Visual portable monitoring radar
The integrated, visually portable monitoring radar solves the problems of insufficient portability and visualization, achieving a highly integrated and rapidly deployable monitoring device suitable for geological disaster monitoring.
Patent Information
- Application Number
- CN202423187940.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-23
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2034-12-23
AI Technical Summary
Existing ground-based synthetic aperture radars are insufficient in terms of portability and visualization, which limits their application in geological disaster monitoring.
A visual portable monitoring radar was designed. It adopts an integrated structure, which integrates a turntable, main unit and antenna, is equipped with optical sensors, supports folding and storage and tool-free operation, and has the ability to be deployed quickly.
It achieves highly integrated monitoring equipment that is easy to carry and deploy quickly, provides real-time visual monitoring, and is suitable for emergency rescue and geological disaster monitoring.
Smart Images

Figure CN223883751U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to radar equipment technical field especially relates to a visual portable monitoring radar. BACKGROUND
[0002] The ground foundation monitoring radar is the monitoring equipment applied to the fields such as emergency rescue guarantee, open pit mine slope deformation, urban subsidence and mountain landslide, with the development of geological disaster monitoring technology, the ground foundation synthetic aperture radar is also widely applied in the geological disaster monitoring process, but the existing ground foundation synthetic aperture radar generally guarantees the monitoring precision, the volume and weight design belong to the secondary consideration in the system design, leading to the portability of monitoring radar, deployment efficiency has some deficiencies, limiting its popularization and application.
[0003] The resolution of monitoring radar system is proportional to the antenna aperture, improve the radar resolution, need to make long antenna aperture, the volume of monitoring radar will also be big, due to the volume limitation, the resolution of monitoring area is not high, and the visual effect of the existing monitoring radar is not ideal for optical sensor, the information contained in the monitoring image is also less than the information contained in the image monitored by the optical sensor. Therefore, the visual effect of the monitoring radar on the monitoring area is not as good as the visual effect of the traditional optical sensor. UTILITARIAN CONTENT
[0004] The utility model solves the technical problem, provide a simple structure, integrated structure design, support visual monitoring area, high integration, support folding storage, convenient to carry, support tool-free operation to realize quick deployment, simple and efficient visual portable monitoring radar of operation.
[0005] The utility model is realized in this way: a visual portable monitoring radar, including
[0006] A turntable is circumferentially provided with a scale along the upper end edge, and a horizontal drive device is arranged in the inside thereof;
[0007] A host computer is arranged on the turntable and is driven to make horizontal rotary motion by the horizontal drive device, a display screen and a level are arranged on the top front end of the host computer, a cover ring is arranged on the bottom thereof, a side wall of the cover ring is provided with an observation window, the cover ring is sleeved on the upper end of the turntable, and the observation window corresponds to the position of the scale;
[0008] An antenna is connected with the host computer through a folding arm, and the antenna comprises a shell, a transceiver antenna and an optical sensor arranged in the inside of the shell, a window is arranged on the front end of the shell, a camera of the optical sensor is correspondingly arranged on the window, and one end of the antenna connected with the folding arm is movably connected through a pitching drive device.
[0009] Further, the host is provided with handles on both sides, and is provided with heat dissipation openings at the bottom, the handles facilitate carrying the monitoring radar, and the heat dissipation openings are used for heat dissipation of internal elements of the host.
[0010] Further, the folding arm comprises a fixed arm and a movable arm, and the fixed arm and the movable arm are movably hinged at the upper end faces.
[0011] Further, the host is provided with a lock tongue at the top, and the folding arm is provided with a lock buckle at one end close to the antenna, the lock tongue and the lock buckle are clamped with each other, and the folding arm is locked and fixed after being folded through the clamping of the lock tongue and the lock buckle.
[0012] Further, the host is provided with an expansion interface at the top, the expansion interface can support rapid docking and expansion devices according to requirements, the expansion interface is internally provided with a communication interface, and one side of the expansion interface is hingedly provided with a flip cover, and the corresponding cover is arranged on the expansion interface.
[0013] Further, the bottom of the rotary table is provided with a cold shoe structure, so as to facilitate rapid disassembly and assembly of the monitoring radar and the tripod.
[0014] Further, the horizontal rotation driving device and the pitching driving device are both motors.
