Intelligent electric power warning device

By setting up intelligent power warning devices with water level sensors and drainage components outside the water horse, the risk of anglers ignoring the power lines when fishing is solved, automatic adjustment and safety warning when water level changes are achieved, the risk of electric shock accidents is reduced, and good energy-saving, environmental protection and intelligent management are demonstrated.

CN120048045APending Publication Date: 2025-05-27GUANGDONG XINDIAN POWER TECH CO LTD
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Patent Information

Application Number
CN202510024122.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2025-05-27

AI Technical Summary

Technical Problem

When fishing in natural waters such as rivers and lakes, anglers are prone to ignore the existence of power lines, resulting in an increase in the risk of electric shock accidents. Especially when the water level rises in the rainy season, the original fixed power warning signs are easily flooded or blocked by water, losing their warning function.

Method used

An intelligent power warning device is designed, including a water level sensor and a drainage assembly. By setting a water level sensor outside the water horse to detect water level changes. When the water level reaches the preset warning value, the drainage assembly is activated to discharge water inside the water horse, and the center of gravity of the device is lowered through the telescopic rod assembly, so that the device can float on the water surface and avoid damage to electronic equipment.

Benefits of technology

It realizes automatic adjustment of the device posture when the water level changes to avoid being flooded by water, ensures the continuity and effectiveness of power safety warnings, reduces the risk of electric shock accidents, and demonstrates a good level of energy conservation, environmental protection and intelligent management.

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Abstract

The invention discloses an intelligent electric power warning device which comprises a water horse, a telescopic rod assembly, a top bin, a solar panel, a camera module, a control module, a warning board body, a water level sensor and a drainage assembly. The telescopic rod assembly is installed above the water barrier, the top bin is installed above the telescopic rod assembly, the warning board body is installed in the middle of the telescopic rod assembly, the solar panel is installed at the top of the top bin, the camera module is installed at the bottom of the top bin, the control module is installed in the top bin, and the solar panel is electrically connected with the control module and the camera module. A water storage space is arranged in the water horse, a first drainage opening is formed in the upper portion of the water horse, the drainage assembly is installed in the water storage space and connected with the first drainage opening, and the water level sensor is installed on the outer side of the water horse. The water level sensor is arranged outside the water horse and used for detecting whether the water horse is immersed in water or not, when the water horse is immersed in water, the drainage assembly can drain water in the water horse in time, meanwhile, the gravity center of the device is lowered, and the device can float on the water surface.
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Description

Technical Field

[0001] This application relates to the technical field of warning signs, and particularly to an intelligent power warning device. Background Art

[0002] In the context of the booming economy, outdoor leisure activities have gradually become one of the important ways for people to pursue the quality of life. Fishing, as a traditional and popular outdoor activity, has seen a significant increase in participation in recent years. However, with the increase in fishing enthusiasts, some safety hazards have gradually emerged. Especially when fishing in natural waters such as rivers and lakes, due to the lack of sufficient understanding of the surrounding environment and safety awareness, fishermen often overlook potential electrical safety risks.

[0003] Power lines are usually arranged along waters such as rivers and lakes to ensure the power supply to surrounding areas. However, these power lines often become dangerous sources overlooked by fishing enthusiasts. During the fishing process, if the fishing rod or fishing line accidentally touches the high-voltage wire, it is extremely easy to cause an electric shock accident, resulting in casualties and property losses. Although relevant departments have taken a series of measures to raise the public's awareness of electrical safety, such as setting warning signs and strengthening publicity and education, due to the complex and changeable natural environment, especially when the water level rises during the rainy season, the original fixed electrical warning signs are easily flooded or blocked by water, losing their due warning effect. Summary of the Invention

[0004] The purpose of the embodiments of this application is to provide an intelligent power warning device. By installing a water level sensor outside the water horse to detect whether it is flooded, when flooding occurs, the drainage component can timely drain the water inside the water horse, and at the same time lower the center of gravity of the device, so that the device can float on the water surface to avoid damage to the electronic devices on the device.

