Energy-saving and environment-friendly outdoor footpath lighting system

By combining infrared sensors, microprocessors, and timers with wind power and manual cleaning mechanisms, the problems of illumination distance and cleaning have been solved, enabling automated expansion and simplified maintenance of outdoor trail lighting devices, and improving safety and environmental friendliness.

CN121842906APending Publication Date: 2026-04-10王长号
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-08-22
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing outdoor trail lighting devices have room for improvement in terms of illumination distance. They cannot be automatically extended through information collection and control modules, and there are safety hazards and cumbersome operation issues during cleaning and maintenance.

Method used

By employing a combination of infrared sensors, microprocessors, timers, and lighting mechanisms, along with wind-powered and manual cleaning mechanisms and adjustment mechanisms, the system achieves automatic extension of the illumination distance and automatic cleaning of the display screen, simplifying the maintenance process.

Benefits of technology

It enables automatic extension of the irradiation distance and automatic cleaning of the display screen, reducing safety hazards, simplifying maintenance operations, and improving the automation and environmental friendliness of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an energy-saving and environment-friendly outdoor footpath lighting system, and relates to the technical field of outdoor lighting. And an auxiliary mechanism is mounted on the street lamp main body. Double expansion of the illuminating lamp can be achieved, safety of running personnel at night is guaranteed, manual adjustment is not needed when the irradiation range is expanded, the automation degree is high, the expansion structure cannot be prolonged infinitely according to reality, at the moment, further expansion can be achieved through cooperation of the rubber rolling wheels and the mounting frame, practicability is high, and practicability is high. The problems that an illumination device is mostly of a fixed structure in the running process at present, a lifting space exists in irradiation distance expansion, automatic expansion of the irradiation distance cannot be achieved through an information collection module and a control module, and further expansion cannot be achieved through structural improvement are solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of outdoor lighting, in particular to an energy-saving and environment-friendly outdoor sidewalk lighting system. BACKGROUND

[0002] The sidewalk lighting lamp is a kind of street lamp, which is used for pedestrians to see the road at night, so as to reduce the safety accidents caused by the deviation of the personnel running on the sidewalk from the sidewalk.

[0003] At present, the lighting device in the running process is mostly fixed structure, and there is room for improvement in the expansion of the irradiation distance, and the automatic expansion of the irradiation distance cannot be realized through the information acquisition module and the control module, and further expansion cannot be realized through the improvement of the structure.

[0004] In addition, the dust on the display part cannot be automatically cleaned by the improvement of the structure through natural wind power.

[0005] In addition, the personnel can be forced to automatically clean the display part during operation through the improvement of the structure.

[0006] In addition, during maintenance, the worker needs to climb, and the safety hazard is large, and the fixed bolt needs to be disassembled during disassembly of the lighting part, and the operation is cumbersome. SUMMARY

[0007] Therefore, the present application provides an energy-saving and environment-friendly outdoor sidewalk lighting system, which solves the problems that the lighting device in the running process is mostly fixed structure, there is room for improvement in the expansion of the irradiation distance, the automatic expansion of the irradiation distance cannot be realized through the information acquisition module and the control module, and further expansion cannot be realized through the improvement of the structure.

[0008] The purpose and effect of the energy-saving and environment-friendly outdoor sidewalk lighting system of the present application are achieved by the following specific technical means:

[0009] The present application provides an energy-saving and environment-friendly outdoor sidewalk lighting system, which specifically comprises: a street lamp body.

[0010] The street lamp body is provided with an auxiliary mechanism.

[0011] Further, the auxiliary mechanism is composed of a display screen, a first electronic scale, a second electronic scale, an infrared probe, a mounting rack, a solar panel, a microprocessor and a timer, the display screen is installed on the street lamp body, and the microprocessor is installed in the street lamp body;

[0012] The first electronic scale is installed on the ground, the second electronic scale is installed on the right end face of the street lamp body, and the first electronic scale and the second electronic scale are electrically connected with the display screen; when a person needs to weigh the body weight, the person can step on the first electronic scale to weigh, and the body weight information can be known by watching the display screen;

[0013] When the person needs to weigh the net body weight, the carried articles can be placed in the second electronic scale at the moment, the weight of the articles is displayed on the display screen at the moment, and whether the first electronic scale and the second electronic scale are damaged can be known by checking the two weights, so as to avoid misleading the running person.

