A high-voltage line anti-fishing safety monitoring pole
By using a dual-chasm rotating structure and a solar-powered high-voltage line anti-fishing safety monitoring pole, the problem of limited monitoring and warning range in existing technologies has been solved, achieving comprehensive coverage and effective cost reduction.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG DINGYUE SAFETY TECHNOLOGY CO LTD
- Filing Date
- 2025-08-06
- Publication Date
- 2026-07-28
AI Technical Summary
Existing high-voltage line anti-fishing safety monitoring poles lack a rotating structure in the horizontal direction, resulting in monitoring and warning ranges being limited to a fixed position, creating significant safety blind spots, and adding a movable structure would be costly.
It adopts a double-chassis rotating structure, and the upper chassis can be stably rotated through the meshing of ring guide rails and gears. The bottom end of the support rod is designed with a T-shaped structure that inserts into a T-shaped groove. Combined with the drive motor driving the gear, the support rod is rotated. The support rod is equipped with devices such as cameras, warning lights, warning signs and horns. It is powered by solar panels to achieve all-round monitoring and warning.
It achieves comprehensive monitoring and warning coverage, reduces the cost of cameras and warning devices, improves the stability and lifespan of equipment, and enhances the warning effect and monitoring range.
Smart Images

Figure CN224567083U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of safety monitoring, specifically a safety monitoring pole for preventing fishing on high-voltage power lines. Background Technology
[0002] To prevent anglers from being electrocuted by high-voltage power lines, safety monitoring poles are usually installed near fishponds to prevent fishing. However, existing high-voltage power line safety monitoring poles are easily obscured by weeds around the fishpond, and their height or unclear markings make them difficult for anglers to spot. Often, anglers need to get close before being alerted, and the warning signs are not clearly visible before the monitoring pole is seen, resulting in low warning effectiveness.
[0003] The document with publication number CN209445261U discloses an anti-fishing warning device comprising a base, with fixed long nails uniformly fixed to the bottom of the base, a threaded rod fixed to the top of the base, a lifting rod sleeved at the upper middle end of the threaded rod, a rotating threaded sleeve rotatably connected to the bottom circumference of the lifting rod and screwed to the threaded rod, and a support plate fixed to the lower middle part of the lifting rod. The device is stabilized by inserting the fixed long nails deep into the soil, and the height of the device is adjusted by rotating the rotating threaded sleeve.
[0004] The aforementioned advantages include the ability to fix the anti-fishing warning device to the ground by inserting long nails deep into the soil, and the ability to adjust the device's height by rotating the threaded sleeve, allowing the device to provide warnings in different terrains. However, it only supports vertical height adjustment and lacks a horizontal rotation structure, resulting in a monitoring and warning range limited to a fixed location, failing to achieve omnidirectional coverage, and creating significant safety blind spots. Adding movable structures to the camera or warning structure would be costly for such applications, hindering the widespread adoption of the device. Utility Model Content
[0005] To address the technical deficiencies in the background technology, this utility model proposes a security monitoring solution that solves the aforementioned technical problems and meets practical needs. The specific technical solution is as follows: A high-voltage power line anti-fishing safety monitoring pole includes a base and a support rod. The base has a lower chassis and an upper chassis. A fixed rod extends from the left side of the lower chassis, and a gear is mounted on the fixed rod. A support column is located on the bottom surface of the lower chassis and is directly connected to the fixed rod. An annular guide groove is located on the upper outer side of the lower chassis. An external gear ring is located around the upper outer surface of the upper chassis, and the teeth of the gear mesh with the teeth of the external gear ring. An annular guide rail is located on the lower inner side of the upper chassis, and the annular guide rail corresponds to the annular guide rail groove. The upper chassis rotates by sliding in the annular guide rail groove. A T-shaped groove is located on the top surface of the upper chassis. A sloping top is located on the top of the support rod. A first connecting rod is located above the support rod, and a camera is mounted on the first connecting rod. A warning light is located on the upper outer side of the support rod. A second connecting rod is located in the middle part of the support rod, and a warning sign is mounted on the second connecting rod. A horn is located below the support rod. The bottom end of the support rod has a T-shaped structure, and the T-shaped structure is inserted into the T-shaped groove.
