LED smart street light with an automatic drone charging pad

By designing the apron unit of smart street lights, the problem of drone charging is solved, efficient drone shutdown and charging is achieved, adapting to complex weather conditions, and improving the working efficiency of drone.

CN119713221BActive Publication Date: 2025-08-29LONGTENG LIGHTING GRP
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Patent Information

Application Number
CN202411842603.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2025-08-29
Estimated Expiration
2044-12-13

AI Technical Summary

Technical Problem

It is difficult to find a suitable stop point to charge after the power is exhausted, and the apron is easily affected by moisture when the humidity is high or rainy, resulting in low downtime efficiency.

Method used

An LED smart street light with a drone automatic charging apron is designed, including a lamp pole, an LED light head and apron unit. The apron unit is equipped with a sliding cover, a solar panel, a control box, a wireless charging unit, a temperature and humidity sensor, a fan unit and a heating unit, which can automatically identify the drone, judge the shutdown position, process moisture and realize wireless charging.

Benefits of technology

The installation scope of the drone apron has been expanded, the downtime efficiency has been improved, two drones can be parked at the same time, and moisture is treated in time on rainy days to ensure safe charging of the drone.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application discloses an LED smart street light with an automatic charging pad for drones, comprising a lamp pole, a plurality of LED lamp heads, and a pad unit installed on the top of the lamp pole; the pad unit comprises a shell and two sliding covers, the sliding covers are equipped with solar panels, a control box is installed in the shell, and a control unit and a battery are installed in the control box. In the smart street light of the present application, the pad unit can be set at the top of the lamp pole, so that the range of installation options for the drone pad is wider. The pad unit can park two drones at the same time, so that the parking efficiency is high, and the drones can be charged after parking. The control box can achieve efficient heat dissipation, and the moisture on the drone can be handled in time. The accuracy of the drone parking position can be judged by weighing to ensure the safety of the drone's take-off and landing.
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Description

Technical Field

[0001] The present invention relates to the technical field of street lamps, and more specifically, to an LED smart street lamp with an automatic charging apron for drones. Background Art

[0002] The widespread adoption of drone technology has undoubtedly brought unprecedented change and opportunities to numerous industries. From aerial photography and environmental monitoring to logistics and agricultural plant protection, drones, with their unique perspectives, efficient operation methods, and flexible operation, are gradually changing the way we live and work.

[0003] As drones expand in scope, the issue of their limited battery life becomes increasingly prominent. Once the battery runs out, drones must return to base or designated parking spots for recharging, which is inconvenient. Furthermore, in complex environments like cities, finding suitable parking spots is challenging, and their limited availability makes it difficult to accommodate the large number of drones needed. Consequently, parking and charging drones is becoming increasingly problematic. Some drone landing pads are limited, accommodating only one drone, significantly limiting parking efficiency and reducing overall drone efficiency. Furthermore, when operating outdoors, drones may encounter light rain or operate in high humidity. In these situations, moisture can easily accumulate on the drone's surface. If moisture is not promptly removed after a drone is parked, it can negatively impact the landing pad's functionality. Summary of the Invention

[0004] The present invention aims to overcome the defects of the prior art and provide an LED smart street lamp with an automatic charging apron for drones.

[0005] In order to achieve the above-mentioned objectives, the present invention provides the following technical solutions: a street lamp, comprising a lamp pole, multiple LED lamp heads and a helipad unit installed on the top of the lamp pole; the helipad unit comprises a shell and two sliding covers, a solar panel is installed on the sliding cover, a control box is installed in the shell, and a control unit and a battery are installed in the control box; the shell comprises a bottom plate, two panels and two side panels, the inner side of the panel has a bar slide rail, a mounting groove and two bar grooves connected to the mounting groove, a first motor is installed in the mounting groove, the motor shaft of the first motor extends at both ends, and the two ends of the motor shaft of the first motor are connected to a first screw rod, the two sides of the sliding cover have a bar slide groove cooperating with the bar slide rail and a slider that can slide along the bar groove, and the slider has a first threaded channel cooperating with the first screw rod.