[0014] Further, the wind cleaning mechanism is installed on the street lamp body;

[0015] The wind cleaning mechanism is composed of a wind shield, a connecting pipe, a jet pipe, a rotating shaft A, a first impeller and a second impeller, two wind shields are fixed on the street lamp body, the two wind shields are connected with the jet pipe through the connecting pipe, the jet pipe is fixed on the upper edge of the display screen, the jet pipe is provided with an air outlet hole, and the air outlet hole is in contact with the display screen.

[0016] Further, the wind shields are arranged left and right, a rotating shaft A is rotatably connected in each wind shield, the rotating shaft A is provided with the first impeller and the second impeller, the first impeller is located on the outer side of the wind shield and is responsible for wind rotation, the second impeller is located on the inner side of the wind shield and is the same as the centrifugal fan impeller structure, when the external wind blows from the left and right directions, the wind can directly enter the connecting pipe through the wind shield, and then is sprayed out through the jet pipe to realize the cleaning of the display screen;

[0017] When the wind blows from the front and back, the first impeller rotates under the action of the wind at the moment, the rotating shaft A and the second impeller are driven to rotate by the first impeller at the moment, the wind can be delivered to the connecting pipe through the rotation of the second impeller at the moment, and finally is sprayed out through the jet pipe to realize the cleaning of the display screen.

[0018] Further, the manual cleaning mechanism is installed on the street lamp body;

[0019] The manual cleaning mechanism is composed of a mounting block, a guide rod, a plastic block, a sponge block and a shielding cover, the mounting block is fixed on the front end face of the street lamp body, two guide rods are symmetrically installed on the bottom end face of the mounting block, the plastic block is slidably connected on the two guide rods, the sponge block is adhered to the rear end face of the plastic block, and the sponge block is in elastic contact with the front end face of the street lamp body.

[0020] Further, the bottom end face of the plastic block is welded with a shielding cover, the shielding cover is a concave cover structure, the shielding cover is located at the front side position of the control button of the display screen, when a person needs to control the display screen, at this time the plastic block must be pushed upward, at this time the plastic block needs to be pushed to the upper position of the display screen, if the half distance is pushed, at this time the plastic block and the shielding cover will shield the display screen, affecting observation, so it needs to be pushed to the upper position, after pushing, the person realizes the pressing of the button by the other hand, and then obtains information from the display screen, when the person leaves, the plastic block and the shielding cover can realize automatic reset under the action of gravity, at this time the cleaning of the display screen is completed.

[0021] Further, the road lamp body is provided with an adjusting mechanism.

[0022] The adjusting mechanism comprises an adjusting seat, a guide groove, a mounting arm A, a threaded connecting block, a motor A and a threaded rod A, the adjusting seat is fixed to the rear end face of the road lamp body, the adjusting seat is provided with a guide groove, and the guide groove is an L-shaped groove structure.

[0023] The mounting arm A is limitingly and slidably connected in the guide groove, the threaded connecting block is limitingly connected in the mounting arm A, the right end face of the threaded connecting block is in contact with the right end face of the inner wall of the adjusting seat, and the lighting mechanism is mounted on the mounting arm A.

[0024] The motor A is mounted in the adjusting seat, the threaded rod A is mounted on the rotating shaft of the motor A, the threaded rod A is in threaded connection with the threaded connecting block, when the height of the lighting mechanism needs to be adjusted, the motor A is controlled to rotate at this time, when the motor A rotates, the threaded rod A can drive the threaded connecting block to move up and down, at this time the height adjustment of the mounting arm A and the lighting mechanism is completed, at this time the maintenance is facilitated, when the mounting arm A and the lighting mechanism need to be removed for further maintenance, at this time, since the guide groove is an L-shaped groove structure, the mounting arm A can be removed through the lower position of the guide groove, and the operation is simple and no additional fixing structure is needed.