[0006] Furthermore, a drive motor is provided on the left side of the lower chassis. The lower chassis is directly connected to the drive motor via a fixed rod extending from the left side. A rotor is provided at the upper end of the drive motor, and a gear is provided above the drive motor. The drive motor and the gear are connected by inserting the rotor into the gear. The upper chassis drives the gear through the drive motor to rotate the external gear ring.
[0007] Furthermore, the sloping roof is composed of two solar panels spliced together, and the sloping roof is directly connected to the top of the support rod. Water drains are provided on both sides of the sloping roof, and the water drains are fixedly connected to the solar panels. A storage battery is provided in the center of the lower chassis, and the solar panels of the sloping roof are electrically connected to the storage battery.
[0008] Furthermore, cameras and fixing rods are provided on both sides below the first connecting rod. The fixing rods are directly connected to the lower surface of the first connecting rod and directly connected to the upper surface of the cameras. The cameras include a first camera and a second camera. The first camera and the second camera are symmetrically arranged below both ends of the first connecting rod. The first camera and the second camera are directly connected to the first connecting rod through the fixing rods.
[0009] Furthermore, a threaded hole is drilled on the top of the support rod, and a bolt is provided in the threaded hole to cooperate with each other. The support rod is fixed to the warning light by the bolt, and the warning light includes a first warning light and a second warning light.
[0010] Furthermore, warning signs are provided at both ends of the second connecting rod. The warning signs include a first warning sign and a second warning sign. The centers of the first warning sign and the second warning sign are directly connected to the two ends of the second connecting rod, respectively. LED lights are provided around the first warning sign and the second warning sign.
[0011] Furthermore, the support rod has openings on both sides below, and a horn is embedded in the opening. The horn includes a first horn and a second horn.
[0012] Furthermore, the T-shaped groove is directly connected to the top surface of the upper chassis, and a protective shell is provided on the outer periphery of the T-shaped groove, which completely covers the bottom of the T-shaped groove. The T-shaped groove is provided with several grooves of different depths, and the T-shaped structure is fixed in the grooves of different depths by being inserted into the T-shaped groove and rotated 90 degrees.
[0013] Furthermore, a support plate is provided on the outer bottom of the lower chassis.
[0014] The beneficial effects of this utility model are as follows: the base is designed as a double-platform rotating structure, and the rotation function is realized through the annular guide rail and the annular guide rail groove. The outer gear ring on the outer side of the upper plate and the gear connected to the lower plate cooperate with each other, making the upper plate more stable when rotating. The fixing rod of the lower plate, together with the support column, supports the rotation of the gear, reducing the pressure on the individual fixing rod. The T-shaped structure at the bottom of the support rod can be firmly inserted into the T-shaped groove of the upper plate and fixed securely, allowing the upper plate to drive the support rod to rotate stably together. The support rod is equipped with several warning and monitoring devices. The overall rotation eliminates the need to add separate rotating structures to the warning and monitoring devices, effectively improving the warning and monitoring effect. Attached Figure Description
[0015] Figure 1 This is a front cross-sectional view of the present invention.
[0016] Figure 2 This is a side sectional view of the present invention.
[0017] Figure 3 This is an enlarged view of the base of this utility model.
[0018] Figure 4 This is a top sectional view of the base of this utility model.
[0019] Figure 5 This is a schematic diagram of the T-shaped structure installation.
[0020] The components are: 1-base, 101-battery, 102-support plate, 103-protective shell, 2-support rod, 201-T-shaped structure, 202-first horn, 203-second horn, 3-lower chassis, 301-support column, 302-drive motor, 303-rotor, 304-gear, 305-annular guide rail groove, 4-upper chassis, 401-annular guide rail, 402-external gear ring, 403-T-shaped groove, 5-second connecting rod, 501-first warning sign, 502-second warning sign, 503-LED light, 601-first warning light, 602-second warning light, 7-second connecting rod, 701-first camera, 702-second camera, 8-sloping top, 801-water tank. Detailed Implementation
[0021] The embodiments of this utility model will be described below with reference to the accompanying drawings and related examples. The embodiments of this utility model are not limited to the following examples, and this utility model relates to relevant necessary components in this technical field, which should be regarded as well-known technology in this technical field and can be known and mastered by those skilled in this technical field.