[0006] Furthermore, the panel is a flat panel.

[0007] Furthermore, the sliding cover includes two cover side plates and a cover plate connecting the two cover side plates, and the strip-shaped sliding groove and the sliding block are both located on the cover side plates.

[0008] Furthermore, the shell also includes two arc panels, and the arc panels connect the side panels and the bottom panel.

[0009] Furthermore, the panel is fixedly connected to the side panels, the curved panel and the bottom panel.

[0010] Furthermore, an end of the cover side plate close to the first motor has an avoidance groove.

[0011] Thereby, the first motor can be avoided.

[0012] Furthermore, the two side panels of the shell are respectively a first side panel and a second side panel, the first side panel is fixed with a first fixing panel and a second fixing panel, the first fixing panel is hinged with a first shutdown panel, the first shutdown panel is installed with a first wireless charging unit, the second fixing panel is hinged with a second shutdown panel, the second shutdown panel is installed with a second wireless charging unit, the second side panel is installed with a first supporting panel and a second supporting panel, the first supporting panel is installed with a first pressure sensor that can be pressed by the first shutdown panel, and the second supporting panel is installed with a second pressure sensor that can be pressed by the second shutdown panel; Passive gears are fixed on both sides of one end of a shutdown plate close to the first fixed plate, and gear drive units are installed at both ends of the first fixed plate, and the gear drive unit is installed with a driving gear that meshes with the passive gear; the control box is installed on the bottom plate, the space above the first shutdown plate is the first shutdown space, the space between the first shutdown plate and the second shutdown plate is the second shutdown space, and the space between the bottom plate and the second shutdown space is the control box installation space; temperature sensors and humidity sensors are installed in the first shutdown space, the second shutdown space and the control box installation space.

[0013] Furthermore, a first temperature sensor and a first humidity sensor are installed in the first parking space; a second temperature sensor and a second humidity sensor are installed in the second parking space; and a third temperature sensor and a third humidity sensor are installed in the control box installation space.

[0014] Furthermore, the first parking board has a first identification code, and the second parking apron has a second identification code.

[0015] Therefore, the identification code can help the drone to be better stopped.

[0016] Furthermore, the gear drive unit includes a drive motor and a gear box.

[0017] This allows for better driving of the passive gear.

[0018] Furthermore, first baffles are fixed on both sides of the first shutdown plate, and second baffles are fixed on both sides of the second shutdown plate.

[0019] This prevents rainwater from flowing out from both sides.

[0020] Furthermore, the shell has an L-shaped installation space, and the L-shaped installation space extends from the bottom plate to the first side plate, and the L-shaped installation space includes the bottom plate space located in the bottom plate, the arc panel space located in the arc panel and the side plate space located in the first side plate, and the bottom plate is installed with a fan unit capable of supplying air to the bottom plate space, and the bottom plate also has a through-hole array, and the control box is located between the fan unit and the through-hole array; the inner side of the first side plate is installed with a first nozzle, a second nozzle and a third nozzle, the first nozzle can blow air into the first parking space, the second nozzle can blow air into the second parking space, and the third nozzle can blow air into the control box installation space; a heating Unit, the heating unit is located above the third nozzle; the first support plate and the second support plate are both hinged to the second side plate, a first electric telescopic rod is connected between the first support plate and the second side plate, and a second electric telescopic rod is connected between the second support plate and the second side plate; the first support plate has a first liquid receiving groove and a first liquid outlet channel connected to the first liquid receiving groove, the second support plate has a second liquid receiving groove and a second liquid outlet channel connected to the second liquid receiving groove, the second side plate has a first strip through groove and a second strip through groove, a first flexible connecting tube is connected between the first liquid outlet channel and the first strip through groove, and a second flexible connecting tube is connected between the second liquid outlet channel and the second strip through groove.