[0015] Further, the window is provided with a sealing cover.
[0016] The utility model discloses the rotary table, host and antenna integrated design, its system height integration, through increasing optical sensor in the antenna, makes real -time observation monitoring area, effectively supplements radar monitoring time, through folding arm, the monitoring radar can be conveniently folded and stored, through the cold shoe structure, the monitoring radar and the tripod can be conveniently installed without tools, are suitable for rapid deployment, and the monitoring of sudden disaster is responded, and the position of disaster hidden danger is rapidly judged. BRIEF DESCRIPTION OF DRAWINGS
[0017] The utility model will be further described in connection with the embodiments with reference to the drawings.
[0018] Figure 1 For the structure diagram of the utility model discloses a visual portable monitoring radar Figure One .
[0019] Figure 2 For the structure diagram of the utility model discloses a visual portable monitoring radar Figure Two .
[0020] Figure 3 It is the internal structure schematic view of the antenna.
[0021] Figure 4 It is the monitoring radar and extension device connection structure schematic view of the utility model.
[0022] The number of the drawing is explained: monitoring radar 100, extension device 200, rotating platform 1, scale 11, cold shoe structure 12, main machine 2, display screen 21, level 22, cover ring 23, observation window 231, handle 24, heat dissipation port 25, extension interface 26, communication interface 261, flip 27, lock bolt 28, antenna 3, shell 31, window 311, transceiving antenna 32, optical sensor 33, sealing cover 34, folding arm 4, fixed arm 41, movable arm 42, lock catch 43, pitch driving device 5. DETAILED DESCRIPTION
[0023] The technical scheme in the embodiments of the utility model will be described clearly and completely below with reference to the drawings in the embodiments of the utility model. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor belong to the range protected by the utility model.
[0024] As shown in Figures 1 to 4 The utility model is a visual portable monitoring radar 100, including a rotating platform 1, a main machine 2 and an antenna 3, the rotating platform 1 is used to control the horizontal rotary motion of main machine 2, the antenna 3 is used to transceive signal, and the main machine 2 is used to generate signal and handle the signal received.
[0025] The rotating platform 1 is provided with scale 11 along the upper end edge ring, and a horizontal driving device (not shown) is arranged in the rotating platform 1, and the bottom of the rotating platform 1 is provided with cold shoe structure 12, which facilitates the quick disassembly and assembly of the monitoring radar 100 and the tripod.
[0026] The host 2 is arranged on the rotating table 1 and is horizontally rotated on the rotating table 1 by the horizontal driving device, the top front end of the host 2 is provided with a display screen 21 and a level 22, the display screen 21 is used for displaying system data of the monitoring radar 100, such as temperature, horizontal rotation angle (heading angle), system status code, pitch angle, etc., the level 22 is used for monitoring the leveling of the monitoring radar 100, the bottom of the host is provided with a cover ring 23, and the side wall of the cover ring 23 is provided with an observation window 231, the cover ring 23 is arranged on the upper end of the rotating table 1, the observation window 231 corresponds to the position of the scale 11 and is used for directly displaying how many degrees the monitoring radar is rotated, the greater the angle, the larger the monitoring range of the radar, the longer the single monitoring operation time of the radar, and the larger the monitoring data amount, handles 24 are arranged on both sides of the host 2, and a heat dissipation opening 25 is arranged at the bottom, the handles 24 facilitate carrying the monitoring radar 100, the heat dissipation opening 25 is used for heat dissipation of internal elements of the host 2, increasing the service life of the elements, an expansion interface 26 is arranged at the top of the host 2, a communication interface 261 is arranged in the expansion interface 261, the expansion interface 261 can be used to support rapid docking and expansion of the expansion device 200 according to requirements, a flip cover 27 is hingedly arranged on one side of the expansion interface 261 and is arranged on the expansion interface 26 for protecting the communication interface 261.
