Electronic control device for traffic management assistance

By using an automatic adjustment mechanism and cooperating with forward and reverse motors and servo motors in conjunction with gear slides, the electronic control equipment for traffic management assistance can be installed quickly and accurately, solving the problem of low adjustment efficiency in existing technologies and improving the installation efficiency and light projection accuracy of the equipment.

CN120833672BActive Publication Date: 2025-12-12GUANGZHOU HUAXIA VOCATIONAL COLLEGE
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Patent Information

Application Number
CN202511340890.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2025-12-12
Estimated Expiration
2045-09-19

AI Technical Summary

Technical Problem

Existing electronic control equipment for traffic management assistance has low adjustment efficiency during installation, requiring manual adjustment of the angle and position of photoelectric switches and laser emitters, which is time-consuming.

Method used

An adjustment mechanism, including forward and reverse motors and servo motors, is adopted. Through the cooperation of gears and arc-shaped slides, the automatic adjustment of the laser emitter and photosensitive sensor is realized. Combined with the signal feedback of the photoelectric switch, the position of the photoelectric emitter and receiver is automatically adjusted to achieve fast and accurate installation.

Benefits of technology

It enables rapid and accurate installation of photoelectric switches and laser emitters, improves installation efficiency, ensures the accuracy of light projection direction, and enhances the safety warning effect for pedestrians.

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Abstract

The present application relates to traffic auxiliary management technical field, especially to a kind of traffic coordination auxiliary electronic control device, including mounting column, mounting ring, mounting plate, adjusting seat, green laser emitter, red laser emitter, mounting block, alignment laser emitter etc.;Mounting plate is fixedly connected with mounting ring, two mounting plates are installed on two mounting columns by mounting ring, adjusting seat is provided on mounting plate, green laser emitter and red laser emitter are installed on adjusting seat, controller is provided on mounting plate, the top of adjusting seat is connected with mounting block, alignment laser emitter is installed on mounting block.The present application drives gear to rotate reversely by positive and negative motor, to drive alignment laser emitter reciprocating swing, and alignment laser emitter can project vertical light, when vertical light irradiates to photosensitive sensor, controller controls positive and negative motor to close, i.e. angle of adjusting seat can be automatically adjusted.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of traffic assistance management, in particular to a traffic assistance electronic control device. BACKGROUND

[0002] With the continuous expansion of traffic flow and the continuous increase of per capita road occupancy, in order to ensure the safety of pedestrians, the current traffic dense intersection in the city is provided with pedestrian crossing line traffic light to ensure the orderly traffic of vehicles and pedestrians, but there are still a few pedestrians who ignore the warning of pedestrian traffic light and cross under the red light, and the traffic assistance electronic control device uses sound and light alarm to warn pedestrians and prompt pedestrians to obey traffic rules to achieve the purpose of controlling pedestrians not to run red lights.

[0003] A traffic assistance electronic control device is disclosed in Chinese patent No. 202521624729.6, which provides intuitive and high-visibility visual guidance for pedestrians through the dual-mode design of the first laser emitter projecting green light belt at green light and the second laser emitter projecting red light belt at red light. The green light belt clearly indicates the safe passing area, and the red light belt clearly defines the prohibited passing boundary. Especially in the night, fog or vision blocked scene, the penetration and eye-catching of laser light belt far exceed the traditional signal light, effectively reducing the risk of pedestrians breaking the red light. However, the above prior art needs to manually adjust the installation angle of the installation seat on both sides repeatedly to align the photoelectric emitter and photoelectric receiver of the photoelectric switch, and also needs to adjust the height and front and rear positions of the photoelectric switch, which consumes a lot of time in the adjustment process. SUMMARY

[0004] In order to overcome the low efficiency of manual adjustment in the installation of the above prior art, the present application provides a traffic assistance electronic control device which can automatically adjust and quickly and accurately adjust.