[0025] Further, the mounting arm A is provided with a lighting mechanism.

[0026] The lighting mechanism comprises a sliding rail, a mounting arm B, a motor B, a threaded rod B, a rotating shaft B, a lighting lamp and a rubber roller, the sliding rail is fixed to the left end face of the mounting arm A, the mounting arm B is slidably connected in the sliding rail, and the motor B and the threaded rod B for driving the mounting arm B left and right are mounted on the mounting arm A.

[0027] Further, the mounting arm B is rotatably connected with a rotating shaft B, the rotating shaft B is fixed to the lighting lamp, and the rubber roller is mounted on the rotating shaft B.

[0028] The mounting frame is fixed on the sliding rail, and the solar panel is installed on the mounting frame and connected with the battery for supplying power to the display screen through the existing solar conversion assembly.

[0029] Further, when the mounting arm B moves left, the rubber roller contacts the bottom end surface of the mounting frame, and when the mounting arm B continues to move left, the rubber roller, the rotating shaft B and the illuminating lamp swing left under the friction of the mounting frame.

[0030] Further, the seat is fixed on the left end surface of the street lamp body, and the infrared probe is installed on the seat and electrically connected with the microprocessor, and the microprocessor is electrically connected with the motor B.

[0031] The timer is installed in the street lamp body and electrically connected with the microprocessor, when the runner reaches the position of the infrared probe, the infrared probe sends a signal to the microprocessor, the microprocessor sends a signal to the control timer, the timer sends a 20-second timing signal to the microprocessor, and the microprocessor controls the motor B to rotate, and when the motor B rotates, the mounting arm B and the illuminating lamp can move left through the driving of the threaded rod B, and the irradiation distance is expanded, and when the mounting arm B moves left for 16 seconds, the rubber roller contacts the bottom end surface of the mounting frame, and the rubber roller, the rotating shaft B and the illuminating lamp can rotate left under the friction of the mounting frame, and the irradiation distance is further expanded.

[0032] Advantages

[0033] Through the setting of the infrared probe, the microprocessor, the timer and the illuminating mechanism, when the runner reaches the position of the infrared probe, the infrared probe sends a signal to the microprocessor, the microprocessor sends a signal to the control timer, the timer sends a 20-second timing signal to the microprocessor, and the microprocessor controls the motor B to rotate, and when the motor B rotates, the mounting arm B and the illuminating lamp can move left through the driving of the threaded rod B, and the irradiation distance is expanded, and when the mounting arm B moves left for 16 seconds, the rubber roller contacts the bottom end surface of the mounting frame, and the rubber roller, the rotating shaft B and the illuminating lamp can rotate left under the friction of the mounting frame, and the irradiation distance is further expanded.

[0034] Through the setting of the manual cleaning mechanism, when a person needs to operate the display screen, the plastic block must be pushed upwards at this time, and the plastic block needs to be pushed to the position above the display screen. If half the distance is pushed, the plastic block and the shielding cover will block the display screen at this time, affecting observation, so it needs to be pushed to the upper position. After pushing, the person presses the button with the other hand, and then obtains information from the display screen. When the person leaves, the plastic block and the shielding cover can be automatically reset under the action of gravity. At this time, the cleaning of the display screen is completed. The structure can complete the upward movement of the cleaning block when the person operates the device. At this time, the self-sending completes the cleaning of the display screen. The structure is reasonable and novel, and does not need to be driven by an electric element, which is more environmentally friendly.