[0005] To achieve the above purpose, this application adopts the following technical solutions:

[0006] On the one hand, an intelligent power warning device is provided, including: a water horse, a telescopic rod assembly, a top bin, a solar panel, a camera module, a control module, a warning sign main body, a water level sensor, and a drainage component; the telescopic rod assembly is installed above the water horse, the top bin is installed above the telescopic rod assembly, the warning sign main body is installed in the middle of the telescopic rod assembly, the solar panel is installed on the top of the top bin, the camera module is installed at the bottom of the top bin, the control module is installed inside the top bin, and the solar panel is electrically connected to the control module and the camera module;

[0007] The water horse is provided with a water storage space. A first drain outlet communicating with the water storage space is provided at the upper part of the water horse. The drainage assembly is installed in the water storage space, and its drainage end is connected to the first drain outlet. The water level sensor is installed on the outer side of the water horse, and the drainage assembly is electrically connected to the water level sensor.

[0008] Further, the drainage assembly includes a drainage pump, a first pipe and a second pipe. One end of the drainage pump is connected to the first pipe, and the other end is connected to the second pipe. The first pipe passes through the first drain outlet, and the second pipe extends to the bottom of the water storage space.

[0009] Further, the bottom of the water storage space is inclined, and the second pipe extends to the lower side of the water storage space.

[0010] Further, a second drain outlet communicating with the lower side of the water storage space is opened at the lower part of the water horse, and a sealing plug is provided on the second drain outlet.

[0011] Further, the water level sensor includes a first ultrasonic sensor and a second ultrasonic sensor. The first ultrasonic sensor is arranged on the side surface of the water horse and on the same side as the first drain outlet, and the second ultrasonic sensor is arranged on the other side surface of the water horse.

[0012] Further, the drainage assembly is configured as follows: when the water level heights detected by the first ultrasonic sensor and the second ultrasonic sensor are inconsistent, taking the detection height of the first ultrasonic sensor as a first judgment value, when the first judgment value exceeds the safety height, the drainage assembly is started to drain the water in the water storage space out of the water horse. After the drainage assembly is started, the telescopic rod assembly drives the warning sign body and the top bin to contract relative to the water horse direction.

[0013] Further, when the water level heights detected by the first ultrasonic sensor and the second ultrasonic sensor are inconsistent and neither exceeds the set safety height, the average value of the two water level height values is obtained. When this average value reaches more than 85% of the safety height, the drainage assembly is started.

[0014] Further, a connecting part is provided on the water horse, and the connecting part is connected to the shore fixing structure through a rope.

[0015] Further, the top bin includes two upwardly arranged inclined surfaces, an included angle less than 90° is formed between the two inclined surfaces, and solar panels are installed on both inclined surfaces.

[0016] Further, the bottom edge of the inclined plane extends vertically downward to form a vertical plane, and a plurality of infrared sensors are arranged on the vertical plane. The infrared sensors are electrically connected to the control module.

[0017] The beneficial effects of this application are as follows: In the normal state, the telescopic rod assembly remains extended, enabling key components such as the warning sign body, solar panel, and camera module to be located at a higher position, facilitating observation and receiving solar energy. At the same time, the water level sensor continuously monitors the water level change outside the water horse. Once encountering rainfall or rising water levels in rivers or lakes, when the water level reaches the preset warning value, the water level sensor transmits a signal to the control module, and then activates the drainage component. The drainage component discharges the accumulated water in the water storage space of the water horse to the outside through a preset drainage path inside the water horse. At the same time, the telescopic rod assembly starts to contract, reducing the center of gravity of the entire device to adapt to the water level change and enhance stability. As the water level continues to rise, when the water inside the water horse is effectively discharged and the telescopic rod assembly contracts to the lowest position, the entire device can float on the water surface due to the buoyancy of the remaining structure.

