High-power LED lamp river-crossing lighting system based on wireless remote communication
The LED lighting system controlled by wireless remote communication solves the problems of inconvenient installation and difficult angle adjustment in traditional cross-river lighting systems, achieving efficient and uniform lighting effects and improved construction efficiency.
Patent Information
- Application Number
- CN202520115582.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-01-17
AI Technical Summary
Traditional cross-river lighting systems are inconvenient to install. The lamps are installed on the high-altitude cableway, making it difficult to adjust the beam angle. The vertical downward beam results in a limited lighting area and uneven illumination in the construction area, which is time-consuming and labor-intensive.
A high-power LED lighting system based on wireless remote communication is adopted. The winch is controlled by a remote communication signal transmitter to adjust the angle of the lamp panel assembly. Precise adjustment is achieved using steel wire ropes and angle adjustment components, and heat dissipation is achieved by combining the hollow structure of the lamp panel assembly.
It enables efficient, time-saving, and labor-saving adjustment of lamp angles, improves the uniformity of the lighting area and construction efficiency, and reduces the complexity of manual operation.
Smart Images

Figure CN223795202U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of cross-river lighting system, specifically is high -power LED lamps and lanterns cross-river lighting system based on wireless remote communication. BACKGROUND
[0002] The cross-river lighting system usually adopts advanced lighting technology, such as LED lamp and light guide lighting, which can significantly reduce energy consumption compared with traditional lighting methods. For example, LED lamp has high energy efficiency ratio, which can reduce power consumption, and light guide lighting transmits light through optical fiber without generating heat, further improving energy utilization efficiency. Modern cross-river lighting systems are often equipped with intelligent control systems that can automatically adjust brightness according to environmental changes and needs. For example, smart street lamps can automatically adjust brightness according to the light intensity and traffic volume of the surrounding environment, ensuring lighting effect and avoiding unnecessary energy waste. The cross-river lighting system not only provides lighting function, but also creates a unique urban night scene through light design, improving the overall image and aesthetic degree of the city. For example, through the contrast of cool and warm light colors and holiday mode light control, a vibrant urban atmosphere can be created. The intelligent lighting system can reduce manual intervention and improve management efficiency through remote monitoring and automatic control. At the same time, the fault alarm and automatic maintenance function of the intelligent street lamp can timely discover and solve problems, ensuring the continuity and safety of lighting.
[0003] However, the traditional cross-river lighting system has the following disadvantages:
[0004] (1) The traditional cross-river lighting system is not convenient to install: the lamp is installed on the high-altitude cableway, and the lamp irradiation angle adjustment is difficult;
[0005] (2) Vertical downward irradiation, no irradiation angle adjustment, limited lighting area, some construction areas cannot be illuminated at all, and some construction areas have very low illuminance, affecting construction;
[0006] (3) Adjust the angle on the ground, then move the lamp panel to the corresponding position through the cableway, turn on the light to confirm the irradiation angle, if the angle is not suitable, move the lamp panel to the ground and adjust the angle again, multiple operations are required until the appropriate angle is adjusted. For multiple lamp panels, this operation is very time-consuming and labor-intensive. INVENTION CONTENTS
[0007] The utility model discloses a purpose lies in providing the high -power LED lamps and lanterns cross river lighting system based on wireless remote communication to solve the inconvenient installation of traditional cross river lighting system in above -mentioned background art: the lamps and lanterns are installed on high altitude cableway, and the illumination angle adjustment of lamps and lanterns is difficult, and the vertical downward illumination is not adjusted illumination angle, and the illumination area is limited, and some construction area is not illuminated at all, and the illumination of some construction area is very low, and the construction is influenced, and the angle is adjusted on the ground, and then the lamp tray is moved to the corresponding position through the cableway, and the illumination angle is confirmed, and if the angle is not suitable, the lamp tray is moved to the ground and the angle is adjusted, and the operation is repeated for many times until the suitable angle is adjusted, and for multiple lamp trays, the operation is very time -consuming and laborious.
[0008] In order to realize the above-mentioned purpose, the utility model provides the following technical scheme: the high -power LED lamps and lanterns cross river lighting system based on wireless remote communication, including the steel cable body, the middle part of steel cable body is installed with the steel cable fixed component, the bottom of steel cable fixed component is installed with the winch fixed component, the bottom of winch fixed component is installed with winch mounting disc, the bottom of winch mounting disc is equipped with the lamp tray component, the bottom of lamp tray component is installed with a plurality of lamps and lanterns installation components, the bottom of a plurality of lamps and lanterns installation components all is installed with LED lamp, the bottom of winch mounting disc is installed with three angle adjustment components that are arranged in triangle, the bottom of three angle adjustment components all is connected with lamp tray component, the middle part of lamp tray component top is installed with LED lamps and lanterns junction box.
