Remote sensing surveying and mapping identification device
The rotation and pitch adjustment of the sensor are achieved by driving the turntable with an electric motor and the worm gear mechanism. Combined with ground anchor fixation, this solves the problems of sensor fixation and data acquisition comprehensiveness in traditional remote sensing mapping and marking devices, and improves data quality and stability.
Patent Information
- Application Number
- CN202422747467.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-11-12
AI Technical Summary
In traditional remote sensing mapping and marking devices, the sensors cannot rotate or tilt, resulting in incomplete data collection.
The rotation and pitch adjustment of the sensor are achieved by using an electric motor to drive the turntable and a worm gear mechanism, and the sensor is stabilized on uneven terrain by ground anchor fixing device.
It improves the comprehensiveness and stability of data acquisition, ensuring the acquisition of high-quality remote sensing data under different geographical environments and terrain conditions.
Smart Images

Figure CN223579526U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to remote sensing surveying and mapping identification device technical field especially relates to a remote sensing surveying and mapping identification device. BACKGROUND
[0002] Remote sensing surveying and mapping identification mainly refers to the tool and technology for identifying and managing remote sensing data, surveying and mapping objects and specific areas or elements in geographic information system (GIS), the effective use of remote sensing surveying and mapping identification can significantly improve the management and application efficiency of geographic information, support various decisions and planning, and this technology is usually embodied by devices and put into use.
[0003] In the conventional remote sensing surveying and mapping identification device, the support frame ensures the stability and wind resistance of the equipment, the sensor support is used to reduce the influence of vibration on data acquisition, the optical sensor is used to acquire visible light and near-infrared images, and the fixed connection parts such as screws and clamps ensure the stable connection of various components and reduce the risk of failure.
[0004] However, the sensor in the conventional remote sensing surveying and mapping identification device is usually directly fixed and connected inside the device, and this single fixing mode causes the sensor to be unable to rotate or pitch, thereby reducing the comprehensiveness of data acquisition. UTILITY MODEL CONTENTS
[0005] In order to make up for the above shortcomings, the utility model provides a remote sensing surveying and mapping identification device, which aims to improve the problem that the sensor in the conventional remote sensing surveying and mapping identification device cannot rotate or pitch, thereby reducing the comprehensiveness of data acquisition.
[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme: a remote sensing surveying and mapping identification device, comprising a fixed plate, a plurality of connection tables are fixedly connected at the bottom of the fixed plate, an electric motor one is fixedly connected to the lower surface of the fixed plate, an output end of the electric motor one is fixedly connected with a turntable, the turntable is rotatably connected to the outer wall of the electric motor one, an electric motor two is fixedly connected to the lower surface of the fixed plate, a worm is fixedly connected to the output end of the electric motor two, the worm is rotatably connected between the connection tables, a worm gear is rotatably connected in the turntable, the worm gear is engaged with the worm, a transmission shaft is fixedly connected in the worm gear, the transmission shaft is rotatably connected in the turntable, a plurality of connecting plates are fixedly connected to the bottom of the transmission shaft, an optical sensor is fixedly connected to the lower surface of the connecting plate, support assemblies are arranged on both sides of the fixed plate, and the support assemblies are used to support the device.
[0007] Further, the support assembly comprises a fixed frame, and a plurality of fixed frames are symmetrically arranged on both sides of the fixed plate.
[0008] Furthermore, a support platform is fixedly connected between the fixed frames, and a second support platform is provided between the fixed frames.
[0009] Furthermore, a connecting block is fixedly connected to one side wall of the support platform, and a handle is rotatably connected to the outer wall of the connecting block.
[0010] Furthermore, a connecting frame one is rotatably connected to the outer wall of the handle, and a connecting frame two is rotatably connected inside the connecting frame one.
[0011] Furthermore, a sliding column is slidably connected inside the support platform two, and a connecting block two is fixedly connected to the side wall of the support platform two.
[0012] Furthermore, the second connecting frame is rotatably connected to the outer wall of the second connecting block, and an arc-shaped plate is rotatably connected to the side wall of the sliding column.
[0013] Furthermore, the other side of the arc-shaped plate is rotatably connected between the two connecting frames, and a ground anchor is fixedly connected to the bottom end of the sliding column.