[0018] In the floating state, the solar panel continues to supply power to the control module and the camera module, realizing continuous energy supply. The camera module monitors the surrounding environment and captures any possible dangerous situations, while the control module controls the display content of the warning sign body according to the preset logic, such as emitting warning lights or displaying safety information, to continuously remind passing personnel to pay attention to electrical safety. This design not only improves the safety and adaptability of the device but also demonstrates good energy conservation, environmental protection, and intelligent management levels.

[0019] In summary, the intelligent electrical warning device of the embodiment of this application realizes intelligent response and adaptation to water level changes by integrating multiple functional modules and adopting advanced sensing and control technologies, effectively avoiding damage or failure caused by the device being flooded with water, and ensuring the continuity and effectiveness of electrical safety warnings. At the same time, the device also has characteristics such as energy conservation, environmental protection, and intelligent management, which are of great significance for improving the efficiency and effect of electrical safety warnings, ensuring public safety, and promoting green and sustainable development. Description of the Drawings

[0020] The following further details this application according to the drawings and embodiments.

[0021] Figure 1 is a perspective view of the intelligent electrical warning device described in the embodiment of this application;

[0022] Figure 2 is a perspective view (excluding the water horse) of the intelligent electrical warning device described in the embodiment of this application;

[0023] Figure 3 is a front view of the intelligent electrical warning device described in the embodiment of this application;

[0024] Figure 4 It is the top view of the intelligent power warning device described in the embodiment of the present application;

[0025] Figure 5 For the embodiment of the present application Figure 4 The schematic cross-sectional view at A-A in;

[0026] Figure 6 It is the three-dimensional view of the water horse described in the embodiment of the present application;

[0027] Figure 7 It is the three-dimensional view of the drainage component described in the embodiment of the present application.

[0028] In the figure: 1. Water horse; 101. Water storage space; 102. First drain port; 103. Second drain port; 2. Telescopic rod assembly; 3. Top bin; 4. Solar panel; 5. Camera module; 6. Warning sign body; 7. Water level sensor; 701. First ultrasonic sensor; 702. Second ultrasonic sensor; 8. Drainage component; 801. Drainage pump; 802. First pipe; 803. Second pipe; 9. Sealing plug; 10. Connection part; 11. Infrared sensor. Specific embodiments

[0029] To make the technical problems solved by the present application, the technical solutions adopted and the achieved technical effects clearer, the technical solutions of the embodiments of the present application will be further described in detail below. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts fall within the protection scope of the present application.

[0030] In the description of the present application, unless otherwise clearly defined and limited, the terms "connected", "connected", "fixed" shall be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or integrated; it can be a mechanical connection, an electrical connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to specific situations.

[0031] In this application, unless otherwise clearly specified and defined, the first feature being "on" or "under" the second feature may include the direct contact between the first and second features, or may include the situation where the first and second features are not in direct contact but in contact through additional features therebetween. Moreover, the first feature being "above", "over" and "on top of" the second feature includes that the first feature is directly above and obliquely above the second feature, or merely indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature being "under", "beneath" and "underneath" the second feature includes that the first feature is directly below and obliquely below the second feature, or merely indicates that the horizontal height of the first feature is lower than that of the second feature.

[0032] As Figures 1-7 shown, this embodiment provides an intelligent power warning device, comprising: a water horse 1, a telescopic rod assembly 2, a top bin 3, a solar panel 4, a camera module 5, a control module, a warning sign body 6, a water level sensor 7 and a drainage assembly 8; the telescopic rod assembly 2 is installed above the water horse 1, the top bin 3 is installed above the telescopic rod assembly 2, the warning sign body 6 is installed in the middle of the telescopic rod assembly 2, the solar panel 4 is installed on the top of the top bin 3, the camera module 5 is installed at the bottom of the top bin 3, the control module is installed inside the top bin 3, and the solar panel 4 is electrically connected to the control module and the camera module 5; a water storage space 101 is provided inside the water horse 1, a first drain port 102 communicating with the water storage space 101 is provided at the upper part of the water horse 1, the drainage assembly 8 is installed in the water storage space 101, and its drainage end is connected to the first drain port 102, the water level sensor 7 is installed outside the water horse 1, and the drainage assembly 8 is electrically connected to the water level sensor 7.