[0035] Through the setting of the auxiliary mechanism, on the one hand, when a person needs to weigh the body weight, the first electronic scale can be stepped on for weighing, and the display screen can be watched to understand the body weight information. On the other hand, when a person needs to weigh the net body weight, the carried articles can be placed in the second electronic scale at this time. At this time, the display screen displays the weight of the articles. By comparing the two weights, it can be known whether the first electronic scale and the second electronic scale are damaged, so as to avoid misleading the runner. The weighing of the person can be realized, and the precision detection of the first electronic scale and the second electronic scale can be realized in a comparative manner, which is high in practicability.

[0036] The adjusting mechanism is provided. On the one hand, when the height of the lighting mechanism needs to be adjusted and maintained, the control motor A is rotated at this time. The threaded rod A can drive the threaded connecting block to move up and down at this time. The height adjustment of the mounting arm A and the lighting mechanism is completed. On the other hand, when the mounting arm A and the lighting mechanism need to be removed for further maintenance, the mounting arm A can be removed through the lower position of the guide groove at this time. The operation is simple, and the mounting arm A can be removed without removing the bolts, which simplifies the maintenance steps.

[0037] Through the setting of the wind power cleaning structure, on the one hand, when the external wind blows from the left and right directions, the wind can directly enter the connecting pipe through the wind shield, and then is sprayed out through the air jet pipe to realize the cleaning of the display screen. On the other hand, when the wind blows from front to back, the first impeller rotates under the action of the wind at this time. The first impeller drives the rotating shaft A and the second impeller to rotate at this time. The wind power can be delivered to the connecting pipe through the rotation of the second impeller, and finally sprayed out through the air jet pipe to realize the cleaning of the display screen. The display screen can be automatically cleaned by the external wind, without the need of an electric element for driving cleaning, which reduces the equipment cost and is more environmentally friendly. BRIEF DESCRIPTION OF DRAWINGS

[0038] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.

[0039] The drawings in the following description merely serve to clarify some embodiments of the present application and are not intended to limit the present application.

[0040] In the drawings:

[0041] Figure 1 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application.

[0042] Figure 2 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application. Figure 1 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application.

[0043] Figure 3 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application.

[0044] Figure 4 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application.

[0045] Figure 5 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application.

[0046] Figure 6 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application.

[0047] Figure 7 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application.

[0048] Figure 8 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application. Figure 7 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application.

[0049] Figure 9 is the axial view structural schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application. Figure 8 is the enlarged structural schematic diagram of A of the energy-saving and environment-friendly outdoor path lighting device of the present application.

[0050] Figure 10 is the system structure schematic diagram of the energy-saving and environment-friendly outdoor path lighting device of the present application.

[0051] List of reference signs

[0052] 1, street lamp body;

[0053] 2, auxiliary mechanism; 201, display screen; 202, first electronic scale; 203, second electronic scale; 204, infrared probe; 205, mounting frame; 206, solar panel; 207, microprocessor; 208, timer;

[0054] 3, wind cleaning mechanism; 301, wind cover; 302, connecting pipe; 303, air jet pipe; 304, rotating shaft A; 305, first impeller; 306, second impeller;

[0055] 4. Manual cleaning mechanism; 401. Mounting block; 402. Guide rod; 403. Plastic block; 404. Sponge block; 405. Shielding cover;

[0056] 5. Adjustment mechanism; 501. Adjustment seat; 502. Guide groove; 503. Mounting arm A; 504. Threaded connecting block; 505. Motor A; 506. Threaded rod A;

[0057] 6. Lighting mechanism; 601. Sliding rail; 602. Mounting arm B; 603. Motor B; 604. Threaded rod B; 605. Rotating shaft B; 606. Lighting lamp; 607. Rubber roller;

[0058] 7. Seats. Detailed Implementation

[0059] To make the objectives, solutions, and advantages of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Unless otherwise stated, the terms used herein have their ordinary meanings in the art. The same reference numerals in the drawings represent the same parts.

[0060] Example 1:

[0061] Please refer to Figures 1 to 10 :

[0062] This invention proposes an energy-saving and environmentally friendly outdoor walkway lighting system, comprising: a street lamp body 1;

[0063] An auxiliary mechanism 2 is installed on the main body 1 of the street light.