[0009] As a preferred technical scheme of the utility model, the angle adjustment component includes motor base and winch body, the bottom of motor base is fixedly connected with the top of winch body, the output end of winch body is fixedly installed with the pivot, one end of pivot is fixedly installed with the limit plate, the surface of pivot is connected with the steel wire rope, the bottom of steel wire rope is installed with the direction plate, the bottom of direction plate is rotatably connected with the angle seat, the bottom of angle seat is connected with lamp tray component, the top of motor base is connected with winch mounting disc, the winch body is started after electrification, and the winch drives the pivot to rotate, and the pivot drives the steel wire rope to complete the take-up and pay-off movement after rotating, and the steel wire rope pulls the direction plate from one side, and the direction plate deflects the angle relative to the angle seat, and the angle of lamp tray component is adjusted.
[0010] As a preferred technical scheme of the utility model, the surface of winch mounting disc is fixedly installed with the remote communication signal receiver, the remote communication signal receiver is signal connected with the remote communication signal transmitting device, the remote communication signal transmitting device sends the angle adjustment instruction, and the remote communication signal receiver controls the winch body to drive the pivot to rotate after receiving the instruction, and the illumination angle of the device is adjusted.
[0011] As a preferred technical scheme of the utility model, the winch fixing assembly includes a center pole and four fixing poles, the top of the four fixing poles is fixedly connected with the opposite end of the center pole, the two sides of the center pole are both provided with mounting poles, the top of the two mounting poles and the top of the center pole are both fixedly connected with the steel cable fixing assembly, the bottom of the two mounting poles and the bottom of the four fixing poles are both fixedly connected with the winch mounting disc, the center pole and the mounting pole are installed between the steel cable fixing assembly and the winch mounting disc.
[0012] As a preferred technical scheme of the utility model, the lamp plate assembly includes an outer lamp plate and an inner lamp plate, the outer side of the inner lamp plate is provided with a transition plate, a plurality of first reinforcing poles are fixedly installed on the outer side of the inner lamp plate, the end of the plurality of first reinforcing poles away from the inner lamp plate is fixedly connected with the opposite side of the transition plate, a plurality of second reinforcing poles are fixedly installed on the outer side of the transition plate, the outer side of the plurality of second reinforcing poles is fixedly connected with the opposite side of the outer lamp plate, the bottom of the outer lamp plate is connected with a plurality of lamp installation assemblies respectively, the top of the outer lamp plate is connected with three angle adjusting assemblies respectively, the lamp plate assembly is made of a hollow structure material, so that the LED lamp can be fully contacted with the low-temperature gas in the external environment during operation, and heat dissipation and cooling are completed.
[0013] As a preferred technical scheme of the utility model, the lamp installation assembly includes a mounting frame and two first tooth plates, the two sides of the inner wall of the mounting frame are both provided with clamping plates, the two sides of the inner wall of the mounting frame are respectively connected with the side away from the two first tooth plates, the side away from the two clamping plates is both provided with a second tooth plate, the outer side of the two first tooth plates is respectively engaged with the outer side of the two second tooth plates, the top of the mounting frame is connected with the lamp plate assembly, the opposite side of the two clamping plates is connected with the two sides of the LED lamp, the two clamping plates are clamped and fixed from the two sides of the LED lamp, in the process that the clamping plate rotates relative to the mounting frame, the first tooth plate rotates relative to the second tooth plate, and the stability of the angle deflection of the clamping plate is improved.
[0014] As a preferred technical scheme of the utility model, the steel cable fixing assembly includes a fixing seat and a plurality of assembly seats, the bottom of the plurality of assembly seats is fixedly connected with the bottom of the inner wall of the fixing seat, the top of the plurality of assembly seats is provided with a fixing ring, the two sides of the bottom of the plurality of fixing rings are both provided with locking screws penetrating to the outside, the surface of the plurality of locking screws is both provided with locking nuts in a threaded connection mode, the bottom of the fixing seat is connected with the winch fixing assembly, the user rotates the locking screw, the thread on the surface of the locking screw is matched with the thread on the inner wall of the assembly seat, so that the locking screw rotates and lifts relative to the assembly seat, so that the fixing ring and the fixing seat are clamped and fixed from the two sides of the steel cable body, and the user twists the locking nut to fix the locking screw.