[0005] The technical scheme of the present application is: a traffic coordination auxiliary electronic control device, comprising a mounting column, a mounting ring, a mounting plate, an adjusting seat, a green laser emitter, a red laser emitter, a mounting block, a collimation laser emitter, a photosensitive sensor and an adjusting mechanism, the mounting plate is provided with two, the mounting ring is fixedly connected to the mounting plate, the two mounting plates are mounted on the two mounting columns through the mounting ring, the adjusting seat is arranged on the mounting plate, the green laser emitter and the red laser emitter are mounted on the adjusting seat, a controller is arranged on the mounting plate, the green laser emitter and the red laser emitter are electrically connected with the controller, the top of the adjusting seat is connected with the mounting block, the collimation laser emitter is mounted on the mounting block, the axis of the collimation laser emitter intersects with the axis of the mounting ring, the photosensitive sensor is embeddedly mounted in the middle of the mounting column, the collimation laser emitter and the photosensitive sensor are electrically connected with the controller, the adjusting mechanism is arranged on the mounting plate, and the adjusting mechanism can adjust the angle and height of the adjusting seat.

[0006] In one of the embodiments, the photosensitive sensor is installed at the axis position of the mounting column, and the mounting column at the position of the photosensitive sensor is made of transparent material.

[0007] In one of the embodiments, the photoelectric switch and the buzzer are further included, the photoelectric switch comprises a photoelectric emitter and a photoelectric receiver, the outer sides of the photoelectric emitter and the photoelectric receiver are provided with external threads, the photoelectric emitter and the photoelectric receiver are respectively connected to the two mounting blocks through threads, the photoelectric switch is installed through threads for replacement, the photoelectric switch is installed in a horizontal state after being installed on the mounting block, and the photoelectric switch is installed in parallel with the collimation laser emitter, the buzzer is installed on the mounting block, and the photoelectric switch and the buzzer are electrically connected with the controller.

[0008] In one of the embodiments, the adjusting mechanism comprises a mounting seat, a reversible motor, a gear, an arc-shaped sliding groove, a sliding block and an arc-shaped rack, the bottom of the mounting plate is connected with the mounting seat, the reversible motor is installed on the mounting seat, the output shaft of the reversible motor is connected with the gear, the arc-shaped sliding groove is formed in the mounting plate, the center of the arc-shaped sliding groove coincides with the center of the mounting ring, the sliding block is slidably arranged on the arc-shaped sliding groove, the bottom of the sliding block is connected with the arc-shaped rack, the arc-shaped rack is engaged with the gear, and the reversible motor is electrically connected with the controller.

[0009] In one of the embodiments, the adjusting mechanism further comprises a sliding seat, a servo motor, a reciprocating screw rod and a guide rod, the top of the sliding block is fixedly connected with the sliding seat, the servo motor is installed in the sliding seat, the output shaft of the servo motor is connected with the reciprocating screw rod, the adjusting seat is in transmission cooperation with the reciprocating screw rod, the reciprocating screw rod rotates to make the adjusting seat reciprocate up and down, the top of the sliding seat is symmetrically connected with the guide rod, the adjusting seat is slidably connected with the guide rod, and the guide rod guides the movement of the adjusting seat, and the servo motor is electrically connected with the controller.

[0010] In one of the embodiments, the first mounting frame and the fixing bolt are further included, the green laser emitter is clamped on the first mounting frame, and the green laser emitter is convenient to disassemble and assemble through clamping, and the first mounting frame is fixedly installed on the adjusting seat through the fixing bolt.

[0011] In one of the embodiments, the second mounting frame, the embedded rod and the mounting hole are further included, the red laser emitter is clamped on the second mounting frame, and the red laser emitter is convenient to disassemble and assemble through clamping, three embedded rods are uniformly connected on the second mounting frame, a plurality of mounting holes are arranged in the annular array on one side of the adjusting seat, and the embedded rod can be embedded in the mounting hole.

[0012] In one of the embodiments, the identification block is further included, the installation column is provided with the identification block, the identification block is located above the transparent area of the installation column and on the side facing the photosensitive sensor.

