Movable video monitoring device
By designing a mobile video surveillance device, using wireless cameras and a combinable pole structure, the problem of high installation difficulty and cost of traditional video surveillance equipment at well sites has been solved, achieving flexible installation and cost reduction.
Patent Information
- Application Number
- CN202423070156.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-12-11
AI Technical Summary
Traditional video surveillance equipment presents challenges in installation at well sites due to its high construction difficulty and cost. Furthermore, the fixed installation location of traditional video surveillance equipment makes it difficult to adjust.
Design a portable video surveillance device comprising a housing, a wireless camera, and a combinable multi-segment pole structure. It uses a wireless camera and a solar power supply component. The housing has a built-in power supply component, and the poles can be assembled to the required positions as needed. The housing serves as a base for support.
It improves the flexibility of video surveillance device installation location, making it suitable for temporary monitoring and locations where the monitoring location changes dynamically, and reduces construction difficulty and cost.
Smart Images

Figure CN223843833U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of video surveillance technology, specifically relating to a portable video surveillance device. Background Technology
[0002] Traditional well monitoring methods have the following drawbacks: First, well monitors are mostly outsourced workers with insufficient knowledge and skills, and some lack a strong sense of responsibility, making it difficult to detect abnormal situations on site. Second, well monitoring sites have harsh conditions, and the use of coal for heating poses risks such as low temperatures and personnel poisoning. In winter, the ground is slippery, and weekly well patrols present traffic risks, making management difficult. Third, the cost is high, as outsourced well monitors require not only substantial labor costs but also the provision of coal. To address these issues, remote video monitoring is currently used. However, traditional video monitoring equipment installation requires the laying of fiber optic cables, and the installation location is fixed, making it impossible to flexibly adjust the location according to site relocation needs. Since drilling sites are often remote, using traditional video monitoring equipment at the well site presents significant construction difficulties and high costs.
[0003] Based on the above analysis, this application designs a portable video surveillance device. Utility Model Content
[0004] The purpose of this utility model is to provide a mobile video monitoring device to solve the problems of high construction difficulty and high cost when installing video monitoring equipment at the well site using traditional methods.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a portable video surveillance device, comprising a housing with an opening at the top, and a video surveillance component housed within the housing. The video surveillance component includes a power supply component, a wireless camera, and a pole segment. The power supply component provides the required voltage to the wireless camera. The pole segment comprises multiple segments that can be combined into a vertical pole. One end of the vertical pole can be fixed within the housing, and the other end is connected to the wireless camera and can extend to the top of the housing.
[0006] As a preferred embodiment of this application: the power supply component is a rechargeable battery or a solar power supply component. The solar power supply component includes a solar management module and a solar conversion unit. The solar management module is fixed to the inner wall of the box. The solar conversion unit includes a photovoltaic panel and a bracket. The bracket can be fixed to the upright through a connector, thereby fixing the photovoltaic panel to the upright.
[0007] As a preferred embodiment of this application: the bracket is a right-angled tripod, the surface corresponding to the long side of the right-angled tripod is a closed panel and its size corresponds to the size of the opening at the top of the box, the solar energy conversion unit is housed in the box, and the closed panel is located at the opening and closes the opening.
[0008] As a preferred embodiment of this application: a connector A is provided at the opposite end of the bracket and the upright. At the same time, a support rod is provided inside the box. One end of the support rod is hinged to the inner wall of the box, and the other end is provided with a connector B connected to the connector A. The connection between the connector A and the connector B can realize the support and fixation of the corresponding side of the bracket.
[0009] As a preferred embodiment of this application: the solar energy management module includes an energy storage module and an inverter, wherein the energy storage module is a rechargeable battery.
[0010] As a preferred embodiment of this application: each of the pole segments is provided with a butt joint at its end, and the pole segments are directly connected to each other through the butt joint; or, each pole segment further includes a combined sleeve, and the pole segments are connected to each other through the combined sleeve.
[0011] As a preferred embodiment of this application: one of the multiple rod segments is a base rod, one end of which is hinged to the bottom of the box body, and can swing or lock relative to the hinge point.
[0012] As a preferred embodiment of this application: the wireless camera is a PTZ camera, and the wireless camera has a built-in 4G wireless transmission module.