[0015] As a preferred technical scheme of the utility model, the LED lamp junction box includes RESET circuit assembly, Crystal circuit assembly and circuit main spare, the RESET circuit assembly includes resistance R35, diode D1 and electric capacity C4, one end of electric capacity C4 is connected with one end of resistance R35 and one end of diode D1 respectively, the other end of electric capacity C4 is grounded, the Crystal circuit assembly includes electric capacity C5, crystal oscillator Y1 and electric capacity C6, one end of electric capacity C5 and one end of electric capacity C6 are connected with both ends of crystal oscillator Y1 respectively, the other end of electric capacity C5 and the other end of electric capacity C6 are all grounded, the ISP circuit assembly is equipped with power supply chip P5, the 6 end pin of power supply chip P5 is grounded, the circuit main spare includes chip U2, resistance R7, resistance R29, resistance R38, resistance R28, resistance R10, electric capacity C8 and LED3, the 21 end pin of chip U2 is connected with one end of resistance R28, the 23 end pin of chip U2 is connected with one end of resistance R38, the 22 end pin of chip U2 is connected with one end of resistance R7, the 24 end pin of chip U2 is connected with one end of resistance R29, the 29 end pin of chip U2 is connected with one end of electric capacity C8, the 32 end pin of chip U2 is connected with one end of LED3, the other end of electric capacity C8, the 6 end pin of chip U2, the 18 end pin of chip U2, the 28 end pin of chip U2, the 39 end pin of chip U2 are all grounded.
[0016] As a preferred technical scheme of the utility model, the remote communication signal receiver includes a first voltage reduction circuit component, a second voltage reduction circuit component and a communication circuit, the first voltage reduction circuit component includes a chip U6, a resistor R15, a resistor R16, a resistor R43, a resistor R32, a capacitor C18, a diode D8, a capacitor C13, a capacitor C2, a capacitor C3, a power supply chip P3, an inductor L11, an LED1 and a resistor R5, one end of the LED1 is connected with one end of the resistor R5, 5 end pins of the chip U6 are connected with 1 end pin of the power supply chip P3 and one end of the resistor R16 respectively, 4 end pin of the chip U6 is connected with one end of the resistor R15, the other end of the resistor R15 is connected with one end of the resistor R43, 1 end pin of the chip U6 is connected with one end of the capacitor C18, the other end of the capacitor C18 is connected with one end of the diode D8, 6 end pin of the chip U6 is connected with one end of the resistor R32 and one end of the inductor L11 respectively, the other end of the inductor L11 is connected with one end of the capacitor C2 and one end of the capacitor C3 respectively, 3 end pin of the chip U6 is connected with one end of the capacitor C13, 2 end pin of the chip U6, the other end of the resistor R16, the other end of the resistor R43, the other end of the diode D8, the other end of the capacitor C2, the other end of the capacitor C3 and the other end of the resistor R32 of the power supply chip P3 are all grounded, the second voltage reduction circuit component includes a chip U11, a capacitor C43, a capacitor C40, a capacitor C42 and a capacitor C39, 3 end pin of the chip U11 is connected with one end of the capacitor C39 and one end of the capacitor C42 respectively, 2 end pin of the chip U11 is connected with one end of the capacitor C43, 4 end pin of the chip U11 is connected with one end of the capacitor C40, 1 end pin of the chip U11, the other end of the capacitor C39, the other end of the capacitor C42, the other end of the capacitor C40 and the other end of the capacitor C43 are all grounded.
[0017] Compared with the prior art, the utility model has the beneficial effects that: through the remote communication signal transmitting device on the ground, control signals are sent to the remote communication signal receiver installed on the winch disc, after the receiving device receives the signals, different instructions are sent to the winch according to different signals, the positive and negative rotation of the winch motor is controlled, the winding and unwinding of the winch steel cable is realized, the different lengths of the steel cable are controlled, because the three winches are independently controlled, the lengths of the three winch steel cables are conveniently controlled, so that the whole lamp disc realizes different inclination angles in different directions, time and labor are saved. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the plan view of the utility model;
[0019] Figure 2 It is the perspective view of the utility model;
[0020] Figure 3 is a partial view of the utility model;
[0021] Figure 4 is a side view of the utility model lamp mounting assembly;
[0022] Figure 5 is a circuit diagram of the utility model remote communication signal transmitting device;
[0023] Figure 6 is a circuit diagram of the utility model LED lamp junction box;
[0024] Figure 7 is a circuit diagram of the utility model remote communication signal receiver.