[0014] This utility model has the following beneficial effects:
[0015] 1. In this utility model, the turntable is first driven to rotate on the side wall of the connecting platform by a pair of turntable outputs of electric motor. Finally, the transmission shaft is connected to the connecting plate, thereby driving the connecting plate and the optical sensor at the bottom of the connecting plate to pitch. This structure realizes the adjustment of various angles of the optical sensor, obtains the best viewing angle in different geographical environments, improves the comprehensiveness of data acquisition, ensures the acquisition of high-quality remote sensing data, and further improves the reliability of surveying and analysis.
[0016] 2. In this utility model, after the pull handle is subjected to force, it first rotates on one side wall of the connecting block and changes its angle. Finally, the angle of the connecting frame two will change and pull down the sliding column. After the sliding column is subjected to force, it slides inside the support platform two and pushes the ground anchor below to insert into the soil, thereby achieving effective fixation of the fixing frame and the entire device. This ensures the stability and wind resistance of the equipment under various environmental conditions, adapts to different terrains, reduces the risk of structural instability that may be caused by changes in landform, and provides a more reliable foundation for data collection and surveying activities. Attached Figure Description
[0017] Figure 1 This is a perspective view of a remote sensing mapping and marking device proposed in this utility model;
[0018] Figure 2 This is a schematic diagram of the fixing plate structure of a remote sensing mapping and marking device proposed in this utility model;
[0019] Figure 3 This is a schematic diagram of the support structure of a remote sensing mapping and marking device proposed in this utility model.
[0020] Legend:
[0021] 1, fixed plate; 2, connecting table; 3, electric motor one; 4, turntable; 5, electric motor two; 6, worm; 7, worm gear; 8, transmission shaft; 9, connecting plate; 10, optical sensor; 11, fixed frame; 12, table one; 13, connecting block one; 14, pull handle; 15, connecting frame one; 16, table two; 17, slide column; 18, arc plate; 19, connecting block two; 20, connecting frame two; 21, ground anchor. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only 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 labor fall within the scope of protection of the present application.
[0023] Reference Figure 1 - Figure 2 An embodiment provided by the present application: a remote sensing surveying and mapping marking device, comprising a fixed plate 1, a plurality of connecting tables 2 are fixedly connected to the bottom of the fixed plate 1, the connecting tables 2 ensure that the rotating parts of the connecting surfaces can rotate stably, an electric motor one 3 is fixedly connected to the lower surface of the fixed plate 1, a turntable 4 is fixedly connected to the output end of the electric motor one 3, the turntable 4 transmits the power of the electric motor one 3 to a connecting plate 9, the turntable 4 is rotatably connected to the outer wall of the electric motor one 3, an electric motor two 5 is fixedly connected to the lower surface of the fixed plate 1, a worm 6 is fixedly connected to the output end of the electric motor two 5, the worm 6 is rotatably connected between the connecting tables 2, a worm gear 7 is rotatably connected in the turntable 4, the worm gear 7 is engaged with the worm 6, a transmission shaft 8 is fixedly connected in the worm gear 7, the rotation of the worm gear 7 is transmitted to the connecting plate 9 through the transmission shaft 8, the transmission shaft 8 is rotatably connected in the turntable 4, a plurality of connecting plates 9 are fixedly connected to the bottom of the transmission shaft 8, the movement of the connecting plates 9 directly affects an optical sensor 10, the optical sensor 10 is fixedly arranged on the lower surface of the connecting plate 9, the optical sensor 10 is used for acquiring visible light and near-infrared images and acquiring high-precision terrain data, support assemblies are arranged on the two sides of the fixed plate 1, and the support assemblies are used for supporting the device.