[0033] Based on the above solution, the device integrates key structural components such as a water horse 1, a telescopic rod assembly 2, a top compartment 3, a solar panel 4, a camera module 5, a control module, a warning sign body 6, a water level sensor 7, and a drainage component 8, aiming to respond to water level changes through intelligent technology and ensure the effectiveness of power safety warnings. The water horse 1, as the foundation of the device, has a water storage space 101 inside, which is used to increase stability and respond to water level changes; the telescopic rod assembly 2 can be adjusted in length according to the water level change, and usually remains in the extended state, so that the warning sign body 6, the solar panel 4, etc. are located at a higher position, and when the water level rises, it contracts to lower the center of gravity. The top compartment 3 provides protection for the control module, the camera module 5, etc., and facilitates the installation of the solar panel 4 to achieve power supply. The solar panel 4 converts solar energy into electrical energy to provide power support for the entire system. The camera module 5 is responsible for monitoring the surrounding environment, capturing images in real time and transmitting them to the control module for processing. The control module, as the core control unit, receives information from the water level sensor 7 and the camera module 5, and makes decisions and controls according to the preset logic, including controlling the display content of the warning sign body 6, starting the drainage component 8, etc. The warning sign body 6 is used to display safety warning information to remind passing personnel to pay attention to power safety. The water level sensor 7 monitors the water level change outside the water horse 1 in real time, and when the preset warning value is reached, it triggers the start of the drainage component 8. The drainage component 8 discharges the accumulated water inside the water horse 1 to the outside through a preset drainage path, enabling the device to automatically drain water when the water level rises, reducing the center of gravity and buoyancy, and avoiding damage or failure caused by being flooded. The various structural components work together to jointly form an efficient, stable, and reliable power safety warning system, which not only improves the efficiency and effect of power safety warnings, but also demonstrates strong environmental adaptability and intelligent management level, bringing a new solution to the field of power safety warnings.

[0034] Generally speaking, this solution can effectively avoid damage or failure caused by the device being flooded by intelligently responding to water level changes, ensure that it can still play a warning role under extreme weather conditions, and reduce the risk of electric shock accidents. Moreover, the device is flexibly designed and can automatically adjust its posture according to the water level change, realizing a smooth transition from a fixed installation to a floating state to meet the needs of different water environments. In addition, using solar power supply reduces the dependence on traditional energy sources. At the same time, the low-power design of the camera module 5 and the control module extends the operation time of the device and reduces the maintenance cost. And by integrating the control module and sensing technology, real-time monitoring and intelligent management of the device status are achieved, improving the work efficiency and response speed.

[0035] It should be noted that the water horse 1 and the telescopic rod assembly 2 are detachable structures, that is, the water horse 1 can be removed from the entire warning device according to the actual situation, specifically as Figure 2 shown.

[0036] Further, the drainage component 8 includes a drainage pump 801, a first pipe 802, and a second pipe 803. One end of the drainage pump 801 is connected to the first pipe 802, and the other end is connected to the second pipe 803. The first pipe 802 passes through the first drainage opening 102, and the second pipe 803 extends to the bottom of the water storage space 101. The drainage component 8 of the intelligent power warning device is mainly composed of a drainage pump 801, a first pipe 802, and a second pipe 803. When the water level sensor 7 detects that the water level outside the water horse 1 reaches the preset warning value, the control module will immediately activate the drainage component 8. The drainage pump 801 serves as the power source and realizes the drainage function through the pipe connections at both ends. One end of the drainage pump 801 is connected to the first pipe 802, which passes through the first drainage opening 102 of the water horse 1 and extends to the outside of the water horse 1. The other end is connected to the second pipe 803, which extends deep into the bottom of the water storage space 101 to ensure sufficient contact with and extraction of the accumulated water. When the drainage pump 801 is activated, it uses the negative pressure principle to extract the accumulated water in the water storage space 101 through the second pipe 803 and discharge it to the outside of the water horse 1 through the first pipe 802. During this process, the continuous operation of the drainage pump 801 ensures the rapid and effective discharge of the accumulated water, thereby reducing the center of gravity and buoyancy of the device and enhancing the stability of the device.