[0013] The present application has the following advantages: the present application drives the gear to rotate forward and reversely through the forward and reverse motor, thereby driving the sliding block to slide through the arc-shaped rack, thereby driving the normal laser emitter to reciprocate through the adjusting seat, and the normal laser emitter can project vertical light, when the vertical light irradiates to the photosensitive sensor in the process of rotating the normal laser emitter, the controller controls the forward and reverse motor to be closed, that is, the angle of the adjusting seat can be automatically adjusted; the servo motor is driven to rotate the reciprocating screw rod, so that the adjusting seat moves in the up-down direction, when the photoelectric emitter and the photoelectric receiver of the photoelectric switch are aligned, the controller controls the servo motor to be closed, that is, the height of the adjusting seat can be automatically adjusted, so that the positions of the two adjusting seats are quickly and accurately aligned, and then the position adjustment of the photoelectric switch, the green laser emitter and the red laser emitter is realized. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a schematic diagram of the overall structure of the present application.

[0015] Figure 2 It is a schematic diagram of the position structure of the mounting plate, the sliding seat and the adjusting seat in the present application.

[0016] Figure 3 It is a schematic diagram of the dispersed structure of the adjusting seat, the first mounting frame and the second mounting frame in the present application.

[0017] Figure 4 It is a schematic diagram of the connection structure of the second mounting frame and the embedded rod in the present application.

[0018] Figure 5 It is a schematic diagram of the connection structure of the sliding block and the arc-shaped rack in the present application.

[0019] Figure 6 It is a schematic diagram of the connection structure of the reciprocating screw rod and the adjusting seat in the present application.

[0020] Figure 7 This is a schematic diagram of the distribution structure of the adjusting seat and guide rod in this invention.

[0021] Figure 8 This is a schematic diagram of the connection structure between the photosensitive sensor and the mounting post in this invention.

[0022] The meanings of the reference numerals in the diagram are as follows: 1: Mounting post, 2: Mounting ring, 3: Mounting plate, 4: Adjusting seat, 5: First mounting bracket, 51: Green laser emitter, 6: Fixing bolt, 7: Second mounting bracket, 8: Red laser emitter, 9: Embedded rod, 10: Mounting hole, 11: Mounting block, 12: Photoelectric switch, 121: Buzzer, 13: Alignment laser emitter, 14: Photosensitive sensor, 15: Mounting seat, 16: Forward and reverse motor, 17: Gear, 18: Arc-shaped slide, 19: Slider, 20: Arc-shaped rack, 21: Sliding seat, 22: Servo motor, 23: Reciprocating lead screw, 24: Guide rod, 25: Identifier block. Detailed Implementation

[0023] References to embodiments herein mean that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of the invention. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0024] Example: An electronic control device for traffic management assistance, such as... Figure 1 , Figure 2 and Figure 8As shown, including the mounting column 1, mounting ring 2, mounting plate 3, adjusting seat 4, green laser emitter 51, red laser emitter 8, mounting block 11, alignment laser emitter 13, photosensitive sensor 14 and adjusting mechanism, mounting plate 3 is provided with two, mounting plate 3 is fixedly connected with mounting ring 2, two mounting plate 3 is installed on two mounting column 1 through mounting ring 2, mounting plate 3 is provided with adjusting seat 4, adjusting seat 4 is installed with green laser emitter 51 and red laser emitter 8, mounting plate 3 is provided with controller, green laser emitter 51 and red laser emitter 8 are electrically connected with the controller, the top of adjusting seat 4 is connected with mounting block 11, mounting block 11 is installed with alignment laser emitter 13, the axis of alignment laser emitter 13 intersects with the axis of mounting ring 2, the middle part of mounting column 1 is embedded with photosensitive sensor 14, photosensitive sensor 14 is installed at the axis position of mounting column 1, the mounting column 1 at photosensitive sensor 14 position adopts transparent material, alignment laser emitter 13 and photosensitive sensor 14 are electrically connected with the controller, adjusting mechanism is arranged on mounting plate 3, adjusting mechanism can adjust the angle and height of adjusting seat 4.