[0013] As a preferred embodiment of this application, the box body is provided with a handle or lifting device on the outside.
[0014] The beneficial effects of this utility model include:
[0015] This solution designs a portable video surveillance device, which includes a housing and video surveillance components housed within the housing. The video surveillance components include a power supply unit, a wireless camera, and pole segments. The power supply unit provides the necessary voltage to the wireless camera, and the pole segments consist of multiple sections that can be assembled into a support pole for the wireless camera. In other words, this solution uses a wireless camera and integrates the power supply unit within the housing. The support pole for the wireless camera is a modular, multi-segment structure. The housing can be moved to the desired location for pole assembly to complete the deployment and installation of the video surveillance equipment, with the housing serving as the base for the pole. Therefore, this solution presents a simple and easily movable video surveillance device, improving the flexibility of its installation location. It is suitable for temporary monitoring and locations with dynamically changing monitoring positions, overcoming the shortcomings of traditional methods for installing video surveillance equipment at well sites, which involve high construction difficulty and cost. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the main structure of the portable video surveillance device provided by this utility model.
[0017] Figure 2 This is a schematic diagram of the internal structure of the box provided by this utility model.
[0018] Figure 3 A schematic diagram showing the arrangement of the solar energy conversion unit provided by this utility model inside the housing.
[0019] Figure 4 This is a schematic diagram showing the assembled state of the video surveillance component provided by this utility model.
[0020] Figure 5 Provided for this utility model Figure 4 A side view structural diagram.
[0021] Attached reference numerals: 10 is the housing; 11 is the wireless camera; 12 is the pole segment; 13 is the combined sleeve; 14 is the solar management module; 15 is the photovoltaic panel; 16 is the bracket; 161 is the connector A; 17 is the support rod; 171 is the connector B; 19 is the power cord; 20 is the hoisting component; 21 is the hinge shaft; 22 is the clamp. Detailed Implementation
[0022] The present invention will be further described in detail below with reference to specific embodiments and accompanying drawings. It should be emphasized that the following description is merely exemplary and not intended to limit the scope and application of the present invention.
[0023] This embodiment provides a portable video surveillance device, such as... Figure 1-2 As shown, the device includes a housing 10 with an opening at the top, and a video surveillance component is housed within the housing 10. The video surveillance component includes a power supply unit, a wireless camera 11, and a pole segment 12 (preferably with a diameter of 110 mm). Figure 2 The diagram shows the internal structure of the housing 10 provided in this embodiment. The power supply component is used to provide the required voltage to the wireless camera 11. The pole segment 12 includes multiple segments, which can be combined into a pole. The lengths of the multiple pole segments 12 can be the same or different. In this embodiment, it is preferred to include three segments, and the three segments have the same length. It can be understood that in actual assembly, at least two segments can be selected for assembly according to the required pole height. After assembly, one end of the pole can be fixed inside the housing 10, and the other end is connected to the wireless camera 11 and can extend to the top of the housing 10. The housing 10 serves as a base to support the pole. It can be understood that, if necessary, counterweights can be added inside the housing 10.
[0024] In summary, this solution uses a wireless camera 11 and integrates the power supply components into the housing 10. The support pole for the wireless camera 11 is designed as a modular, multi-segment structure. As needed, the housing 10 can be moved to the required location for assembly of the support pole, the wireless camera 11, and the power supply components, thus completing the deployment and installation of the video surveillance device. It is evident that this solution provides a simple and easily movable video surveillance device, improving the flexibility of its installation location. It is suitable for temporary monitoring and locations with dynamically changing monitoring positions, overcoming the shortcomings of traditional methods for installing video surveillance equipment at well sites, which involve high construction difficulty and high costs.
[0025] The power supply component is either a rechargeable lithium battery or a lead-acid battery, or a solar power supply component. In this embodiment, a solar power supply component is preferred, which can reduce the frequency of power supply component replacement or charging and ensure the stability and reliability of the video surveillance device. The solar power supply component includes a solar management module 14 and a solar conversion unit. The solar management module 14 is fixed inside the housing 10. It is understood that the solar management module 14 should include an energy storage module and an inverter. The energy storage module is used to store the DC power generated by the solar conversion unit, and the inverter is mainly used to convert the DC power generated by the solar conversion unit into AC power for the load. The solar conversion unit includes a photovoltaic panel 15 and a bracket 16. The photovoltaic panel 15 is fixed on the bracket 16. The bracket 16 can be fixed to the pole through connectors, thereby fixing the photovoltaic panel 15 on the pole and adjusting it to a specified angle. It is understood that the material and power of the photovoltaic panel 15 should be designed according to the required power. In this embodiment, the photovoltaic panel 15 is preferably made of monocrystalline silicon with a rated power of 120W.