[0037] The design of the drainage component 8 enables the device to quickly activate the drainage pump 801 when the water level rises. Through the effective connection of the first pipe 802 and the second pipe 803, the rapid discharge of the accumulated water is achieved, which greatly improves the drainage efficiency of the device and reduces the risk of damage or failure caused by the accumulated water. As the accumulated water is discharged, the center of gravity and buoyancy of the device are reduced, thereby enhancing the stability of the device, helping to prevent the device from being submerged or washed away by water when the water level rises, and ensuring the continuous effectiveness of the power safety warning. The coordinated operation of the drainage component 8 and structural components such as the control module realizes the intelligent response to the water level change, not only improves the automation level of the device, but also reduces the need for manual intervention, making the device have a broader application prospect in the field of power safety warning. Moreover, the drainage component 8 uses the drainage pump 801 as the power source, which is more energy-saving and environmentally friendly than traditional drainage methods. At the same time, the introduction of the solar panel 4 also provides green and sustainable power support for the entire system, further reducing the operating cost and environmental impact of the device.

[0038] Furthermore, the bottom of the water storage space 101 is inclined, and the second pipe 803 extends to the lower side of the water storage space 101. The bottom of the water storage space 101 is designed to be inclined, which allows accumulated water to naturally flow to the lower side within the water storage space 101. At the same time, the second pipe 803 in the drainage assembly 8 extends to the lower side of the water storage space 101 and cooperates with the inclined bottom to ensure more effective extraction of the accumulated water. When the water level sensor 7 detects that the water level outside the water horse 1 reaches the preset warning value, the control module will immediately activate the drainage assembly 8. The drainage pump 801 serves as the power source and realizes the drainage function through the pipes connected to both ends. Due to the inclined bottom of the water storage space 101, the accumulated water will gather on the lower side, which enables the second pipe 803 to more easily contact the accumulated water and extract it. After the drainage pump 801 is started, it will extract the accumulated water in the water storage space 101 through the second pipe 803 and discharge it to the outside of the water horse 1 through the first pipe 802. As the accumulated water is continuously discharged, the water level in the water storage space 101 gradually decreases until it reaches a safe level.

[0039] Meanwhile, a second drainage port 103 communicating with the lower side of the water storage space 101 is provided at the lower part of the water horse 1, and a sealing plug 9 is arranged on the second drainage port 103. At the lower part of the water horse 1, a second drainage port 103 communicating with the lower side of the water storage space 101 is specifically provided. This design allows the water in the water horse 1 to be conveniently drained through the second drainage port 103 when the device needs to be moved, thereby reducing the weight and facilitating movement. To ensure that the water horse 1 does not leak accidentally during daily use, a sealing plug 9 is arranged on the second drainage port 103 to keep the drainage port sealed under normal circumstances. When the device needs to be moved, the operator can open the sealing plug 9 to allow the accumulated water in the water storage space 101 to flow out through the second drainage port 103. As the accumulated water is continuously discharged, the weight of the water horse 1 gradually decreases, thereby improving the mobility of the device. Once the movement is completed, the operator can reinsert the sealing plug 9 to ensure the sealing and stability of the water horse 1.