[0027] The antenna 3 is connected with the host 2 through a folding arm 4, which comprises a shell 31 and a transceiver antenna 32 and an optical sensor 33 arranged in the shell 31, a window 311 is arranged at the front end of the shell 31, a camera of the optical sensor 33 is correspondingly arranged on the window 311, a sealing cover 34 is arranged on the window 311, and the sealing cover 34 is used for protecting the camera of the optical sensor 33. The folding arm 4 comprises a fixed arm 41 and a movable arm 42, the upper end surfaces of the fixed arm 41 and the movable arm 42 are movably hinged, a lock tongue 28 is arranged at the top of the host 2, a lock catch 43 is arranged at one end of the folding arm 4 close to the antenna 3, the lock tongue 28 and the lock catch 43 are clamped with each other, the folding arm 4 is folded and locked and fixed through the clamping of the lock tongue 28 and the lock catch 43, so as to reduce the volume and facilitate storage. One end of the antenna 3 connected with the folding arm 4 is movably connected through a pitch driving device 5, the pitch driving device 5 is used for driving the pitch movement of the antenna 3, the horizontal rotation driving device and the pitch driving device 5 can make the monitoring radar 100 realize omnidirectional monitoring, and the horizontal rotation driving device and the pitch driving device are both motors.
[0028] The utility model relates to a visual portable monitoring radar can be applied to the monitoring of emergency rescue guarantee, open -pit mine slope deformation, urban subsidence, mountain landslide etc. field, to the application scene of horizontal direction range and vertical direction range are bigger, have good application advantage, consider the whole machine weight and volume optimization simultaneously. Through the integration design of rotating platform 1, main machine 2 and antenna 3, its system height integration, through increasing optical sensor 33 in antenna 3 inside makes its real -time observation monitoring area, effectively supplementing radar monitoring time, through folding arm 4, monitoring radar 100 can be folded and stored conveniently, through setting cold shoe structure 12, monitoring radar 100 and tripod tool -free installation, are suitable for rapid deployment, the monitoring of coping with sudden disaster, fast judgement disaster hidden danger position. The utility model provides a visual portable monitoring radar with simple structure, integrated structure design, supports visual monitoring area, high integration, supports folding and storage, is convenient for carrying, supports tool -free operation and realizes rapid deployment, and simple and efficient operation.
[0029] Although the above describes the specific embodiments of the utility model, the skilled in the art should understand that the specific examples that we described are only illustrative, and are not used to limit the scope of the utility model, the equivalent modification and change made according to the spirit of the utility model by the skilled in the art should be covered in the scope of protection of the claims of the utility model.
Claims
1. A visual portable monitoring radar characterized by: The utility model relates to a kind of antenna display device, including A rotating table is provided with a scale along the upper end edge, and a horizontal drive device is arranged inside the rotating table; A main machine is arranged on the rotating table and driven to rotate horizontally by the horizontal drive device, and a display screen and a level are arranged at the top front end of the main machine, a cover ring is arranged at the bottom of the main machine, and an observation window is arranged on the side wall of the cover ring, the cover ring is sleeved on the upper end of the rotating table, and the observation window corresponds to the position of the scale; An antenna is connected to the main machine by a folding arm, and the antenna includes a shell, a transceiver antenna and an optical sensor arranged inside the shell, a window is arranged at the front end of the shell, the camera of the optical sensor is arranged on the window, and the end of the antenna connected to the folding arm is movably connected by a pitch drive device.
2. A visual portable monitoring radar according to claim 1, characterized in that: Handles are arranged on both sides of the main machine, and heat dissipation openings are arranged at the bottom of the main machine.
3. The visual portable monitoring radar according to claim 1, wherein: The folding arm includes a fixed arm and a movable arm, and the upper end surfaces of the fixed arm and the movable arm are movably connected.
4. A visual portable monitoring radar according to claim 3, characterized in that: A lock tongue is arranged at the top of the main machine, a lock catch is arranged at the end of the folding arm close to the antenna, and the lock tongue and the lock catch are clamped with each other.
5. The visual portable monitoring radar according to claim 1, wherein: An expansion interface is arranged at the top of the main machine, a communication interface is arranged inside the expansion interface, a flip cover is movably connected to one side of the expansion interface, and the flip cover is arranged on the expansion interface.
6. The visual portable monitoring radar according to claim 1, wherein: A cold shoe structure is arranged at the bottom of the rotating table.
7. The visual portable monitoring radar according to claim 1, wherein: The horizontal drive device and the pitch drive device are both motors.
8. The visual portable monitoring radar according to claim 1, wherein: A sealing cover is arranged on the window.