[0021] Thus, rainwater can flow out from the first liquid receiving groove, the first liquid outlet channel, the first flexible connecting pipe, and the first strip-shaped through-channel, and rainwater can flow out from the second liquid receiving groove, the second liquid outlet channel, the second flexible connecting pipe, and the second strip-shaped through-channel. The flexible connecting pipe can achieve a good connection between the liquid outlet channel and the strip-shaped through-channel to prevent leakage.

[0022] Furthermore, the first side plate also has a limiting channel connected to the side plate space and a motor space connected to the limiting channel, and an L-shaped limiting plate is also fixed in the side plate space, and a valve plate is installed in the side plate space, the top end of the valve plate is inserted into the limiting channel, and the bottom end is inserted into the L-shaped limiting plate, and a second motor is installed in the motor space, and the second motor drives a second screw rod, and the top end of the valve plate has a second threaded channel cooperating with the second screw rod, and the valve plate has a first communicating groove, a second communicating groove and a third communicating groove, and the valve plate can be in a first state, a second state and a third state. In the first state, the first communicating groove is connected to the first nozzle, the second communicating groove is connected to the second nozzle, and the third communicating groove is connected to the third nozzle; in the second state, the first communicating groove is connected to the first nozzle, the second communicating groove is connected to the second nozzle, and the third nozzle is blocked by the valve plate; in the third state, the first nozzle is blocked by the valve plate, the second nozzle is blocked by the valve plate, and the third communicating groove is connected to the third nozzle.

[0023] Therefore, whether the first, second and third nozzles are unobstructed can be controlled through the valve plate.

[0024] Furthermore, one end of the first electric telescopic rod is hinged to the first support plate, and the other end is hinged to the second side plate, and the first electric telescopic rod has two; one end of the second electric telescopic rod is hinged to the second support plate, and the other end is hinged to the second side plate, and the second electric telescopic rod has two.

[0025] Furthermore, there are multiple heating units.

[0026] Furthermore, the plurality of heating units are divided into a plurality of first heating units and a plurality of second heating units, the plurality of first heating units are located between the first nozzle and the second nozzle, and the plurality of second heating units are located between the second nozzle and the third nozzle.

[0027] Furthermore, the first nozzle, the second nozzle and the third nozzle are all strip-shaped nozzles.

[0028] Furthermore, the lamp pole includes a bottom flange, a base fixedly connected to the bottom flange, a top connecting seat, a plurality of reinforced connecting seats and a plurality of vertical rods fixedly connected to the base, the number of the vertical rods is equal to the number of LED lamp heads, and an LED lamp head is fixedly connected to the top of each vertical rod; the top connecting seat and the reinforced connecting seat are both passed through by all the vertical rods and fixedly connected to all the vertical rods; the top connecting seat is fixedly connected to a support rod, the top of the support rod is fixed with a support seat, and the apron unit is fixedly connected to the support seat.

[0029] Furthermore, a display screen unit, a video monitoring unit, a voice broadcast unit and an air quality sensor unit are installed on the lamp pole.

[0030] Beneficial effects:

[0031] 1. The smart street light of this application can be installed on the top of the lamp pole, so that the installation options of the drone landing pad are wider.

[0032] 2. The smart street light of this application and the helipad unit can park two drones at the same time, thereby improving the parking efficiency and enabling the drones to be charged after parking.

[0033] 3. The smart street light of this application can achieve efficient heat dissipation for the control box and can promptly handle moisture brought by the drone.