[0040] In some embodiments, the water level sensor 7 includes a first ultrasonic sensor 701 and a second ultrasonic sensor 702. The first ultrasonic sensor 701 is arranged on the side of the water horse 1 and is on the same side as the first drainage port 102, and is used to detect the water level height on this side. The second ultrasonic sensor 702 is arranged on the other side of the water horse 1 and is used to detect the water level height on the opposite side. Such a design can provide more comprehensive water level monitoring to ensure the accurate response of the device under different water level changes.

[0041] When the first ultrasonic sensor 701 and the second ultrasonic sensor 702 work simultaneously, they will respectively detect the water level heights on their respective sides. Under normal circumstances, due to the symmetry of the structure of the water horse 1, the water level heights on both sides should be the same. However, in some special cases, such as water flow scouring, uneven terrain, or the inclination of the water horse 1, etc., the water level heights on both sides may become inconsistent.

[0042] To address this situation, the drainage assembly 8 is configured to use the detection height of the first ultrasonic sensor 701 as the first judgment value. When the first judgment value exceeds the preset safety height, the drainage assembly 8 will be immediately activated to drain the water in the water storage space 101 out of the water horse 1. This design ensures that even in the case of inconsistent water levels, the device can make a timely response based on the highest water level, preventing the water horse 1 from being flooded, and also avoiding the situation where drainage cannot be carried out after the water level exceeds the height of the first drain port 102.

[0043] At the same time, after the drainage assembly 8 is activated, the telescopic rod assembly 2 will drive the warning sign body 6 and the top bin 3 to contract in the direction relative to the water horse 1. This action aims to reduce the center of gravity and the stress area of the device, enhance the stability of the device, and prevent overturning or damage caused by the rising water level.

[0044] Generally speaking, through the combined use of the first ultrasonic sensor 701 and the second ultrasonic sensor 702, the device can more accurately monitor the water level changes and can make timely responses even in special cases. When the water level rises, the timely activation of the drainage assembly 8 and the contraction action of the telescopic rod assembly 2 together enhance the stability of the device and prevent potential safety hazards caused by water level changes. Using the detection height of the first ultrasonic sensor 701 as the judgment value ensures that the drainage assembly 8 is activated at the highest water level, thereby improving the drainage efficiency and reducing the impact of water accumulation on the device. Through the linkage mechanism of the water level sensor 7, the drainage assembly 8, and the telescopic rod assembly 2, the device realizes intelligent response and adaptive adjustment to water level changes, improving the intelligent level of the device.

[0045] In addition, when the water level heights detected by the first ultrasonic sensor 701 and the second ultrasonic sensor 702 are inconsistent and neither exceeds the set safety height, the average value of the two water level height values is obtained. When this average value reaches more than 85% of the safety height, the drainage assembly 8 is activated. When the first ultrasonic sensor 701 and the second ultrasonic sensor 702 work simultaneously, they will respectively detect the water level heights on their respective sides. Under normal circumstances, the water level heights on both sides should be the same. However, due to special reasons such as water flow scouring, uneven terrain, or the inclination of the water horse 1, the water level heights on both sides may be inconsistent. In this case, if the water level heights detected by the two sensors do not exceed the set safety height but there is an obvious difference, the device will first calculate the average value of these two water level height values. This average value represents the comprehensive situation of the water levels on both sides of the water horse 1 and helps to more accurately evaluate the current water level condition. Next, the device will compare this average value with the set safety height. If the average value reaches or exceeds 85% of the safety height, it means that the water level is rising rapidly and may soon reach or exceed the safety height. Therefore, to prevent potential safety risks, the drainage assembly 8 will be activated in advance to drain the water in the water storage space 101 out of the water horse 1.

[0046] Optionally, a connecting portion 10 is provided on the water horse 1, and the connecting portion 10 is connected to the shore fixing structure by a rope. At a certain part of the water horse 1 (usually the top or side), a protruding connecting portion 10 is designed. This connecting portion 10 is designed to be able to withstand a certain tensile force so as to be connected to the shore fixing structure (such as a pillar, a tree, a rock, or other stable infrastructure) through a connecting member such as a rope. The rope is a soft and durable connecting material that can adapt to the floating and displacement of the water horse 1 at different water levels while maintaining a stable connection with the shore fixing structure. When the water level rises, the water horse 1 will rise with the buoyancy of the water flow; when the water level drops, the water horse 1 will drop with the action of gravity. During this process, the rope serves as a connecting link and always maintains the relative position relationship between the water horse 1 and the shore fixing structure.