[0064] The auxiliary mechanism 2 consists of a display screen 201, a first electronic scale 202, a second electronic scale 203, an infrared detector 204, a mounting bracket 205, a solar panel 206, a microprocessor 207, and a timer 208. The display screen 201 is installed on the street lamp body 1, and the microprocessor 207 is installed inside the street lamp body 1.

[0065] The first electronic scale 202 is installed on the ground, and the second electronic scale 203 is installed on the right side of the street lamp body 1. Both the first electronic scale 202 and the second electronic scale 203 are electrically connected to the display screen 201. When a person needs to weigh himself, he can step on the first electronic scale 202 to weigh himself and view the display screen 201 to learn about his weight.

[0066] When a person needs to weigh themselves, they can place their belongings in the second electronic scale 203. The display screen 201 will then show the weight of the belongings. By comparing the two weights, it can be determined whether the first electronic scale 202 and the second electronic scale 203 are damaged, thus avoiding misleading the runner.

[0067] The wind power cleaning mechanism 3 is composed of a wind shield 301, a connecting pipe 302, a jet pipe 303, a rotating shaft A 304, a first impeller 305 and a second impeller 306.

[0068] The wind power cleaning mechanism 3 is composed of a wind shield 301, a connecting pipe 302, a jet pipe 303, a rotating shaft A 304, a first impeller 305 and a second impeller 306.

[0069] The wind power cleaning mechanism 3 is composed of a wind shield 301, a connecting pipe 302, a jet pipe 303, a rotating shaft A 304, a first impeller 305 and a second impeller 306.

[0070] The wind power cleaning mechanism 3 is composed of a wind shield 301, a connecting pipe 302, a jet pipe 303, a rotating shaft A 304, a first impeller 305 and a second impeller 306.

[0071] The manual cleaning mechanism 4 is composed of a mounting block 401, a guide rod 402, a plastic block 403, a sponge block 404 and a shielding cover 405.

[0072] The manual cleaning mechanism 4 is composed of a mounting block 401, a guide rod 402, a plastic block 403, a sponge block 404 and a shielding cover 405.

[0073] The bottom end face of the plastic block 403 is welded with a shielding cover 405, the shielding cover 405 is a concave cover structure, the shielding cover 405 is located at the front side position of the control button on the display screen 201, when the personnel need to control the display screen 201, at this time, the plastic block 403 must be pushed upward, at this time, the plastic block 403 and the shielding cover 405 will cause the display screen 201 to be shielded, which affects the observation, so it needs to be pushed to the upper position, after pushing, the personnel press the button by another hand, then get information from the display screen 201, when the personnel leave, the plastic block 403 and the shielding cover 405 can be automatically reset under the action of gravity, at this time, the cleaning of the display screen 201 is completed.

[0074] Example two:

[0075] On the basis of example one, as shown in Figure 1 and Figure 6 It further comprises an adjusting mechanism 5, and the adjusting mechanism 5 is installed on the street lamp body 1.

[0076] The adjusting mechanism 5 is composed of an adjusting seat 501, a guide groove 502, an installation arm A 503, a threaded connecting block 504, a motor A 505 and a threaded rod A 506, the adjusting seat 501 is fixed on the rear end face of the street lamp body 1, and the adjusting seat 501 is provided with a guide groove 502, and the guide groove 502 is an L-shaped groove structure.

[0077] The installation arm A 503 is limitingly and slidingly connected in the guide groove 502, a threaded connecting block 504 is limitingly connected in the installation arm A 503, the right end face of the threaded connecting block 504 is in contact with the right end face of the inner wall of the adjusting seat 501, and the installation arm A 503 is installed with the lighting mechanism 6.