[0025] In the figure: 1, hoist fixed assembly; 101, mounting pole; 102, center pole; 103, fixed pole; 2, hoist mounting disc; 3, lamp disc assembly; 31, outer lamp disc; 32, second reinforcing pole; 33, transition disc; 34, first reinforcing pole; 35, inner lamp disc; 4, lamp mounting assembly; 41, mounting frame; 42, clamping plate; 43, first toothed plate; 44, second toothed plate; 5, LED lamp; 6, remote communication signal transmitting device; 7, angle adjusting assembly; 71, motor base; 72, hoist body; 73, rotating shaft; 74, limiting plate; 75, steel wire rope; 76, direction plate; 77, angle seat; 8, steel cable body; 9, LED lamp junction box; 10, steel cable fixed assembly; 1001, fixed seat; 1002, fixed ring; 1003, assembly seat; 1004, locking screw; 1005, locking nut; 11, remote communication signal receiver. DETAILED DESCRIPTION
[0026] The technical solutions in the embodiments of the utility model will be clearly and completely described below in conjunction with the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.
[0027] Please refer to Figures 1-7The utility model provides a high -power LED lamps and lanterns cross river lighting system based on wireless remote communication, including steel cable body 8, the middle part of steel cable body 8 is installed with steel cable fixed assembly 10, the bottom of steel cable fixed assembly 10 is installed with winch fixed assembly 1, the bottom of winch fixed assembly 1 is installed with winch mounting disc 2, the bottom of winch mounting disc 2 is equipped with the lamp tray assembly 3, the bottom of lamp tray assembly 3 is installed with a plurality of lamps and lanterns installation assembly 4, the bottom of a plurality of lamps and lanterns installation assembly 4 is installed with LED lamp 5, the bottom of winch mounting disc 2 is installed with three angle adjustment assemblies 7 that are arranged in triangle, the bottom of three angle adjustment assemblies 7 is connected with lamp tray assembly 3, and the middle part of lamp tray assembly 3 top is installed with LED lamps and lanterns junction box 9.
[0028] Angle adjustment assembly 7 includes motor base 71 and winch body 72, the bottom of motor base 71 is fixedly connected with the top of winch body 72, the output end of winch body 72 is fixedly installed with rotating shaft 73, one end of rotating shaft 73 is fixedly installed with limit plate 74, the surface of rotating shaft 73 is connected with steel wire rope 75, the bottom of steel wire rope 75 is installed with direction plate 76, the bottom of direction plate 76 is rotatably connected with angle seat 77, the bottom of angle seat 77 is connected with lamp tray assembly 3, the top of motor base 71 is connected with winch mounting disc 2, winch body 72 is energized and starts, winch 72 drives rotating shaft 73 to rotate, rotating shaft 73 drives steel wire rope 75 to complete the take-up and release movement after rotating, steel wire rope 75 pulls direction plate 76 from one side, and direction plate 76 is angularly deflected relative to angle seat 77, so that the angle of lamp tray assembly 3 is adjusted.
[0029] The surface of winch mounting disc 2 is fixedly installed with remote communication signal receiver 11, remote communication signal receiver 11 is signal-connected with remote communication signal transmitting device 6, remote communication signal transmitting device 6 sends angle adjustment instructions, and remote communication signal receiver 11 controls winch body 72 to drive rotating shaft 73 to rotate after receiving the instructions, so that the lighting angle of the device is adjusted.
[0030] Winch fixed assembly 1 includes center rod 102 and four fixed rods 103, the top of four fixed rods 103 is fixedly connected with the opposite end of center rod 102, the both sides of center rod 102 are equipped with mounting rods 101, the top of two mounting rods 101 and the top of center rod 102 are fixedly connected with steel cable fixed assembly 10, the bottom of two mounting rods 101 and the bottom of four fixed rods 103 are fixedly connected with winch mounting disc 2, and center rod 102 and mounting rod 101 are installed between steel cable fixed assembly 10 and winch mounting disc 2.