[0025] As Figure 2 shown, also includes a photoelectric switch 12 and buzzer 121, photoelectric switch 12 includes photoelectric emitter and photoelectric receiver, the outer side of photoelectric emitter and photoelectric receiver is provided with external thread, photoelectric emitter and photoelectric receiver are connected on two mounting block 11 through thread respectively, photoelectric switch 12 is installed through thread, in order to replace, photoelectric switch 12 is installed on mounting block 11 and is in horizontal state, and photoelectric switch 12 is installed in parallel with alignment laser emitter 13, mounting block 11 is installed with buzzer 121, photoelectric switch 12 and buzzer 121 are electrically connected with the controller; in the process of adjusting adjusting seat 4, photoelectric emitter of photoelectric switch 12 emits photoelectric signal, and when photoelectric emitter and photoelectric receiver are aligned, photoelectric receiver can receive photoelectric signal, at this time, photoelectric switch 12 sends a signal, the controller receives the signal and then executes control command.

[0026] As Figure 2 , Figure 5 , Figure 6 and Figure 7As shown, the adjusting mechanism includes a mounting seat 15, a reversible motor 16, a gear 17, an arc-shaped sliding groove 18, a sliding block 19, an arc-shaped rack 20, a sliding seat 21, a servo motor 22, a reciprocating lead screw 23 and a guide rod 24. The bottom of the mounting plate 3 is connected with the mounting seat 15, the mounting seat 15 is installed with the reversible motor 16, the output shaft of the reversible motor 16 is connected with the gear 17, the mounting plate 3 is provided with the arc-shaped sliding groove 18, the center of the arc-shaped sliding groove 18 coincides with the center of the mounting ring 2, the sliding block 19 is slidably arranged on the arc-shaped sliding groove 18, the bottom of the sliding block 19 is connected with the arc-shaped rack 20, the arc-shaped rack 20 is engaged with the gear 17, the top of the sliding block 19 is fixedly connected with the sliding seat 21, the sliding seat 21 is installed with the servo motor 22, the output shaft of the servo motor 22 is connected with the reciprocating lead screw 23, the adjusting seat 4 is drivingly connected with the reciprocating lead screw 23, the reciprocating lead screw 23 rotates to make the adjusting seat 4 reciprocate up and down, the top of the sliding seat 21 is symmetrically connected with the guide rod 24, the adjusting seat 4 is slidably connected with the guide rod 24, the guide rod 24 guides the movement of the adjusting seat 4, and the reversible motor 16 and the servo motor 22 are electrically connected with the controller. The reversible motor 16 drives the gear 17 to rotate reversely, thereby driving the arc-shaped rack 20 to move, making the sliding block 19 slide in the arc-shaped sliding groove 18, further driving the sliding seat 21 and the components above the sliding seat 21 to swing, and the servo motor 22 can drive the reciprocating lead screw 23 to rotate, thereby driving the adjusting seat 4 to move up and down under the guidance of the guide rod 24, thereby automatically adjusting the angle and height of the adjusting seat 4.

[0027] As shown in Figure 3 , it further comprises a first mounting frame 5 and a fixing bolt 6, the green laser emitter 51 is clamped on the first mounting frame 5, and the green laser emitter 51 is convenient to disassemble and install through clamping, and the first mounting frame 5 is fixedly installed on the adjusting seat 4 through the fixing bolt 6; the green laser emitter 51 is clamped and installed on the first mounting frame 5, then the angle of the first mounting frame 5 is adjusted according to the length of the zebra line, and then the first mounting frame 5 is fixed on the adjusting seat 4 through the fixing bolt 6.