[0078] The motor A 505 is installed in the adjusting seat 501, the threaded rod A 506 is installed on the rotating shaft of the motor A 505, and the threaded rod A 506 is in threaded connection with the threaded connecting block 504, when it is necessary to adjust the height of the lighting mechanism 6 and to maintain, at this time, the motor A 505 is controlled to rotate, and when the motor A 505 rotates, the threaded rod A 506 can drive the threaded connecting block 504 to move up and down, at this time, the height adjustment of the installation arm A 503 and the lighting mechanism 6 is completed, at this time, the maintenance is facilitated, when it is necessary to dismount the installation arm A 503 and the lighting mechanism 6 for further maintenance, at this time, because the guide groove 502 is an L-shaped groove structure, the installation arm A 503 can be dismounted through the lower position of the guide groove 502, and the operation is simple, and no additional fixing structure is needed.

[0079] Example three:

[0080] On the basis of example two, as shown in Figure 6 and Figure 10As shown, further comprising: lighting mechanism 6, installed on the mounting arm A503 installed lighting mechanism 6;

[0081] Lighting mechanism 6 is composed of sliding rail 601, mounting arm B 602, motor B 603, threaded rod B 604, shaft B 605, lighting lamp 606 and rubber roller 607, sliding rail 601 is fixed on the left end surface of mounting arm A503, sliding rail 601 is slidably connected with mounting arm B 602, mounting arm A503 is installed with motor B 603 and threaded rod B 604 for driving mounting arm B 602 left and right.

[0082] Among them, mounting arm B 602 is rotatably connected with a shaft B 605, shaft B 605 is fixed on lighting lamp 606, shaft B 605 is installed with rubber roller 607;

[0083] Sliding rail 601 is fixed with mounting bracket 205, mounting bracket 205 is installed with solar panel 206, solar panel 206 is connected with the battery for supplying power to display screen 201 through the existing solar energy conversion assembly, and the battery is located in the inside of street lamp main body 1.

[0084] Among them, when mounting arm B 602 moves to the left, rubber roller 607 contacts with the bottom end surface of mounting bracket 205, when mounting arm B 602 continues to move to the left, rubber roller 607, shaft B 605 and lighting lamp 606 are in left swing state under the friction of mounting bracket 205.

[0085] Among them, the left end surface of street lamp main body 1 is fixed with a seat 7, seat 7 is installed with infrared probe 204, infrared probe 204 is electrically connected with microprocessor 207, microprocessor 207 is electrically connected with motor B 603;

[0086] Timer 208 is installed in street lamp main body 1, timer 208 is electrically connected with microprocessor 207, when the runner runs to the position of infrared probe 204, infrared probe 204 sends signal to microprocessor 207 at this time, microprocessor 207 sends signal to control timer 208, timer 208 sends 20 seconds signal to microprocessor 207, microprocessor 207 controls motor B 603 to rotate at this time, when motor B 603 rotates, mounting arm B 602 and lighting lamp 606 can be moved to the left through the driving of threaded rod B 604, at this time, the expansion of irradiation distance is realized, when mounting arm B 602 moves to the left for 16 seconds, rubber roller 607 contacts with the bottom end surface of mounting bracket 205, at this time, rubber roller 607, shaft B 605 and lighting lamp 606 can be rotated to the left under the friction of mounting bracket 205, at this time, the further expansion of irradiation distance is realized.

[0087] The specific use mode and effect of the embodiment:

[0088] When the runner reaches the position of the infrared sensor 204, the infrared sensor 204 sends a signal to the microprocessor 207, which in turn sends a signal to the control timer 208. The timer 208 sends a 20-second countdown signal to the microprocessor 207, which then controls the motor B603 to rotate. When the motor B603 rotates, the mounting arm B602 and the lighting lamp 606 move to the left through the drive of the threaded rod B604, thus extending the illumination distance. After the mounting arm B602 has moved to the left for 16 seconds, the rubber roller 607 contacts the bottom surface of the mounting frame 205. At this point, the friction of the mounting frame 205 causes the rubber roller 607, the rotating shaft B605, and the lighting lamp 606 to rotate to the left, further extending the illumination distance.