[0022] Please see Figures 1 to 5 As shown, this utility model provides a high-voltage line anti-fishing safety monitoring pole, including a base 1 and a support rod 2. The base 1 has a lower base plate 3 and an upper base plate 4. A fixing rod extends from the left side of the lower base plate 3, and a gear 304 is provided on the fixing rod. A support column 301 is provided on the bottom surface of the lower base plate 3 and is directly connected to the fixing rod. An annular guide rail groove 305 is provided on the outer side of the upper part of the lower base plate 3. An external gear ring 402 is provided around the outer surface of the upper part of the upper base plate 4. The teeth of the gear 304 mesh with the teeth of the external gear ring 402. An annular guide rail 401 is provided on the inner side of the lower part of the upper base plate 4. The annular guide rail 401 and the annular guide rail groove are connected. 305 correspond to each other. The upper chassis 4 slides in the annular guide rail 305 via the annular guide rail 401, causing the upper chassis 4 to rotate. The top surface of the upper chassis 4 is provided with a T-shaped groove 403. The top of the support rod 2 is provided with a sloping top 8. The upper part of the support rod 2 is provided with a first connecting rod 7, which is equipped with a camera. The outer side of the upper part of the support rod 2 is provided with a warning light. The middle part of the support rod 2 is provided with a second connecting rod 5, which is equipped with a warning sign. The lower part of the support rod 2 is provided with a horn. The bottom end of the support rod 2 is shaped like a T-shaped structure 201, which is inserted into the T-shaped groove 403.
[0023] In this invention, the fixing rod is directly connected to the gear 304. The fixing rod extending from the lower chassis 3 is supported by the support column 301 on the bottom surface of the lower chassis 3, making the structure more stable. The annular guide rail 401 of the upper chassis 4 slides in the annular guide rail groove 305 of the lower chassis 3. The teeth of the gear 304 mesh with the teeth of the external gear ring 402, making it less likely for the upper chassis 4 to tilt when rotating and causing the upper support rod 2 to rotate together. The connection between the support rod 2 and the base 1 is changed from a fixed connection to a movable connection. The bottom end of the support rod 2 is designed as a T-shaped structure 201, and the top surface of the upper chassis 4 is welded with... With a T-shaped groove 403, the support rod 2 inserts the T-shaped structure 201 into the T-shaped groove 403, making the connection between the base 1 and the support rod 2 a movable connection, which facilitates the disassembly of the equipment; the top of the support rod 2 is directly connected to the inclined top 8, which can shield the equipment from some rainwater when it rains, extending the service life of the equipment; the rotation of the upper chassis 3 causes the camera, warning light, warning sign and horn on the support rod 2 to rotate together, which can expand the monitoring range of the camera, improve the warning effect of the warning light, make the warning sign visible to people from multiple directions, and make the alarm sound emitted by the horn spread in multiple directions.
[0024] As a preferred embodiment of this utility model, such as Figures 3 to 4 As shown, a drive motor 302 is provided on the left side of the lower chassis 3. The lower chassis 3 is directly connected to the drive motor 302 via a fixed rod extending from the left side. A rotor 303 is provided at the upper end of the drive motor 302. A gear 304 is provided above the drive motor 302. The drive motor 302 and the gear 304 are connected by the rotor 303 being inserted into the gear 304. The upper chassis 4 drives the gear 304 through the drive motor 302 to rotate the outer gear ring 402.
[0025] The fixed rod of this utility model is connected to a drive motor 302, and the upper end of the drive motor 302 is connected to a rotor 303. By inserting the rotor 303 into the lower center of the gear 304, the drive motor 302 can drive the gear 304. When the motor drives the gear 304 to rotate, it can drive the upper chassis 4 to rotate together, so that the equipment can rotate automatically through the drive motor 302.