[0026] In this embodiment, the connector that connects the bracket 16 to the upright can be any one of the following: clamp 22, strap, or bolt. In this embodiment, clamp 22 is preferred, and the clamp 22 is disposed on the pole segment 12.
[0027] The energy storage module is a rechargeable battery. In this embodiment, a lithium-ion battery of model 18650 with a capacity of 12V60AH is preferably used.
[0028] The size of the solar power supply component should be smaller than the internal cavity size of the housing 10. The housing 10 can be placed randomly or in a designated position. In order to avoid damaging the photovoltaic panel 15, this embodiment uses a designated position with the photovoltaic panel 15 facing downward and the support 16 facing outward.
[0029] The bracket 16 is a right-angled tripod. Understandably, to reduce the weight of the solar energy conversion unit, the bracket 16 should have a frame structure. When the photovoltaic panel 15 is placed downwards and the bracket 16 outwards, to improve the aesthetics of the housing 10 and simplify its structure, the surface corresponding to the long side of the right-angled tripod is set as a closed panel, and its dimensions correspond to the opening size at the top of the housing 10. After the solar energy conversion unit is housed in the housing 10, this closed panel is located at the opening and closes it. Figure 3 As shown; of course, a corresponding cover can also be installed directly at the opening of the box 10 to seal it.
[0030] The size of the closed panel corresponding to the long side corresponds to the size of the opening at the top of the box 10. Specifically, the closed panel can be placed inside the box 10 and its size is just enough to block the opening (for easy removal, a handle (not shown in the figure) can be provided on the closed panel for easy access). Figure 3 As shown, or, the size of the closed panel is slightly larger than the opening size of the box 10 by 1-2 cm. After the photovoltaic panel 15 is located in the box 10, the closed panel can just cover the opening of the box 10 and be supported by the outer periphery of the opening. The above are two preferred methods of this embodiment. Other feasible and reasonable solutions are all within the protection scope of this embodiment.
[0031] A connector A161 is provided at the opposite end of the bracket 16 and the upright. At the same time, a support rod 17 is provided inside the box 10. One end of the support rod 17 is hinged to the inner wall of the box 10, and the other end is provided with a connector B171 that connects to the connector A161. The connection between the connector A161 and the connector B171 can realize the support and fixation of the corresponding side of the bracket 16. It is understood that the hinge that hinges one end of the support rod 17 to the inner wall of the box 10 should have a locking function. After the support rod 17 is rotated or swung to a specified angle, it can be locked to enhance the stability of the support rod 17.
[0032] Specifically, one end of the bracket 16 is fixed to the upright by the clamp 22, and the other end is supported by the support rod 17 with the cooperation of connector A161 and connector B171, which improves the stability of the solar conversion unit installation; wherein, connector A161 and connector B171 are preferably existing conventional bolt connection lugs.
[0033] Each pole segment 12 has a butt joint at its end, and the pole segments 12 are directly connected to each other through the butt joint. Alternatively, each pole segment 12 may also include a combined sleeve 13, and the pole segments 12 are connected to each other through the combined sleeve 13. In this embodiment, the latter is preferred, as it provides better stability.
[0034] The wireless camera 11 is a PTZ camera, and it has a built-in 4G wireless transmission module. Specifically, it transmits the acquired image information to a remote location via the wireless signal of a 4G data card. Using the wireless camera 11 simplifies the structure of the video surveillance device, eliminating the need to add an image processor inside the housing 10, thus meeting the requirements of the lightweight design of the housing 10. Furthermore, it eliminates the need to lay image data transmission lines, simplifying the wiring of the monitoring device. The above is a preferred wireless camera 11 in this embodiment. Other reasonable and feasible wireless cameras 11 are also within the protection scope of this embodiment.
[0035] Handles or lifting devices 20 (rings or hooks) are provided on the outside of the box 10 to facilitate handling. If necessary, wheels can also be provided at the bottom of the box 10.