[0089] When personnel need to operate the display screen 201, the plastic block 403 must be pushed upwards. The plastic block 403 needs to be pushed to the top position of the display screen 201. If it is pushed halfway, the plastic block 403 and the shield 405 will block the display screen 201 and affect the observation. Therefore, it needs to be pushed to the top position. After pushing, the personnel can press the button with their other hand and then obtain information from the display screen 201. When the personnel leave, the plastic block 403 and the shield 405 will automatically reset under the action of gravity. At this time, the cleaning of the display screen 201 is completed.

[0090] When a person needs to weigh himself, he can step on the first electronic scale 202 to weigh himself and view the display screen 201 to learn about his weight information.

[0091] When a person needs to weigh themselves, they can place their items in the second electronic scale 203. The display screen 201 will then show the weight of the items. By checking the two weights, it can be determined whether the first electronic scale 202 and the second electronic scale 203 are damaged, thus avoiding misleading the runner.

[0092] When the height of the lighting mechanism 6 needs to be adjusted or maintenance is required, simply rotate the motor A505. When the motor A505 rotates, the threaded rod A506 can drive the threaded connecting block 504 to move up and down, thus completing the height adjustment of the mounting arm A503 and the lighting mechanism 6, which facilitates maintenance. When the mounting arm A503 and the lighting mechanism 6 need to be disassembled for further maintenance, the mounting arm A503 can be removed through the lower part of the guide groove 502 because the guide groove 502 has an L-shaped groove structure. The operation is simple and does not require additional fixing structures.

[0093] When the outside wind blows from the left and right, the wind can directly enter the connecting pipe 302 through the wind cover 301, and then be sprayed out through the jet pipe 303 to clean the display screen 201.

[0094] When the wind blows from front to back, at this time the first impeller 305 rotates under the action of the wind, at this time the first impeller 305 drives the rotating shaft A 304 and the second impeller 306 to rotate, at this time the wind can be delivered to the connecting pipe 302 through the rotation of the second impeller 306, and finally the cleaning of the display screen 201 is realized through the ejection of the air jet pipe 303.

Claims

1. An energy-saving and environmentally friendly outdoor walkway lighting system, characterized in that, include: A street lamp body (1); an auxiliary mechanism (2) is installed on the street lamp body (1); the auxiliary mechanism (2) consists of a display screen (201), a first electronic scale (202), a second electronic scale (203), an infrared detector (204), a mounting bracket (205), a solar panel (206), a microprocessor (207), and a timer (208). The display screen (201) is installed on the street lamp body (1), and the microprocessor (207) is installed inside the street lamp body (1). The first electronic scale (202) is installed on the ground, and the second electronic scale (203) is installed on the right end face of the street lamp body (1). Both the first electronic scale (202) and the second electronic scale (203) are mounted on the right end face of the street lamp body (1). The display screen (201) is electrically connected; a wind-powered cleaning mechanism (3) is installed on the street lamp body (1); the wind-powered cleaning mechanism (3) consists of a wind cover (301), a connecting pipe (302), a jet pipe (303), a rotating shaft A (304), a first impeller (305), and a second impeller (306). There are two wind covers (301), both of which are fixed on the street lamp body (1). The two wind covers (301) are connected to the jet pipe (303) through the connecting pipe (302). The jet pipe (303) is fixed on the upper edge of the display screen (201). An air outlet is opened on the jet pipe (303), and the air outlet is in contact with the display screen (201).

2. The energy-saving and environmentally friendly outdoor walkway lighting system as described in claim 1, characterized in that: The wind shrouds (301) are arranged on the left and right sides. Each wind shroud (301) is rotatably connected to a rotating shaft A (304). A first impeller (305) and a second impeller (306) are installed on the rotating shaft A (304). The first impeller (305) is located outside the wind shroud (301) and is responsible for rotating under the wind. The second impeller (306) is located inside the wind shroud (301) and has the same structure as the centrifugal fan impeller.