[0034] 4. The smart street light of this application can determine the accuracy of the drone's parking position by weighing, ensuring the safety of the drone's takeoff and landing. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] Figure 1 This is a schematic diagram of street lights;

[0036] Figure 2 This is an enlarged view of area A;

[0037] Figure 3 Schematic diagram for opening the two sliding covers;

[0038] Figure 4 This is an enlarged view of area B;

[0039] Figure 5 This is an enlarged view of area C;

[0040] Figure 6 Erect a schematic diagram for the first shutdown board;

[0041] Figure 7 This is an enlarged view of area D;

[0042] Figure 8 This is a cross-sectional diagram of the apron unit in the first state;

[0043] Figure 9 This is an enlarged view of area E;

[0044] Figure 10 This is an enlarged view of area F;

[0045] Figure 11 This is an enlarged view of area G;

[0046] Figure 12 This is a cross-sectional diagram of the apron unit in the second state;

[0047] Figure 13 This is an enlarged view of the H region;

[0048] Figure 14 This is an enlarged view of area I;

[0049] Figure 15 This is an enlarged view of the J region;

[0050] Figure 16 This is an enlarged view of the K region;

[0051] Figure 17 This is a cross-sectional diagram of the apron unit in the third state;

[0052] Figure 18 This is an enlarged view of the L area;

[0053] Figure 19 This is an enlarged view of the M area.

[0054] Explanation of the reference numerals: lamp pole 1; bottom flange 1.1; base 1.2; top connecting seat 1.3; reinforcing connecting seat 1.4; vertical rod 1.5; support rod 1.6; support seat 1.7; LED lamp head 2; housing 3; bottom plate 3.1; bottom plate space 3.1.1; panel 3.2; first side panel 3.3; first fixing plate 3.3.1; through hole array 3.1.2; second fixing plate 3.3.2; side panel space 3.3.3; second side panel 3.4; first supporting plate 3.4.1; second supporting plate 3.4.2; first liquid receiving groove 3.4.3; first liquid outlet channel 3.4.4; first strip through groove 3.4.5; second liquid receiving groove 3.4.6; second liquid outlet channel 3.4.7; second strip through groove 3.4.8; strip slide rail 3.5; mounting groove 3.6; strip groove 3.7; curved panel 3.8 ; Arc panel space 3.8.1; First nozzle 3.9; Second nozzle 3.10; Third nozzle 3.11; L-shaped limit plate 3.12; Sliding cover 4; Strip slide 4.1; Slider 4.2; Solar panel 5; Control box 6; First motor 7; First screw 7.1; First shutdown plate 8; First wireless charging unit 8.1; Passive gear 8.2; First baffle 8.3; Second shutdown plate 9; Second wireless charging unit 9.1; Second baffle 9.2; First pressure sensor 10; Second pressure sensor 11; Gear drive unit 12; Drive gear 12.1; Fan unit 13; First electric telescopic rod 14; Second electric telescopic rod 15; Valve plate 16; First connecting groove 16.1; Second connecting groove 16.2; Third connecting groove 16.3; Second motor 17; Second screw 17.1; Heating unit 18. DETAILED DESCRIPTION

[0055] The following describes embodiments of the present invention in detail, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and are not to be construed as limiting the present invention.