[0028] As shown in Figure 3 and Figure 4 , it further comprises a second mounting frame 7, an embedded rod 9 and a mounting hole 10, the red laser emitter 8 is clamped on the second mounting frame 7, and the red laser emitter 8 is convenient to disassemble and install through clamping, the second mounting frame 7 is uniformly connected with three embedded rods 9, a plurality of mounting holes 10 are arranged in the form of an annular array on one side of the adjusting seat 4, and the embedded rods 9 can be embedded in the mounting holes 10; the red laser emitter 8 is clamped and installed on the second mounting frame 7, then the angle of the second mounting frame 7 is adjusted according to the width of the zebra line, and then the red laser emitter 8 is installed on the adjusting seat 4 through the second mounting frame 7 by inserting the embedded rods 9 into the mounting holes 10.

[0029] AsFigure 8 The installation column 1 is provided with an identification block 25, the identification block 25 is located above the transparent area of the installation column 1 and is located on the side facing each other of the photosensitive sensor 14; when the installation column 1 is installed, the position of the installation column 1 is adjusted according to the position of the identification block 25, so that the photosensitive sensors 14 on the two installation columns 1 are arranged in a roughly opposite direction.

[0030] In use, the two installation columns 1 are installed on the two sides of the starting point of the zebra crossing respectively, and the line connecting the two installation columns 1 is perpendicular to the direction of the zebra crossing; during the installation process, the direction of the installation column 1 is adjusted according to the position of the identification block 25, so that the photosensitive sensors 14 on the two sides face each other; then the installation plate 3 is sleeved on the installation column 1 through the installation ring 2, and is fixed by bolts; during the installation process, the installation plates 3 on the two sides are arranged on the side facing each other, and the installation ring 2 is located at a height lower than the transparent area of the installation column 1; because it is difficult to ensure that the adjusting seats 4 on the two sides are in the same direction and the same height during the installation process, the position of the adjusting seat 4 needs to be adjusted; the controller executes the adjustment program: the controller starts the alignment laser emitter 13 and the positive and negative motor 16 on one side and the photosensitive sensor 14 on the other side; in this embodiment, as shown in the figure, the controller starts the alignment laser emitter 13 and the positive and negative motor 16 on the left side and the photosensitive sensor 14 on the right side. Figure 1As shown, specifically, the left alignment laser emitter 13 and the positive and negative motor 16 and the right photosensitive sensor 14, when the left alignment laser emitter 13 is started, it can emit a vertical light, and the positive and negative motor 16 is started to drive the gear 17 to rotate alternately, thereby driving the sliding block 19 to slide reciprocatingly in the arc-shaped sliding groove 18 through the arc-shaped rack 20, and then driving the adjusting seat 4 to move through the sliding seat 21, and the adjusting seat 4 drives the alignment laser emitter 13 to rotate reciprocatingly through the mounting block 11, and in the process of rotating, the vertical light emitted by the alignment laser emitter 13 will also move, and when the light moves to the right photosensitive sensor 14, the photosensitive sensor 14 detects that the brightness exceeds the threshold value, and the photosensitive sensor 14 sends a signal, and the controller receives the signal to control the left positive and negative motor 16 and the alignment laser emitter 13 and the right photosensitive sensor 14 to be closed, and the controller controls the right alignment laser emitter 13 and the positive and negative motor 16 and the left photosensitive sensor 14 to be started, so that after the vertical light emitted by the right alignment laser emitter 13 is irradiated on the left photosensitive sensor 14, the controller controls the right positive and negative motor 16 and the alignment laser emitter 13 and the left photosensitive sensor 14 to be closed; in actual operation, the controller can also control the alignment laser emitter 13 and the positive and negative motor 16 and the photosensitive sensor 14 on both sides to be operated at the same time, and the same control logic as above is executed, which will not be described here; then the controller controls the photoelectric switch 12 to be started, and controls the left servo motor 22 to be operated at the same time, thereby driving the left reciprocating screw rod 23 to rotate, so that the left adjusting seat 4 moves in the up-down direction, thereby driving the upper part to move synchronously, and in the process of moving of the left adjusting seat 4, if the photoelectric emitter and the photoelectric receiver of the photoelectric switch 12 can be aligned, that is, the photoelectric signal emitted by the photoelectric emitter is received by the photoelectric receiver, at this time the controller controls the left servo motor 22 to be closed, and if the photoelectric emitter and the photoelectric receiver of the photoelectric switch 12 are still not aligned after the left adjusting seat 4 moves in the up-down direction for one cycle, the controller controls the left servo motor 22 to be closed, and controls the right servo motor 22 to be started at the same time, so that the right adjusting seat 4 drives the upper part to move in the up-down direction, and in the process of moving of the right adjusting seat 4, the photoelectric emitter and the photoelectric receiver of the photoelectric switch 12 are aligned, and the photoelectric switch 12 sends a signal, and the controller receives the signal to control the right servo motor 22 to be closed, at this time the angle and height of the adjusting seat 4 have been adjusted, the photoelectric emitter and the photoelectric receiver of the photoelectric switch 12 are on the same straight line, the red vertical light emitted by the red laser emitter 8 can be projected at the starting point of the zebra crossing, and the red vertical light is perpendicular to the direction of the zebra crossing, and the green vertical light emitted by the green laser emitter 51 can be projected at the positions on both sides of the zebra crossing, and the green vertical light is parallel to the direction of the zebra crossing.