[0031] The lamp plate assembly 3 comprises an outer lamp plate 31 and an inner lamp plate 35, the outer side of the inner lamp plate 35 is provided with a transition plate 33, the outer side of the inner lamp plate 35 is fixedly installed with a plurality of first reinforcing rods 34, the ends of the plurality of first reinforcing rods 34 away from the inner lamp plate 35 are all fixedly connected with the side opposite to the transition plate 33, the outer side of the transition plate 33 is fixedly installed with a plurality of second reinforcing rods 32, the outer sides of the plurality of second reinforcing rods 32 are all fixedly connected with the side opposite to the outer lamp plate 31, the bottom end of the outer lamp plate 31 is connected with a plurality of lamp mounting assemblies 4 respectively, the top end of the outer lamp plate 31 is connected with three angle adjusting assemblies 7 respectively, the lamp plate assembly 3 is made of a hollow structure material, so that the LED lamp 5 can be fully contacted with the low-temperature gas in the external environment during operation, and heat dissipation and cooling are completed.
[0032] The plurality of lamp mounting assemblies 4 all comprise a mounting frame 41 and two first toothed plates 43, the two sides of the inner wall of the mounting frame 41 are all provided with clamping plates 42, the two sides of the inner wall of the mounting frame 41 are respectively connected with the sides opposite to the two first toothed plates 43, the sides opposite to the two clamping plates 42 are all installed with second toothed plates 44, the outer sides of the two first toothed plates 43 are respectively meshed and connected with the outer sides of the two second toothed plates 44, the top end of the mounting frame 41 is connected with the lamp plate assembly 3, the opposite sides of the two clamping plates 42 are connected with the two sides of the LED lamp 5, and the two clamping plates 42 are clamped and fixed from the two sides of the LED lamp 5 in cooperation, in the process that the clamping plate 42 rotates relative to the mounting frame 41, the first toothed plate 43 rotates relative to the second toothed plate 44, and the stability of the angle deflection of the clamping plate 42 is improved.
[0033] The steel cable fixing assembly 10 comprises a fixing seat 1001 and a plurality of assembly seats 1003, the bottom end of the plurality of assembly seats 1003 is fixedly connected with the bottom end of the inner wall of the fixing seat 1001, the top end of the plurality of assembly seats 1003 is provided with a fixing ring 1002, the two sides of the bottom end of the plurality of fixing rings 1002 are all installed with locking screws 1004 penetrating to the outside, the surfaces of the plurality of locking screws 1004 are all threadedly connected with locking nuts 1005, the bottom end of the fixing seat 1001 is connected with the winch fixing assembly 1, the user rotates the locking screw 1004, the threads on the surface of the locking screw 1004 and the threads in the inner wall of the assembly seat 1003 are matched with each other, so that the locking screw 1004 rotates and rises and falls relative to the assembly seat 1003, so that the fixing ring 1002 and the fixing seat 1001 are clamped and fixed from the two sides of the steel cable body 8, and the user twists the locking nut 1005 to fix the locking screw 1004.
[0034] The LED lamp junction box 9 includes a RESET circuit component, a Crystal circuit component and a circuit main piece. The RESET circuit component includes a resistor R35, a diode D1 and a capacitor C4. One end of the capacitor C4 is connected with one end of the resistor R35 and one end of the diode D1 respectively. The other end of the capacitor C4 is grounded. The Crystal circuit component includes a capacitor C5, a crystal oscillator Y1 and a capacitor C6. One end of the capacitor C5 and one end of the capacitor C6 are connected with two ends of the crystal oscillator Y1 respectively. The other end of the capacitor C5 and the other end of the capacitor C6 are grounded. The ISP circuit component is provided with a power supply chip P5. The 6 pin of the power supply chip P5 is grounded. The circuit main piece includes a chip U2, a resistor R7, a resistor R29, a resistor R38, a resistor R28, a resistor R10, a capacitor C8 and an LED 3. The 21 pin of the chip U2 is connected with one end of the resistor R28. The 23 pin of the chip U2 is connected with one end of the resistor R38. The 22 pin of the chip U2 is connected with one end of the resistor R7. The 24 pin of the chip U2 is connected with one end of the resistor R29. The 29 pin of the chip U2 is connected with one end of the capacitor C8. The 32 pin of the chip U2 is connected with one end of the LED 3. The other end of the capacitor C8, the 6 pin of the chip U2, the 18 pin of the chip U2, the 28 pin of the chip U2 and the 39 pin of the chip U2 are grounded.