[0056] The present invention provides an LED smart street lamp with an automatic charging apron for drones as shown in the figure, comprising a lamp pole 1, multiple LED lamp heads 2 and a helipad unit installed at the top of the lamp pole 1; the helipad unit comprises a shell 3 and two sliding covers 4, the sliding covers 4 are equipped with solar panels 5, a control box 6 is installed in the shell 3, and a control unit and a battery are installed in the control box 6; the shell 3 comprises a bottom plate 3.1, two panels 3.2 and two side panels, the inner side of the panel 3.2 has a bar slide rail 3.5, a mounting groove 3.6 and two bar grooves 3.7 connected to the mounting groove 3.6, a first motor 7 is installed in the mounting groove 3.6, the motor shaft of the first motor 7 extends at both ends, and the two ends of the motor shaft of the first motor 7 are connected to a first screw rod 7.1, the two sides of the sliding cover 4 have a bar slide groove 4.1 that cooperates with the bar slide rail 3.5 and a slider 4.2 that can slide along the bar groove 3.7, and the slider 4.2 has a first threaded channel that cooperates with the first screw rod 7.1. The sliding cover 4 includes two cover side panels and a cover plate connecting the two cover side panels, and the strip slide 4.1 and the slider 4.2 are both located at the cover side panels; the shell 3 also includes two arc panels 3.8, and the arc panels 3.8 connect the side panels and the bottom panel 3.1. The two side panels of the shell 3 are respectively a first side panel 3.3 and a second side panel 3.4, wherein a first fixing panel 3.3.1 and a second fixing panel 3.3.2 are fixed to the first side panel 3.3, a first stop panel 8 is hingedly connected to the first fixing panel 3.3.1, a first wireless charging unit 8.1 is installed at the first stop panel 8, a second fixing panel 3.3.2 is hingedly connected to the second stop panel 9, a second wireless charging unit 9.1 is installed at the second stop panel 9, a first support panel 3.4.1 and a second support panel 3.4.2 are installed at the second side panel 3.4, a first pressure sensor 10 that can be pressed by the first stop panel 8 is installed at the first support panel 3.4.1, a pressure sensor 10 that can be pressed by the second stop panel 8 is installed at the second support panel 3.4.2. 9 pressed by the second pressure sensor 11; passive gears 8.2 are fixed on both sides of the first stop plate 8 close to the first fixed plate 3.3.1, and gear drive units 12 are installed at both ends of the first fixed plate 3.3.1, and the gear drive unit 12 is installed with a driving gear 12.1 engaged with the passive gear 8.2; the control box 6 is installed at the bottom plate 3.1, the space above the first stop plate 8 is the first stop space, the space between the first stop plate 8 and the second stop plate 9 is the second stop space, and the space between the bottom plate 3.1 and the second stop space is the control box installation space; temperature sensors and humidity sensors are installed in the first stop space, the second stop space and the control box installation space.

[0057] A first baffle 8.3 is fixed on both sides of the first shutdown plate 8, and a second baffle 9.2 is fixed on both sides of the second shutdown plate 9; the shell 3 has an L-shaped installation space, and the L-shaped installation space extends from the bottom plate 3.1 to the first side plate 3.3, and the L-shaped installation space includes a bottom plate space 3.1.1 located in the bottom plate 3.1, an arc panel space 3.8.1 located in the arc panel 3.8 and a side panel space 3.3.3 located in the first side plate 3.3, and a fan unit 13 capable of entering the bottom plate space 3.1.1 is installed on the bottom plate 3.1, and the bottom plate 3.1 also has a through-hole array 3.1.2, and the control box 6 is located between the fan unit 13 and the through-hole array 3.1.2; the first side plate 3.3 A first nozzle 3.9, a second nozzle 3.10 and a third nozzle 3.11 are installed on the inner side. The first nozzle 3.9 can blow air into the first parking space, the second nozzle 3.10 can blow air into the second parking space, and the third nozzle 3.11 can blow air into the control box installation space; a heating unit is installed in the side panel space 3.3.3, and the heating unit 18 is located above the third nozzle 3.11; the first support plate 3.4.1 and the second support plate 3.4.2 are both hinged to the second side plate 3.4, and a first electric telescopic rod 14 is connected between the first support plate 3.4.1 and the second side plate 3.4, and a second electric telescopic rod 15 is connected between the second support plate 3.4.2 and the second side plate 3.4; the first support plate 3.4 .1 has a first liquid receiving groove 3.4.3 and a first liquid outlet channel 3.4.4 connected to the first liquid receiving groove 3.4.3, the second support plate 3.4.2 has a second liquid receiving groove 3.4.6 and a second liquid outlet channel 3.4.7 connected to the second liquid receiving groove 3.4.6, the second side plate 3.4 has a first strip through groove 3.4.5 and a second strip through groove 3.4.8, a first flexible connecting tube is connected between the first liquid outlet channel 3.4.4 and the first strip through groove 3.4.5, and a second flexible connecting tube is connected between the second liquid outlet channel 3.4.7 and the second strip through groove 3.4.8 (in the figure, the first flexible connecting tube and the second flexible connecting tube are not drawn); the first side plate 3.3 also has a The space 3.3.3 is connected to the limiting channel and the motor space connected to the limiting channel. An L-shaped limiting plate 3.12 is also fixed in the side plate space 3.3.3. A valve plate 16 is installed in the side plate space 3.3.3. The top end of the valve plate 16 is inserted into the limiting channel, and the bottom end is inserted into the L-shaped limiting plate 3.12. A second motor 17 is installed in the motor space. The second motor 17 drives a second screw rod 17.1. The top end of the valve plate 16 has a second threaded channel that cooperates with the second screw rod 17.1. The valve plate 16 has a first connecting groove 16.1, a second connecting groove 16.2 and a third connecting groove 16.3. The valve plate 16 can be in a first state, a second state and a third state. In the first state, the first connecting groove 16.1 is connected to the first nozzle 3.9, the second connecting groove 16.2 is connected to the second nozzle 3.10, and the third connecting groove 16.3 is connected to the third nozzle 3.11; in the second state, the first connecting groove 16.1 is connected to the first nozzle 3.9, the second connecting groove 16.2 is connected to the second nozzle 3.10, and the third nozzle 3.11 is blocked by the valve plate 16; in the third state, the first nozzle 3.9 is blocked by the valve plate 16, the second nozzle 3.10 is blocked by the valve plate 16, and the third connecting groove 16.3 is connected to the third nozzle 3.11.