[0047] In particular, the top bin 3 includes two upwardly disposed inclined surfaces, and an angle less than 90° is formed between the two inclined surfaces, and the solar panels 4 are mounted on both of the inclined surfaces. The cover is designed as two upwardly disposed inclined surfaces, and the angle between the two inclined surfaces is less than 90°, forming a structure similar to an inverted "V" shape. This design not only increases the surface area of the top bin 3, providing a larger installation space for the solar panels 4, but also the inclined angle helps the solar panels 4 receive sunlight more effectively. The solar panels 4 are mounted on the two inclined surfaces and convert sunlight into electrical energy through the photovoltaic effect. This electrical energy can be stored in the battery of the device and used to drive components that require power. Due to the design of the inclined surfaces, the solar panels 4 can receive more sunlight at different times, especially in the morning and evening when the sun is at a lower position, and the inclined surfaces can capture sunlight more effectively.

[0048] Moreover, the design of the inclined surfaces enables the solar panels 4 to receive sunlight within a larger angular range, thereby improving the utilization rate of solar energy, which means that the device can charge the battery for a longer period of time and extends the usage time of the device. The angle formed by the two inclined surfaces not only increases the surface area of the top bin 3 but also enhances its structural stability. This design enables the top bin 3 to better withstand external forces such as wind and water flow, improving the durability and reliability of the device. Mounting the solar panels 4 on the inclined surfaces makes full use of the space of the top bin 3 and avoids the need to install the solar panels 4 additionally in other parts of the device. This helps to maintain the compactness and aesthetics of the device. The design of the inclined surfaces makes the top bin 3 more eye-catching visually, especially in sunlight, and the reflective effect of the solar panels 4 can further enhance the warning effect. This is of great significance for improving the visibility and effectiveness of electrical safety warnings.

[0049] Meanwhile, the bottom edge of the inclined surface extends vertically downward to form a vertical plane, and a plurality of infrared sensors 11 are provided on the vertical plane. The infrared sensors 11 are electrically connected to the control module. The bottom edge of the inclined surface extends vertically downward, forming an additional vertical plane. This vertical plane not only increases the structural strength of the device but also provides an ideal position for the installation of the infrared sensors 11. The infrared sensors 11 are evenly distributed on the vertical plane and sense the approach or presence of an object by detecting the infrared radiation in the surrounding environment. The infrared sensors 11 are electrically connected to the control module, which means that they can transmit the detected information to the control module in real time. The control module is a central processing unit responsible for receiving, processing, and responding to signals from various sensors. When the infrared sensors 11 detect an object (such as a ship, a person, or other obstacles) approaching the device, it will send a signal to the control module. After receiving this signal, the control module will make a response according to the preset logic and rules, such as activating warning lights, emitting alarm sounds, or triggering other safety mechanisms.

[0050] In the description of this document, it should be understood that the orientation or positional relationships such as "upper", "lower", "left", "right", etc. are only for the convenience of description and simplifying the operation, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, it should not be construed as a limitation to this application. In addition, the terms "first" and "second" are only used for distinction in description and have no special meaning.

[0051] In the description of this specification, the description referring to terms such as "an embodiment", "example", etc. means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of this application. In this specification, the schematic expressions of the above terms do not necessarily refer to the same embodiment or example.

[0052] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

[0053] The technical principle of this application has been described above in combination with specific embodiments. These descriptions are only for explaining the principle of this application and cannot be construed as a limitation to the protection scope of this application in any way. Based on the explanations herein, those skilled in the art can think of other specific implementation manners of this application without creative efforts, and these manners will fall within the protection scope of this application.