3. The energy-saving and environmentally friendly outdoor walkway lighting system as described in claim 1, characterized in that: The street light body (1) is equipped with a manual cleaning mechanism (4); The manual cleaning mechanism (4) consists of a mounting block (401), a guide rod (402), a plastic block (403), a sponge block (404), and a shield (405). The mounting block (401) is fixed to the front end of the street lamp body (1). Two guide rods (402) are symmetrically mounted on the bottom end of the mounting block (401). The plastic block (403) is slidably connected to the two guide rods (402). The sponge block (404) is attached to the rear end of the plastic block (403). The sponge block (404) is in elastic contact with the front end of the street lamp body (1). When the sponge block (404) moves upward, it contacts the display screen (201).

4. The energy-saving and environmentally friendly outdoor walkway lighting system as described in claim 3, characterized in that: A shield (405) is fused to the bottom end of the plastic block (403). The shield (405) is a concave shield structure and is located in front of the control button on the display screen (201).

5. The energy-saving and environmentally friendly outdoor walkway lighting system as described in claim 1, characterized in that: An adjustment mechanism (5) is installed on the main body (1) of the street light; The adjustment mechanism (5) consists of an adjustment seat (501), a guide groove (502), an mounting arm A (503), a threaded connecting block (504), a motor A (505), and a threaded rod A (506). The adjustment seat (501) is fixed to the rear end face of the street lamp body (1). A guide groove (502) is provided on the adjustment seat (501), and the guide groove (502) is an L-shaped groove structure.

6. The energy-saving and environmentally friendly outdoor walkway lighting system as described in claim 5, characterized in that: The mounting arm A (503) is slidably connected in the guide groove (502). A threaded connecting block (504) is locked in the mounting arm A (503). The right end face of the threaded connecting block (504) contacts the right end face of the inner wall of the adjusting seat (501). A lighting mechanism (6) is installed on the mounting arm A (503). A motor A (505) is installed inside the adjusting seat (501). A threaded rod A (506) is installed on the rotating shaft of the motor A (505). The threaded rod A (506) is threadedly connected to the threaded connecting block (504).

7. The energy-saving and environmentally friendly outdoor walkway lighting system as described in claim 6, characterized in that: A lighting mechanism (6) is installed on the mounting arm A (503); The lighting mechanism (6) consists of a sliding rail (601), a mounting arm B (602), a motor B (603), a threaded rod B (604), a rotating shaft B (605), a lighting lamp (606), and a rubber roller (607). The sliding rail (601) is fixed to the left end face of the mounting arm A (503). The mounting arm B (602) is slidably connected inside the sliding rail (601). The motor B (603) and the threaded rod B (604) for driving the mounting arm B (602) left and right are mounted on the mounting arm A (503).

8. The energy-saving and environmentally friendly outdoor walkway lighting system as described in claim 7, characterized in that: A rotating shaft B (605) is rotatably connected to the mounting arm B (602). The rotating shaft B (605) is fixed to the lighting lamp (606). A rubber roller (607) is installed on the rotating shaft B (605). A mounting bracket (205) is fixed on the sliding track (601), and a solar panel (206) is mounted on the mounting bracket (205). The solar panel (206) is connected to a battery that powers the display screen (201) through an existing solar conversion component. The battery is located inside the street light body (1).

9. The energy-saving and environmentally friendly outdoor walkway lighting system as described in claim 8, characterized in that: When the mounting arm B (602) moves to the left, the rubber roller (607) contacts the bottom surface of the mounting frame (205). When the mounting arm B (602) continues to move to the left, the rubber roller (607), the rotating shaft B (605) and the lighting lamp (606) swing to the left under the friction of the mounting frame (205).

10. The energy-saving and environmentally friendly outdoor walkway lighting system as described in claim 1, characterized in that: A seat (7) is fixed on the left end face of the main body (1) of the street lamp. An infrared probe (204) is installed on the seat (7). The infrared probe (204) is electrically connected to the microprocessor (207). The microprocessor (207) is electrically connected to the motor B (603). A timer (208) is installed inside the main body (1) of the street light, and the timer (208) is electrically connected to the microprocessor (207).