[0026] As another preferred embodiment of this utility model, Figures 1 to 2 As shown, the sloping roof 8 is composed of two solar panels spliced together. The sloping roof 8 is directly connected to the top of the support rod 2. Water drains 801 are provided on both sides of the sloping roof 8. The water drains 801 are fixedly connected to the solar panels. A storage battery 101 is provided in the center of the lower chassis 3. The solar panels of the sloping roof 8 are electrically connected to the storage battery 101.
[0027] The material of the sloping roof 8 in this utility model is replaced by two solar panels. The solar panels are spliced together to form the shape of the sloping roof 8, which can not only block some rainwater, but also generate electricity using solar panels to achieve energy saving and environmental protection. Two drainage channels 801 are welded on both sides of the sloping roof 8 to drain the rainwater dripping from the top, which can effectively improve the waterproof effect. The sloping roof 8 can receive more sunlight as it rotates with the support rod 2, allowing the solar panels to generate electricity fully. A storage battery 101 is installed in the center of the lower chassis 3 and wrapped with an insulating protective shell. The storage battery 101 and the solar panels are connected by wires laid inside the support rod 2 and the base 1. The electricity generated by the solar panels can be stored in the storage battery 101. The storage battery 101 is equipped with a valve, which can transfer electricity to the electrical components. This allows the device to realize two power supply modes. The first mode is that the storage battery 101 generates electricity through solar power and can transfer the stored electricity to the electrical components. The second mode is that when the solar power generation is insufficient, the valve inside the storage battery 101 is closed, and the device is powered by an external power source.
[0028] Another preferred embodiment of this utility model is as follows: Figures 1 to 2 As shown, cameras and fixing rods are provided on both sides below the first connecting rod 7. The fixing rods are directly connected to the lower surface of the first connecting rod 7 and directly connected to the upper surface of the cameras. The cameras include a first camera 701 and a second camera 702. The first camera 701 and the second camera 702 are symmetrically arranged below both ends of the first connecting rod 7. The first camera 701 and the second camera 702 are directly connected to the first connecting rod 7 through the fixing rods.
[0029] This invention features a first camera 701 and a second camera 702 symmetrically arranged on both sides of the lower end of the first connecting rod 7. The two cameras expand the monitoring range. Furthermore, the base 4 drives the support rod 2 to rotate, allowing the cameras to rotate 360 degrees and monitor a wider area. In contrast, other commercially available cameras typically use 360-degree rotating cameras with adjustable tilt angles, or cameras with rotating connection points. Such cameras are relatively expensive to purchase, maintain, and service. However, this invention utilizes a double-base rotating structure to rotate the support rod 2, increasing the mobility of the cameras mounted on the support rod 2. These cameras can rotate 360 degrees with the support rod 2, increasing the monitoring range and reducing the cost of the cameras used.
[0030] Another preferred embodiment of this utility model is as follows: Figures 1 to 2As shown, a threaded hole is drilled on the top of the support rod 2, and a bolt that fits into the threaded hole is provided. The support rod 2 is fixed to the warning light by the bolt. The warning light includes a first warning light 601 and a second warning light 602.
[0031] The support rod 2 of this invention is fixed to the two warning lights with bolts, making the warning lights less likely to fall off and reducing maintenance costs. Conventional warning devices only install one warning light, and to achieve an all-around flashing light effect, several warning lights need to be installed. Unlike conventional warning light settings, this invention allows the warning lights to create a dynamic light effect by rotating the support rod 2, improving the visibility distance. What used to require several warning lights can now be achieved by simply installing two warning lights symmetrically to achieve an all-around flashing light effect.
[0032] Another preferred embodiment of this utility model is as follows: Figures 1 to 2 As shown, warning signs are provided at both ends of the second connecting rod 5. The warning signs include a first warning sign 501 and a second warning sign 502. The centers of the first warning sign 501 and the second warning sign 502 are directly connected to the two ends of the second connecting rod 5, respectively. LED lights 503 are provided around the first warning sign 501 and the second warning sign 502.