Claims

1. An intelligent power warning device, characterized in that: include: A water barrier (1), a telescopic rod assembly (2), a top warehouse (3), a solar panel (4), a camera module (5), a control module, a warning sign body (6), a water level sensor (7) and a drainage assembly (8); the telescopic rod assembly (2) is installed above the water barrier (1), the top warehouse (3) is installed above the telescopic rod assembly (2), the warning sign body (6) is installed in the middle of the telescopic rod assembly (2), the solar panel (4) is installed on the top of the top warehouse (3), the camera module (5) is installed at the bottom of the top warehouse (3), the control module is installed inside the top warehouse (3), and the solar panel (4) is electrically connected to the control module and the camera module (5); The water barrier (1) is provided with a water storage space (101), the upper part of the water barrier (1) is provided with a first drainage port (102) which is in communication with the water storage space (101), the drainage component (8) is installed in the water storage space (101), and its drainage end is connected to the first drainage port (102), the water level sensor (7) is installed on the outside of the water barrier (1), and the drainage component (8) is electrically connected to the water level sensor (7).

2. The intelligent power warning device according to claim 1, characterized in that: The drainage component (8) comprises a drainage pump (801), a first pipe (802) and a second pipe (803); one end of the drainage pump (801) is connected to the first pipe (802), and the other end is connected to the second pipe (803); the first pipe (802) passes through the first drainage port (102), and the second pipe (803) extends to the bottom of the water storage space (101).

3. The intelligent power warning device according to claim 2, characterized in that: The bottom of the water storage space (101) is arranged to be inclined, and the second pipe (803) extends to a lower side of the water storage space (101).

4. The intelligent power warning device according to claim 3, characterized in that: A second drain port (103) connected to the lower side of the water storage space (101) is provided at the lower part of the water barrier (1), and a sealing plug (9) is provided on the second drain port (103).

5. The intelligent power warning device according to any one of claims 1 to 4, characterized in that: The water level sensor (7) comprises a first ultrasonic sensor (701) and a second ultrasonic sensor (702); the first ultrasonic sensor (701) is arranged on a side of the water barrier (1) and is located on the same side as the first drain outlet (102); and the second ultrasonic sensor (702) is arranged on the other side of the water barrier (1).

6. The intelligent power warning device according to claim 5, characterized in that: The drainage component (8) is configured such that: when the water level heights detected by the first ultrasonic sensor (701) and the second ultrasonic sensor (702) are inconsistent, the detection height of the first ultrasonic sensor (701) is used as a first judgment value; when the first judgment value exceeds a safe height, the drainage component (8) is activated to discharge the water in the water storage space (101) out of the water barrier (1); and when the drainage component (8) is activated, the telescopic rod component (2) drives the warning sign body (6) and the top bin (3) to retract in a direction relative to the water barrier (1).

7. The intelligent power warning device according to claim 6, characterized in that: When the water levels detected by the first ultrasonic sensor (701) and the second ultrasonic sensor (702) are inconsistent and neither exceeds the set safety height, the average value of the two water level values ​​is obtained, and when the average value reaches more than 85% of the safety height, the drainage component (8) is started.

8. The intelligent power warning device according to any one of claims 1 to 4, characterized in that: The water barrier (1) is provided with a connecting portion (10), and the connecting portion (10) is connected to a shore fixing structure via a rope.

9. The intelligent power warning device according to any one of claims 1 to 4, characterized in that: The top bin (3) comprises two upwardly disposed inclined surfaces, the two inclined surfaces form an angle less than 90°, and the solar panels (4) are mounted on both inclined surfaces.

10. The intelligent power warning device according to claim 9, characterized in that: The bottom edge of the inclined surface extends vertically downward to form a vertical plane, and a plurality of infrared sensors (11) are arranged on the vertical plane. The infrared sensors (11) are electrically connected to the control module.