[0035] The remote communication signal receiver 11 comprises a first voltage reduction circuit assembly, a second voltage reduction circuit assembly and a communication circuit. The first voltage reduction circuit assembly comprises a chip U6, a resistor R15, a resistor R16, a resistor R43, a resistor R32, a capacitor C18, a diode D8, a capacitor C13, a capacitor C2, a capacitor C3, a power supply chip P3, an inductor L11, an LED 1 and a resistor R5. One end of the LED 1 is connected to one end of the resistor R5. The 5th pin of the chip U6 is connected to the 1st pin of the power supply chip P3 and one end of the resistor R16 respectively. The 4th pin of the chip U6 is connected to one end of the resistor R15. The other end of the resistor R15 is connected to one end of the resistor R43. The 1st pin of the chip U6 is connected to one end of the capacitor C18. The other end of the capacitor C18 is connected to one end of the diode D8. The 6th pin of the chip U6 is connected to one end of the resistor R32 and one end of the inductor L11 respectively. The other end of the inductor L11 is connected to one end of the capacitor C2 and one end of the capacitor C3 respectively. The 3rd pin of the chip U6 is connected to one end of the capacitor C13. The 2nd pin of the chip U6, the other end of the resistor R16, the other end of the resistor R43, the other end of the diode D8, the other end of the capacitor C2, the other end of the capacitor C3 and the other end of the resistor R32 are grounded. The second voltage reduction circuit assembly comprises a chip U11, a capacitor C43, a capacitor C40, a capacitor C42 and a capacitor C39. The 3rd pin of the chip U11 is connected to one end of the capacitor C39 and one end of the capacitor C42 respectively. The 2nd pin of the chip U11 is connected to one end of the capacitor C43. The 4th pin of the chip U11 is connected to one end of the capacitor C40. The 1st pin of the chip U11, the other end of the capacitor C39, the other end of the capacitor C42, the other end of the capacitor C40 and the other end of the capacitor C43 are grounded.
[0036] The utility model discloses, user rotates locking screw 1004, and the thread on locking screw 1004 surface and the thread of assembly seat 1003 inner wall are mutually matched, so locking screw 1004, relative assembly seat 1003 rotation lift and make fixed ring 1002 and fixed seat 1001 from the both sides of steel cable body 8 clamping fixed, user twists locking nut 1005 to locking screw 1004 is fixed, and then, center pole 102 and mounting rod 101 are installed between steel cable fixed assembly 10 and winch mounting disc 2, and the lamp panel assembly 3 is hollow structure material made, and the full contact of LED lamp 5 and external environment low temperature gas is convenient in operation, and the heat dissipation cooling is completed, and two clamps 42 are mutually matched from the both sides of LED lamp 5 and are clamped fixed, and in the process that clamp 42 is relative mounting bracket 41 rotation, first toothed plate 43 is relative second toothed plate 44 rotation, improves the stability of the angle deflection of clamp 42, and remote communication signal transmitting device 6 sends angle adjustment instruction, and remote communication signal receiver 11 receives instruction and controls winch body 72 and drives pivot 73 rotation, and the illumination angle of the device is adjusted, and winch body 72 is energized and starts, and winch 72 drives pivot 73 rotation, and pivot 73 drives steel wire rope 75 and completes the take-up and pay-off movement after rotation, and steel wire rope 75 is pulled from one side direction plate 76, and direction plate 76 is relative angle seat 77 and is angularly deflected, and the angle of lamp panel assembly 3 is adjusted, and the circuit schematic diagram of the combination is Figures 5-7 The circuit principle drawing of the combination, resistance R35, diode D1 and capacitor C4 constitute RESET circuit component, capacitor C5, crystal oscillator Y1 and capacitor C6 constitute Crystal circuit component, P5 constitutes ISP circuit component, chip U2, resistance R7, resistance R29, resistance R38, resistance R28, resistance R10, capacitor C8 and LED3 constitute circuit main part, chip U6, resistance R15, resistance R16, resistance R43, resistance R32, capacitor C18, diode D8, capacitor C13, capacitor C2, capacitor C3 and power supply chip P3 constitute first step-down circuit component.
[0037] Although the utility model has carried out the detailed explanation to the foregoing embodiment, for the person skilled in the art, it still can modify the technical scheme recorded in foregoing each embodiment, or equivalent replacement to part technical feature, and any modification, equivalent replacement, improvement etc. that is made within the spirit and principle of the utility model, should include in the protection scope of the utility model.