[0031] After the adjustment, the controller executes the running program: when the traffic signal light is green, the controller controls the green laser emitter 51 to start, and the red laser emitter 8 and the photoelectric switch 12 to close, at this time, the green vertical light projected by the green laser emitter 51 is located on both sides of the zebra crossing, thereby forming a clear green guide line to prompt the pedestrian to safely pass between the two light lines; when the traffic signal light changes to red, the controller controls the red laser emitter 8 and the photoelectric switch 12 to start, and the green laser emitter 51 to close, the red vertical light projected by the red laser emitter 8 is located at the starting position of the zebra crossing, thereby forming a red warning line to remind the pedestrian not to pass; more preferably, the light projected by the red laser emitter 8 can adopt a flashing or projected character mode, which is more effective in reminding; when the pedestrian crosses the photoelectric switch 12 in the red light state, at this time, the pedestrian blocks between the photoelectric emitter and the photoelectric receiver of the photoelectric switch 12, the photoelectric receiver cannot receive the photoelectric signal of the photoelectric emitter, the photoelectric switch 12 sends a signal, and the controller receives the signal to control the buzzer 121 to start and emit an alarm sound to remind the red light runner to stop the behavior, and also to warn the surrounding pedestrians to pay attention to safety.

[0032] In actual use, according to the different length and width of the zebra crossing, the fixed bolt 6 is loosened, and then the angle of the first mounting frame 5 is rotated according to the length of the zebra crossing, so as to adjust the projection angle of the green laser emitter 51, after the adjustment is completed, the fixed bolt 6 is tightened, so as to fix the first mounting frame 5 on the adjusting seat 4, that is, the projection angle of the green laser emitter 51 is fixed, then the embedded rod 9 on the second mounting frame 7 is pulled out of the mounting hole 10, and then the angle of the second mounting frame 7 is rotated according to the width of the zebra crossing, so as to adjust the projection angle of the red laser emitter 8, after the adjustment is completed, the embedded rod 9 is inserted into the mounting hole 10 to fix the position of the second mounting frame 7, that is, the projection angle of the red laser emitter 8 is fixed.

[0033] It should be noted that the control of the controller on each electrical element is realized by PLC control, which is a mature technology in the prior art, and will not be described in detail here.

[0034] The above description is only an example of the present application and is not intended to limit the present application. Any equivalent replacement made within the principles of the present application shall be included in the protection scope of the present application. The contents of the present application not described in detail belong to the prior art known to those skilled in the art.