[0024] Specifically, first, the angle of the optical sensor 10 needs to be changed to adapt to different geographical environments, in the process, the electric motor one 3 is started, and the electric motor one 3 transmits the rotating force to the rotating table 4 through the driving, the rotating table 4 is connected with the side wall of the connecting table 2, and the rotating table 4 is allowed to rotate on the connecting surface of the connecting table 2, and the rotating process of the rotating table 4 will directly change the angle of the rotating table 4, and the change will affect the rotating angle of the optical sensor 10 through the bottom connecting plate 9, so that the optical sensor 10 can adjust the observation angle in different directions, thereby adapting to the change of the geographical environment, in addition, if the electric motor two 5 is started, the output of the electric motor two 5 will act on the worm 6, so as to drive the worm 6 to rotate between the connecting table 2, the worm 6 is designed to be in meshing relationship with the worm gear 7, so that the rotation of the worm 6 can effectively drive the worm gear 7 to rotate in the rotating table 4, the rotation of the worm gear 7 not only drives the transmission shaft 8 in the worm gear 7 to rotate, but also drives the transmission shaft 8 to rotate, and the transmission shaft 8 is connected with the bottom connecting plate 9, so as to realize the pitching action of the whole connecting plate 9, realize the angle adjustment of the optical sensor 10 in multiple dimensions, and make the optical sensor 10 can be adjusted to the best viewing angle under different geographical environment conditions, thereby improving the comprehensiveness and accuracy of data acquisition, the sensor can not only record static data, but also adapt to dynamic changing environment conditions, ensure that high-quality remote sensing data is obtained, and further improve the reliability of surveying and mapping and analysis.
[0025] Referring to Figure 3 The support assembly comprises a fixed frame 11 made of stainless steel, supporting the whole device, a plurality of fixed frames 11 are symmetrically arranged on both sides of the fixed plate 1, a supporting table one 12 is fixedly connected between the fixed frames 11, a supporting table two 16 is arranged between the fixed frames 11, the supporting table one 12 and the supporting table two 16 further provide horizontal support, a connecting block one 13 is fixedly connected to the side wall of the supporting table one 12, a pull handle 14 is rotatably connected to the outer wall of the connecting block one 13, the pull handle 14 is a manually operated component to control the ground anchor 21, a connecting frame one 15 is rotatably connected to the outer wall of the pull handle 14, a connecting frame two 20 is rotatably connected in the connecting frame one 15, the connecting frame one 15 and the connecting frame two 20 transmit force to the arc-shaped plate 18, a slide column 17 is slidably connected in the supporting table two 16, a connecting block two 19 is fixedly connected to the side wall of the supporting table two 16, the connecting frame two 20 is rotatably connected to the outer wall of the connecting block two 19, the side wall of the slide column 17 is rotatably connected with the arc-shaped plate 18, the movement of the arc-shaped plate 18 will pull up the slide column 17 to achieve the effect of controlling the ground anchor 21, the other side of the arc-shaped plate 18 is rotatably connected between the connecting frame two 20, and the bottom end of the slide column 17 is fixedly connected with the ground anchor 21.
[0026] Specifically, in some uneven terrain, if the device needs to be fixed, it can be achieved by pulling the handle 14. After the handle 14 is subjected to force, it will first rotate on the side wall of the connecting block 13 and change its angle. At the same time, the downward action of the handle 14 will also drive the connecting frame 15 on its outer wall to rotate, thereby changing the inclination angle of the connecting frame 15. Since the connecting frame 15 is connected to the connecting frame 20, when the connecting frame 15 rotates, the connecting frame 20 will also be synchronously driven to rotate along the side wall of the connecting block 19, causing the angle of the connecting frame 20 to change. In this process, due to the connecting relationship between the arc-shaped plate 18 and the connecting frame 20, the angle change of the connecting frame 20 will further affect the downward sliding column 17. After the sliding column 17 is subjected to force, it will slide inside the support platform 16 and push the lower ground anchor 21 downward, so that the ground anchor 21 can be smoothly inserted into the soil, effectively achieving the stable fixation of the fixing frame 11 and the entire device. The device can obtain reliable support on uneven terrain, ensuring the stability and wind resistance of the equipment under various environmental conditions, adapting to different terrains, reducing the risk of structural instability due to changes in topography, and providing a more reliable basis for data collection and surveying activities.