[0058] One end of the first electric telescopic rod 14 is hinged to the first support plate 3.4.1, and the other end is hinged to the second side plate 3.4. There are two first electric telescopic rods 14. One end of the second electric telescopic rod 15 is hinged to the second support plate 3.4.2, and the other end is hinged to the second side plate 3.4. There are two second electric telescopic rods 15. There are multiple heating units 18; the first nozzle 3.9, the second nozzle 3.10, and the third nozzle 3.11 are all strip nozzles. The lamp pole 1 includes a bottom flange 1.1, a base 1.2 fixedly connected to the bottom flange 1.1, a top connecting seat 1.3, a plurality of reinforced connecting seats 1.4, and a plurality of vertical rods 1.5 fixedly connected to the base 1.2. The number of the vertical rods 1.5 is equal to the number of LED lamp heads 2, and an LED lamp head 2 is fixedly connected to the top of each vertical rod 1.5; the top connecting seat 1.3 and the reinforced connecting seat 1.4 are passed through by all the vertical rods 1.5 and fixedly connected to all the vertical rods 1.5; the top connecting seat 1.3 is fixedly connected to a support rod 1.6, the top of the support rod 1.6 is fixedly connected to a support seat 1.7, and the apron unit is fixedly connected to the support seat 1.7. The lamp pole 1 is installed with a display screen unit, a video monitoring unit, a voice broadcast unit, and an air quality sensor unit (the display screen unit, video monitoring unit, voice broadcast unit, and air quality sensor unit are not drawn in the figure).

[0059] Working principle: The street light with a drone landing pad in the present application has a wide range of installation options for the drone landing pad. After operation, the drone can be parked at the landing pad to be charged, so that the next operation can be carried out. As shown in the figure, the sliding cover can be opened on both sides, so that the drone can be parked, and the sliding cover can be used to charge the battery of the drone landing pad, so that the battery can be used to charge the drone. The two sliding covers are opened, and the gear drive unit can drive the drive gear to erect the first landing plate, so that the drone can use the second landing plate to stop. After stopping, the pressure sensor can sense the weight, not only to sense whether the drone has been parked, but also the difference in the parking position of the drone on the landing plate will cause different measurement values ​​of the pressure sensor. Therefore, the measurement value of the pressure sensor can be used to determine whether the parking position of the drone on the landing plate is correct.