Claims
1. A high-power LED lighting system for cross-river illumination based on wireless remote communication, comprising a steel cable body (8), characterized in that: The middle part of the steel cable body (8) is provided with a steel cable fixing assembly (10), the bottom end of the steel cable fixing assembly (10) is provided with a winch fixing assembly (1), the bottom end of the winch fixing assembly (1) is provided with a winch mounting disc (2), the bottom end of the winch mounting disc (2) is provided with a lamp disc assembly (3), the bottom end of the lamp disc assembly (3) is provided with a plurality of lamp mounting assemblies (4), the bottom end of each of the plurality of lamp mounting assemblies (4) is provided with an LED lamp (5), the bottom end of the winch mounting disc (2) is provided with three angle adjusting assemblies (7) arranged in a triangular shape, the bottom end of each of the three angle adjusting assemblies (7) is connected with the lamp disc assembly (3), and the middle part of the top end of the lamp disc assembly (3) is provided with an LED lamp connection box (9).
2. The wireless telecommunication-based high-power LED luminaire cross-river lighting system according to claim 1, characterized in that: The angle adjusting assembly (7) comprises a motor base (71) and a winch body (72), the bottom end of the motor base (71) is fixedly connected with the top end of the winch body (72), the output end of the winch body (72) is fixedly provided with a rotating shaft (73), one end of the rotating shaft (73) is fixedly provided with a limiting plate (74), the surface of the rotating shaft (73) is woundly connected with a steel wire rope (75), the bottom end of the steel wire rope (75) is provided with a direction plate (76), the bottom end of the direction plate (76) is rotatably connected with an angle seat (77), the bottom end of the angle seat (77) is connected with the lamp disc assembly (3), and the top end of the motor base (71) is connected with the winch mounting disc (2).
3. The wireless telecommunication based high-power LED luminaire cross-river lighting system of claim 1, wherein: The surface of the winch mounting disc (2) is fixedly provided with a remote communication signal receiver (11), and the remote communication signal receiver (11) is signal-connected with a remote communication signal emitting device (6).
4. The wireless telecommunications-based high-power LED luminaire cross-river lighting system of claim 1, wherein: The winch fixing assembly (1) comprises a center rod (102) and four fixing rods (103), the top end of each of the four fixing rods (103) is fixedly connected with one end of the center rod (102) opposite to the other end, the two sides of the center rod (102) are provided with mounting rods (101), the top end of each of the two mounting rods (101) and the top end of the center rod (102) are fixedly connected with the steel cable fixing assembly (10), and the bottom end of each of the two mounting rods (101) and the bottom end of each of the four fixing rods (103) are fixedly connected with the winch mounting disc (2).
5. The wireless telecommunications-based high-power LED luminaire cross-river lighting system of claim 1, wherein: The lamp disc assembly (3) comprises an outer lamp disc (31) and an inner lamp disc (35), the outer side of the inner lamp disc (35) is provided with a transition disc (33), the outer side of the inner lamp disc (35) is fixedly provided with a plurality of first reinforcing rods (34), one end of each of the plurality of first reinforcing rods (34) away from the inner lamp disc (35) is fixedly connected with one side of the transition disc (33) opposite to the other side, the outer side of the transition disc (33) is fixedly provided with a plurality of second reinforcing rods (32), and the outer side of each of the plurality of second reinforcing rods (32) is fixedly connected with one side of the outer lamp disc (31) opposite to the other side, the bottom end of the outer lamp disc (31) is connected with the plurality of lamp mounting assemblies (4) respectively, and the top end of the outer lamp disc (31) is connected with the three angle adjusting assemblies (7) respectively.
6. The wireless telecommunications-based high-power LED luminaire cross-river lighting system of claim 1, wherein: The lamp mounting assembly (4) comprises a mounting frame (41) and two first toothed plates (43), the two sides of the inner wall of the mounting frame (41) are provided with clamping plates (42), the two sides of the inner wall of the mounting frame (41) are connected with the sides, away from the two first toothed plates (43), respectively, the sides, away from each other of the two clamping plates (42) are provided with second toothed plates (44), the outer sides of the two first toothed plates (43) are connected with the outer sides of the two second toothed plates (44) in meshing connection, the top end of the mounting frame (41) is connected with the lamp panel assembly (3), and the sides, opposite to each other of the two clamping plates (42) are connected with the two sides of the LED lamp (5).