Claims

1. An electronic control device for traffic management assistance, characterized by comprising: Including the mounting plate (3), the mounting plate (3) is provided with two;Fixedly connected on the mounting plate (3) mounting ring (2), two mounting plate (3) through the mounting ring (2) is installed on two mounting column (1);Setting on the mounting plate (3) on the adjusting seat (4);Green laser emitter (51) and red laser emitter (8) are installed on the adjusting seat (4), the mounting plate (3) is provided with a controller, the green laser emitter (51) and the red laser emitter (8) are electrically connected with controller;Connecting the mounting block (11) on the top of the adjusting seat (4);The alignment laser emitter (13) is installed on the mounting block (11), the axis of the alignment laser emitter (13) intersects with the axis of the mounting ring (2); The photosensitive sensor (14) is embedded in the middle of the mounting column (1), the alignment laser emitter (13) and the photosensitive sensor (14) are electrically connected with the controller, the adjusting mechanism is arranged on the mounting plate (3), the adjusting mechanism can adjust the angle and height of the adjusting seat (4), the photosensitive sensor (14) is arranged at the axis position of the mounting column (1), the mounting column (1) at the position of the photosensitive sensor (14) is made of transparent material, the photoelectric switch (12) is further arranged, the photoelectric switch (12) comprises a photoelectric emitter and a photoelectric receiver, the photoelectric emitter and the photoelectric receiver are provided with external threads, and the photoelectric emitter and the photoelectric receiver are connected to the two mounting blocks (11) through threads; the buzzer (121) is arranged on the mounting block (11), and the photoelectric switch (12) and the buzzer (121) are electrically connected with the controller; the adjusting mechanism comprises the mounting seat (15) connected to the bottom of the mounting plate (3); the forward-reverse motor (16) is arranged on the mounting seat (15), and the forward-reverse motor (16) is electrically connected with the controller; the gear (17) is connected to the output shaft of the forward-reverse motor (16); the arc-shaped sliding groove (18) is arranged on the mounting plate (3), the center of the arc-shaped sliding groove (18) coincides with the center of the mounting ring (2); the sliding block (19) is arranged on the arc-shaped sliding groove (18); the arc-shaped rack (20) is connected to the bottom of the sliding block (19), and the arc-shaped rack (20) is engaged with the gear (17); the adjusting mechanism further comprises the sliding seat (21) fixedly connected to the top of the sliding block (19); the servo motor (22) is arranged in the sliding seat (21), and the servo motor (22) is electrically connected with the controller; the reciprocating lead screw (23) is connected to the output shaft of the servo motor (22), the adjusting seat (4) is in transmission cooperation with the reciprocating lead screw (23), and the reciprocating lead screw (23) rotates to make the adjusting seat (4) reciprocate up and down; the guide rod (24) is connected to the top of the sliding seat (21), the adjusting seat (4) is in sliding connection with the guide rod (24), and the guide rod (24) guides the movement of the adjusting seat (4).

2. An electronic control device for traffic management assistance according to claim 1, characterized in that: The first mounting frame (5) is further arranged, the green laser emitter (51) is clamped on the first mounting frame (5), and the first mounting frame (5) is fixedly arranged on the adjusting seat (4) through the fixing bolt (6).

3. An electronic control device for traffic management assistance according to claim 1, characterized in that: The second mounting frame (7) is further arranged, the red laser emitter (8) is clamped on the second mounting frame (7), the embedded rod (9) is connected to the second mounting frame (7), the embedded rod (9) is provided with at least two, the mounting hole (10) is arranged on one side of the adjusting seat (4), the mounting hole (10) is provided with a plurality of and arranged in an annular array, and the embedded rod (9) can be embedded in the mounting hole (10).

4. An electronic control device for traffic management assistance according to claim 1, characterized in that: Further included is a marking block (25) arranged on the mounting column (1), which marking block (25) is located above the transparent area of the mounting column (1) and on the side facing the light-sensitive sensor (14).

Citation Information

Patent Citations

  • Automatic alignment device of laser velocimeter and automatic alignment method thereof

    CN118731409A

  • Auxiliary electronic control equipment for traffic assistant management

    CN223320919U