[0060] After the drone is shut down, if the humidity sensor detects high humidity, the electric telescopic rod can drive the support plate to rotate slightly downward, causing the end of the shutdown plate closer to the support plate to tilt slightly downward. The fan unit and heating unit can also blow hot air (the drone is not charging at this time), allowing rainwater to slide down the shutdown plate and out of the first and second strip grooves. The hot air can also dry the drone.

[0061] In addition, through the setting of the valve plate, it is possible to select whether the first, second, and third nozzles are ventilated, and whether multiple heating units are turned on or off. The first state can be selected, in which the first connecting groove is connected to the first nozzle, the second connecting groove is connected to the second nozzle, and the third connecting groove is connected to the third nozzle. At this time, the heating unit is closed, and the first parking space, the second parking space, and the control box installation space can be cooled (the drone is charging at this time). The second state can also be selected, in which the first connecting groove is connected to the first nozzle, the second connecting groove is connected to the second nozzle, and the third nozzle is blocked by the valve plate. At this time, only the first and second parking spaces are ventilated (the heating unit is turned on at this time, the drone is not charging, and is used to clean rainwater and moisture in the first and second parking spaces). The third state can also be selected, in which the first nozzle is blocked by the valve plate, the second nozzle is blocked by the valve plate, and the third connecting groove is connected to the third nozzle. At this time, it is only used for blowing and cooling the control box installation space.

[0062] Although the present invention has been illustrated and described with respect to the preferred embodiments, it will be understood by those skilled in the art that various changes and modifications may be made to the present invention without departing from the scope of the present invention as defined by the claims.

Claims

1. An LED smart street light with an automatic charging pad for drones, characterized by: It comprises a lamp pole, a plurality of LED lamp heads and a helipad unit installed on the top of the lamp pole; the helipad unit comprises a shell and two sliding covers, a solar panel is installed on the sliding cover, a control box is installed in the shell, a control unit and a battery are installed in the control box; the shell comprises a bottom plate, two panels and two side plates, the inner sides of the panels are provided with a strip slide rail, a mounting groove and two strip grooves connected to the mounting groove, a first motor is installed in the mounting groove, two ends of the motor shaft of the first motor extend out, and both ends of the motor shaft of the first motor are connected to a first screw rod, both sides of the sliding cover are provided with a strip slide groove cooperating with the strip slide rail and a slider capable of sliding along the strip groove, and the slider is provided with a first threaded channel cooperating with the first screw rod; The sliding cover includes two cover side panels and a cover plate connecting the two cover side panels, and the strip-shaped sliding groove and the slider are both located on the cover side panels; the housing also includes two curved panels, and the curved panels connect the side panels and the bottom panel; The two side panels of the shell are respectively a first side panel and a second side panel, a first fixing panel and a second fixing panel are fixed to the first side panel, a first stop panel is hingedly connected to the first fixing panel, a first wireless charging unit is installed on the first stop panel, a second fixing panel is hingedly connected to the second stop panel, a second wireless charging unit is installed on the second stop panel, a first support panel and a second support panel are installed on the second side panel, a first pressure sensor that can be pressed by the first stop panel is installed on the first support panel, and a second pressure sensor that can be pressed by the second stop panel is installed on the second support panel; a passive gear is fixed on both sides of the end of the first stop panel close to the first fixing panel, a gear drive unit is installed at both ends of the first fixing panel, and a drive gear engaged with the passive gear is installed on the gear drive unit; the control box is installed on the bottom panel, the space above the first stop panel is the first stop space, the space between the first stop panel and the second stop panel is the second stop space, and the space between the bottom panel and the second stop space is the control box installation space; a temperature sensor and a humidity sensor are installed in the first stop space, the second stop space and the control box installation space; For use of the second landing pad, the two sliding covers are opened, and the gear drive unit can drive the drive gear, thereby erecting the first landing plate, so that the drone can use the second landing plate for parking.