[0036] like Figure 4-5 The diagram shown is a structural schematic of the assembled video surveillance component provided in this embodiment. The specific assembly sequence of the video surveillance device can be selected according to the actual situation. The following is a preferred assembly sequence in this embodiment:
[0037] The wireless camera 11 is fixed to one of the rod segments 12 via a connector. One of the remaining rod segments 12 is a base rod, one end of which is hinged to the bottom of the housing 10. The base rod can swing or lock relative to the hinge point. That is, in use, the base rod can rotate to a vertical position relative to the hinge point and lock to maintain a vertical position. When storing, it is first unlocked, and then rotated to a horizontal position relative to the hinge point. It can be understood that the locking function of the hinge point can be the locking function built into the hinge shaft, or an additional locking device can be used. In this embodiment, the locking function built into the hinge shaft is preferred. This hinge shaft is a conventional existing type. The self-locking hinge 21 or adjustable hinge 21; then, according to the required pole height, select the required number of pole segments 12 and connect them through the combination sleeve 13 for assembly. After assembly, the wireless camera 11 is located at the top of the pole and the bottom is fixed inside the box 10; finally, one end of the solar conversion unit is fixed to the pole through the clamp 22, and the other end is fixed and supported by the support rod 17 with the cooperation of connector A161 and connector B171; at this time, the hardware assembly is completed. Then, the power cord 19 on the wireless camera 11 and the solar conversion unit is connected to the solar management module 14 for startup and debugging.
[0038] When it is necessary to move or transport, the hardware devices can be disassembled and installed into the housing 10 in the reverse order of the above sequence.
[0039] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A portable video surveillance device, characterized in that: The device includes a housing (10) with an opening at the top and a video surveillance component housed within the housing (10). The video surveillance component includes a power supply component, a wireless camera (11), and a pole segment (12). The power supply component is used to provide the required voltage to the wireless camera (11). The pole segment (12) consists of multiple segments that can be combined into a pole. One end of the pole can be fixed inside the housing (10), and the other end is connected to the wireless camera (11) and can extend above the housing (10).
2. The portable video surveillance device according to claim 1, characterized in that: The power supply component is a rechargeable battery or a solar power supply component. The solar power supply component includes a solar management module (14) and a solar conversion unit. The solar management module (14) is fixed inside the housing (10). The solar conversion unit includes a photovoltaic panel (15) and a bracket (16). The bracket (16) can be fixed to the pole through a connector, thereby fixing the photovoltaic panel (15) to the pole.
3. The portable video surveillance device according to claim 2, characterized in that: The bracket (16) is a right-angled tripod. The surface corresponding to the long side of the right-angled tripod is a closed panel and its size corresponds to the opening size of the top of the box (10). The solar energy conversion unit is housed in the box (10), and the closed panel is located at the opening and closes the opening.
4. The portable video surveillance device according to claim 2, characterized in that: A connector A (161) is provided at the opposite end of the bracket (16) and the upright. At the same time, a support rod (17) is provided inside the box (10). One end of the support rod (17) is hinged to the inner wall of the box (10), and the other end is provided with a connector B (171) connected to the connector A (161). The corresponding side of the bracket (16) can be supported and fixed by the connection of the connector A (161) and the connector B (171).
5. The portable video surveillance device according to claim 2, characterized in that: The solar management module (14) includes an energy storage module and an inverter, wherein the energy storage module is a rechargeable battery.
6. The portable video surveillance device according to claim 1, characterized in that: Each of the rod segments (12) is provided with a connector at its end, and the rod segments (12) are directly connected to each other through the connector. Alternatively, each rod segment (12) may also include a combined sleeve (13), and the rod segments (12) are connected to each other through the combined sleeve (13).
7. The portable video surveillance device according to claim 1, characterized in that: One of the segments (12) is a base rod, one end of which is hinged to the bottom of the box (10) and can swing or lock relative to the hinge point.
8. The portable video surveillance device according to claim 1, characterized in that: The wireless camera (11) is a PTZ camera, and the wireless camera (11) has a built-in 4G wireless transmission module.
9. The portable video surveillance device according to claim 1, characterized in that: The box (10) is provided with a handle or lifting device (20) on the outside.