[0033] The support rod 2 of this invention has a warning sign at the front and back of the middle section, making the warning signs visible to people in both directions. Combined with the rotation of the base 4, the warning signs are visible from multiple angles, improving the warning effect. The LED light 503 has a photoresistor inside its circuit. When there is insufficient light at night, the resistance of the photoresistor increases, and the internal circuit of the LED light 503 forms a circuit to emit light. The double-sided warning signs can achieve a brief visual pause by rotating, making it easier for anglers at different angles and at night to see the warning signs and receive a reminder. Compared to existing technologies, where only one warning sign is usually installed at the front of the warning device, and the content is difficult to see at night due to light limitations, this invention not only has warning signs at both the front and back, but also allows the two warning signs to overlap by rotating the support rod 2, creating a brief visual pause, making the content visible to people in multiple directions. Furthermore, LED lights 7 with photoresistors inside their circuits are added around the warning signs, allowing the signs to not only light up at night, but also automatically control the LED lights 7 to turn on and off via the photoresistors, saving power.
[0034] Another preferred embodiment of this utility model is as follows: Figures 1 to 2 As shown, the support rod 2 has openings on both sides below, and a horn is embedded in the opening. The horn includes a first horn 202 and a second horn 203.
[0035] This invention features openings on both sides below the support rod 2, into which horns are embedded. Rotation of the horn ensures even distribution of the alarm sound, resulting in a wider coverage area. Furthermore, compared to horns on the market, which typically mount megaphones on warning devices and have a single direction of orientation, this invention uses only two embedded horns, which, in conjunction with the rotation of the support rod 2, can transmit alarm sounds in different directions.
[0036] Another preferred embodiment of this utility model, Figure 3 and Figure 5 As shown, the T-shaped groove 403 is directly connected to the top surface of the upper chassis 4. A protective shell 103 is provided on the outer periphery of the T-shaped groove 403, which completely covers the bottom of the T-shaped groove. The T-shaped groove 403 has several grooves of different depths. The T-shaped structure 201 is inserted into the T-shaped groove 403 and rotated 90 degrees to be fixed in the grooves of different depths.
[0037] This invention features four grooves of varying depths within the T-groove 403, filled with cushioning material. This cushioning material increases the friction of the T-shaped structure 201 within the T-groove 403. After inserting the T-shaped structure 201 into the T-groove 403 and rotating it 90 degrees clockwise or counterclockwise, the T-shaped structure 201 is fixed in the T-groove 403. The T-shaped structure 201 can be inserted into grooves of different depths, allowing for flexible adjustment of the support rod 2's height, which can be used flexibly according to different situations. A circular protective shell 103 is added to the outer periphery of the T-groove 403, completely enclosing the lower part of the T-groove 403, including the upper chassis 3 and lower chassis 4. This prevents the motor from being exposed, avoids rusting after rain, and extends the equipment's service life.
[0038] Another preferred embodiment of this utility model, Figures 3 to 4 As shown, a support plate 102 is provided on the outer side of the bottom of the lower chassis 3.
[0039] This utility model adds three identical support plates 102 to the bottom outer side of the lower chassis 3. The support plates 102 are triangular with a certain thickness, which increases the stability of the base 1. The support plates 102 also have evenly distributed bolt holes, which further increases the stability of the structure when the equipment rotates, helps to prevent vibration after the motor starts, and also helps to increase wind resistance.