2. The LED smart street light with automatic drone charging parking area according to claim 1 is characterized in that: A first baffle is fixed on both sides of the first shutdown plate, and a second baffle is fixed on both sides of the second shutdown plate; the shell has an L-shaped installation space, and the L-shaped installation space extends from the bottom plate to the first side plate, and the L-shaped installation space includes a bottom plate space located in the bottom plate, an arc panel space located in the arc panel, and a side plate space located in the first side plate, and a fan unit capable of supplying air to the bottom plate space is installed on the bottom plate, and the bottom plate also has a through-hole array, and the control box is located between the fan unit and the through-hole array; a first nozzle and a second nozzle are installed on the inner side of the first side plate and a third nozzle, the first nozzle can blow air into the first parking space, the second nozzle can blow air into the second parking space, and the third nozzle can blow air into the control box installation space; a heating unit is installed in the side panel space, and the heating unit is located above the third nozzle; the first support plate and the second support plate are both hinged to the second side plate, a first electric telescopic rod is connected between the first support plate and the second side plate, and a second electric telescopic rod is connected between the second support plate and the second side plate; the first support plate has a first liquid receiving groove and a first liquid outlet channel connected to the first liquid receiving groove, the first support plate has a first liquid receiving groove and a first liquid outlet channel connected to the first liquid receiving groove, and the second The second support plate is provided with a second liquid receiving groove and a second liquid outlet channel connected to the second liquid receiving groove, the second side plate is provided with a first strip through groove and a second strip through groove, a first flexible connecting tube is connected between the first liquid outlet channel and the first strip through groove, and a second flexible connecting tube is connected between the second liquid outlet channel and the second strip through groove; the first side plate is also provided with a limiting channel connected to the side plate space and a motor space connected to the limiting channel, an L-shaped limiting plate is also fixed in the side plate space, a valve plate is installed in the side plate space, the top end of the valve plate is inserted into the limiting channel, and the bottom end is inserted into the L-shaped In the limiting plate, a second motor is installed in the motor space, and the second motor drives a second screw rod. The top end of the valve plate has a second threaded channel that cooperates with the second screw rod. The valve plate has a first communicating groove, a second communicating groove and a third communicating groove. The valve plate can be in a first state, a second state and a third state. In the first state, the first communicating groove is connected to the first nozzle, the second communicating groove is connected to the second nozzle, and the third communicating groove is connected to the third nozzle; in the second state, the first communicating groove is connected to the first nozzle, the second communicating groove is connected to the second nozzle, and the third nozzle is blocked by the valve plate; In the third state, the first nozzle is blocked by the valve plate, the second nozzle is blocked by the valve plate, and the third communicating groove is connected to the third nozzle.

3. The LED smart street light with automatic drone charging parking area according to claim 2 is characterized in that: One end of the first electric telescopic rod is hinged to the first support plate, and the other end is hinged to the second side plate. The first electric telescopic rod has two; one end of the second electric telescopic rod is hinged to the second support plate, and the other end is hinged to the second side plate. The second electric telescopic rod has two.

4. The LED smart street light with automatic drone charging parking area according to claim 2 is characterized in that: The heating unit has a plurality of nozzles; the first nozzle, the second nozzle and the third nozzle are all strip-shaped nozzles.

5. The LED smart street light with automatic drone charging parking area according to claim 2 is characterized in that: The lamp pole includes a bottom flange, a base fixedly connected to the bottom flange, a top connecting seat, multiple reinforced connecting seats and multiple vertical rods fixedly connected to the base, the number of the vertical rods is equal to the number of LED lamp heads, and an LED lamp head is fixedly connected to the top of each vertical rod; the top connecting seat and the reinforced connecting seat are passed through by all the vertical rods and fixedly connected to all the vertical rods; the top connecting seat is fixedly connected to a support rod, the top of the support rod is fixed with a support seat, and the apron unit is fixedly connected to the support seat.

6. The LED smart street light with automatic drone charging parking area according to claim 1 is characterized in that: A display screen unit, a video monitoring unit, a voice broadcast unit and an air quality sensor unit are installed on the lamp pole.

Citation Information

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