7. The wireless telecommunications-based high-power LED luminaire cross-river lighting system of claim 1, wherein: The steel cable fixing assembly (10) comprises a fixing seat (1001) and a plurality of assembly seats (1003), the bottom end of each of the plurality of assembly seats (1003) is fixedly connected with the bottom end of the inner wall of the fixing seat (1001), the top end of each of the plurality of assembly seats (1003) is provided with a fixing ring (1002), the two sides of the bottom end of each of the plurality of fixing rings (1002) are provided with locking screws (1004) penetrating to the outside, the surface of each of the plurality of locking screws (1004) is threadedly connected with a locking nut (1005), and the bottom end of the fixing seat (1001) is connected with the winch fixing assembly (1).
8. The wireless telecommunications-based high-power LED luminaire cross-river lighting system of claim 1, wherein: The LED lamp junction box (9) comprises a RESET circuit assembly, a Crystal circuit assembly and a circuit main piece, the RESET circuit assembly comprises a resistor R35, a diode D1 and a capacitor C4, one end of the capacitor C4 is connected with one end of the resistor R35 and one end of the diode D1 respectively, and the other end of the capacitor C4 is grounded, the Crystal circuit assembly comprises a capacitor C5, a crystal oscillator Y1 and a capacitor C6, one end of the capacitor C5 and one end of the capacitor C6 are connected with two ends of the crystal oscillator Y1 respectively, and the other end of the capacitor C5 and the other end of the capacitor C6 are grounded, a power supply chip P5 is arranged in the ISP circuit assembly, the 6th pin of the power supply chip P5 is grounded, and the circuit main piece comprises a chip U2, a resistor R7, a resistor R29, a resistor R38, a resistor R28, a resistor R10, a capacitor C8 and an LED 3, the 21st pin of the chip U2 is connected with one end of the resistor R28, the 23rd pin of the chip U2 is connected with one end of the resistor R38, the 22nd pin of the chip U2 is connected with one end of the resistor R7, the 24th pin of the chip U2 is connected with one end of the resistor R29, the 29th pin of the chip U2 is connected with one end of the capacitor C8, the 32nd pin of the chip U2 is connected with one end of the LED 3, and the other end of the capacitor C8, the 6th pin of the chip U2, the 18th pin of the chip U2, the 28th pin of the chip U2 and the 39th pin of the chip U2 are grounded.
9. The wireless telecommunications-based high-power LED luminaire cross-river lighting system of claim 3, wherein: The remote communication signal receiver (11) includes a first voltage reduction circuit component, a second voltage reduction circuit component and a communication circuit, the first voltage reduction circuit component includes chip U6, resistor R15, resistor R16, resistor R43, resistor R32, capacitor C18, diode D8, capacitor C13, capacitor C2, capacitor C3, power supply chip P3, inductor L11, LED1 and resistor R5, one end of the LED1 is connected with one end of the resistor R5, 5 end pin of the chip U6 is connected with 1 end pin of the power supply chip P3 and one end of the resistor R16 respectively, 4 end pin of the chip U6 is connected with one end of the resistor R15, the other end of the resistor R15 is connected with one end of the resistor R43, 1 end pin of the chip U6 is connected with one end of the capacitor C18, the other end of the capacitor C18 is connected with one end of the diode D8, 6 end pin of the chip U6 is connected with one end of the resistor R32 and one end of the inductor L11 respectively, the other end of the inductor L11 is connected with one end of the capacitor C2 and one end of the capacitor C3 respectively, 3 end pin of the chip U6 is connected with one end of the capacitor C13, 2 end pin of the chip U6, the other end of the resistor R16, the other end of the resistor R43, the other end of the diode D8, the other end of the capacitor C2, the other end of the capacitor C3 and the other end of the resistor R32 are grounded, the second voltage reduction circuit component includes chip U11, capacitor C43, capacitor C40, capacitor C42 and capacitor C39, 3 end pin of the chip U11 is connected with one end of the capacitor C39 and one end of the capacitor C42 respectively, 2 end pin of the chip U11 is connected with one end of the capacitor C43, 4 end pin of the chip U11 is connected with one end of the capacitor C40, 1 end pin of the chip U11, the other end of the capacitor C39, the other end of the capacitor C42, the other end of the capacitor C40 and the other end of the capacitor C43 are grounded.