[0027] Working principle: first need to change the angle of optical sensor 10 should be to deal with different geographical environment, start the electric motor 3, electric motor 3 to the output of the turntable 4 drive turntable 4 in the connecting table 2 side wall rotation, the rotation of the turntable 4 will change its angle, in turn through the bottom connecting plate 9 and optical sensor 10 connection changes the rotation angle of optical sensor 10, if start electric motor 5, electric motor 5 to the output of the worm 6 drive worm 6 in the connecting table 2 between rotation, worm 6 in the rotation process through the meshing relationship with the worm 7 drive worm 7 in the turntable 4 inside rotation, worm 7 rotation at the same time its inside transmission shaft 8 will also follow the rotation, transmission shaft 8 and connecting plate 9 connected in turn drive connecting plate 9 and the bottom of the connecting plate 9 optical sensor 10 pitch, thus the structure realizes the each angle adjustment of optical sensor 10, in different geographical environment to obtain the best view angle, improve the comprehensiveness of data acquisition, in some uneven terrain topography, if need to fix the device, pull the pull handle 14, pull handle 14 after stress first in the connecting block 13 side wall rotation and change angle, pull handle 14 pull will drive its outer wall connecting frame 15 also rotate and change the inclination angle, connecting frame 15 and connecting frame 20 rotation connected, so connecting frame 20 will be driven in the connecting block 2 19 side wall rotation, at this time the angle of connecting frame 20 is changed, because the arc plate 18 side in connecting frame 20 between rotation, so the angle of connecting frame 20 will change pull down the slide column 17, slide column 17 after stress in the support table 2 16 inside sliding and push the below the ground anchor 21 inserted into the soil, realize the effective fixation of the fixed frame 11 and the whole device, ensure the stability and wind resistance of the equipment, adapt to different terrain.
[0028] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the foregoing detailed description of the present application, for the person skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement, within the spirit and principles of the present application, any modification, equivalent replacement, improvement, etc., should be included in the scope of protection of the present application.
Claims
1. A remote sensing mapping identification device comprising a fixing plate (1), characterized in that: The bottom of the fixed plate (1) is fixedly connected with a plurality of connecting tables (2), the lower surface of the fixed plate (1) is fixedly connected with an electric motor one (3), the output end of the electric motor one (3) is fixedly connected with a rotating table (4), the rotating table (4) is rotatably connected to the outer wall of the electric motor one (3), the lower surface of the fixed plate (1) is fixedly connected with an electric motor two (5), the output end of the electric motor two (5) is fixedly connected with a worm (6), the worm (6) is rotatably connected between the connecting tables (2), the rotating table (4) is rotatably connected with a worm gear (7), the worm gear (7) is engaged with the worm (6), the worm gear (7) is fixedly connected with a transmission shaft (8) inside, the transmission shaft (8) is rotatably connected inside the rotating table (4), the bottom of the transmission shaft (8) is fixedly connected with a plurality of connecting plates (9), the lower surface of the connecting plate (9) is fixedly provided with an optical sensor (10), both sides of the fixed plate (1) are provided with a supporting assembly, and the supporting assembly is used to support the device.
2. The device of claim 1, wherein: The supporting assembly comprises a fixed frame (11), and a plurality of fixed frames (11) are symmetrically arranged on both sides of the fixed plate (1).
3. The device of claim 2, wherein: The fixed frames (11) are fixedly connected with a supporting table one (12) between them, and a supporting table two (16) is arranged between the fixed frames (11).
4. The device of claim 3, wherein: The side wall of the supporting table one (12) is fixedly connected with a connecting block one (13), and the outer wall of the connecting block one (13) is rotatably connected with a pull handle (14).
5. A remote sensing mapping marker device according to claim 4, wherein: The outer wall of the pull handle (14) is rotatably connected with a connecting frame one (15), and the connecting frame one (15) is rotatably connected with a connecting frame two (20) inside.
6. A remote sensing mapping marker device according to claim 5, wherein: The supporting table two (16) is slidably connected with a slide column (17) inside, and the side wall of the supporting table two (16) is fixedly connected with a connecting block two (19).
7. A remote sensing mapping marker device according to claim 6, wherein: The connecting frame two (20) is rotatably connected to the outer wall of the connecting block two (19), and the side wall of the slide column (17) is rotatably connected with an arc-shaped plate (18).
8. The device of claim 7, wherein: The other side of the arc-shaped plate (18) is rotatably connected between the connecting frame two (20), and the bottom end of the slide column (17) is fixedly connected with a ground anchor (21).