[0040] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A safety monitoring pole for preventing fishing on high-voltage power lines, comprising a base (1) and a support rod (2), characterized in that: The base (1) is provided with a lower base plate (3) and an upper base plate (4). A fixing rod extends from the left side of the lower base plate (3), and a gear (304) is provided on the fixing rod. A support column (301) is provided on the bottom surface of the lower base plate (3) and is directly connected to the fixing rod. An annular guide rail groove (305) is provided on the outer side above the lower base plate (3). An external gear ring (402) is provided around the outer surface above the upper base plate (4). The teeth of the gear (304) mesh with the teeth of the external gear ring (402). An annular guide rail (401) is provided on the inner side below the upper base plate (4). The annular guide rail (401) corresponds to the annular guide rail groove (305). The upper base plate (4) is connected to the annular guide rail. (401) The upper chassis (4) is rotated by sliding in the annular guide groove (305). The top surface of the upper chassis (4) is provided with a T-shaped groove (403). The top of the support rod (2) is provided with an inclined top (8). The support rod (2) is provided with a first connecting rod (7) above it. The first connecting rod (7) is provided with a camera. The support rod (2) is provided with a warning light on the outer side above it. The middle part of the support rod (2) is provided with a second connecting rod (5). The second connecting rod (5) is provided with a warning sign. The support rod (2) is provided with a horn below it. The bottom of the support rod (2) is shaped like a T-shaped structure (201). The T-shaped structure (201) is inserted into the T-shaped groove (403).
2. A high-voltage line anti-fishing safety monitoring pole according to claim 1, characterized in that: The lower chassis (3) has a drive motor (302) on its left side. The lower chassis (3) is directly connected to the drive motor (302) via a fixed rod extending from the left side. The upper end of the drive motor (302) has a rotor (303). The drive motor (302) has a gear (304) above it. The drive motor (302) and the gear (304) are connected by inserting the rotor (303) into the gear (304). The upper chassis (4) drives the gear (304) through the drive motor (302) to rotate the outer gear ring (402).
3. A high-voltage line anti-fishing safety monitoring pole according to claim 1, characterized in that: The sloping roof (8) is made up of two solar panels. The sloping roof (8) is directly connected to the top of the support rod (2). Water drains (801) are provided on both sides of the sloping roof (8). The water drains (801) are fixedly connected to the solar panels. A storage battery (101) is provided in the center of the lower chassis (3). The solar panels of the sloping roof (8) are electrically connected to the storage battery (101).
4. A high-voltage line anti-fishing safety monitoring pole according to claim 1, characterized in that: Cameras and fixing rods are provided on both sides below the first connecting rod (7). The fixing rods are directly connected to the lower surface of the first connecting rod (7) and directly connected to the upper surface of the camera. The camera includes a first camera (701) and a second camera (702). The first camera (701) and the second camera (702) are symmetrically arranged below both ends of the first connecting rod (7). The first camera (701) and the second camera (702) are directly connected to the first connecting rod (7) through the fixing rods.
5. A high-voltage line anti-fishing safety monitoring pole according to claim 1, characterized in that: The support rod (2) has a threaded hole drilled on its upper part, and the threaded hole is provided with mutually cooperating bolts. The support rod (2) is fixed to the warning light by bolts. The warning light includes a first warning light (601) and a second warning light (602).
6. A high-voltage line anti-fishing safety monitoring pole according to claim 1, characterized in that: Warning signs are provided at both ends of the second connecting rod (5). The warning signs include a first warning sign (501) and a second warning sign (502). The center of the first warning sign (501) and the second warning sign (502) are directly connected to the two ends of the second connecting rod (5). LED lights (503) are provided around the first warning sign (501) and the second warning sign (502).
7. A high-voltage line anti-fishing safety monitoring pole according to claim 1, characterized in that: The support rod (2) has openings on both sides below, and a horn is embedded in the opening. The horn includes a first horn (202) and a second horn (203).
8. A high-voltage line anti-fishing safety monitoring pole according to claim 1, characterized in that: The T-shaped groove (403) is directly connected to the top surface of the upper chassis (4). A protective shell (103) is provided on the outer periphery of the T-shaped groove (403). The protective shell (103) completely covers the bottom of the T-shaped groove (403). The T-shaped groove (403) is provided with several grooves of different depths. The T-shaped structure (201) is inserted into the T-shaped groove (403) and rotated 90 degrees to be fixed in the grooves of different depths.
9. A high-voltage line anti-fishing safety monitoring pole according to claim 1, characterized in that: The lower chassis (3) is provided with a support plate (102) on the outer side of its bottom.