High-performance remote sensing surveying and mapping positioning device

By designing a high-performance remote sensing mapping and positioning device, and using synchronous adjustment technology of transmission and telescopic parts, the problem that the support rods of the existing device cannot rotate simultaneously is solved, and higher positioning accuracy and adaptability are achieved.

CN222911286UActive Publication Date: 2025-05-27CANGZHOU LINGANG SANFENG SURVEYING & MAPPING CO LTD
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Patent Information

Application Number
CN202421312676.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-11
Publication Date
2025-05-27
Estimated Expiration
2034-06-11

AI Technical Summary

Technical Problem

The existing mapping instrument positioning device cannot rotate synchronously when the support rod is opened and closed, resulting in unstable support and the horizontal placement of the mapping instrument cannot be guaranteed.

Method used

A high-performance remote sensing mapping and positioning device is designed, using a mounting base and adjustment components. Through the angle synchronization adjustment of three sets of transmission parts, the accuracy of coordinated work between each component is ensured, and rapid and fine height adjustment is achieved through the cooperation of the threaded rod and the telescopic part.

Benefits of technology

The avoidance of positioning deviations that may be caused by traditional single-point adjustment is achieved, which significantly improves the accuracy and adaptability of remote sensing mapping and positioning, and enhances the operating efficiency and flexibility of the device in complex terrain or multi-task scenarios.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of surveying and mapping positioning, in particular to a high-performance remote sensing surveying and mapping positioning device which comprises a mounting base and an adjusting assembly, three groups of fixing pieces are arranged on the mounting base at equal intervals, leading-out ends are arranged on the fixing pieces, transmission pieces are arranged on the leading-out ends of the fixing pieces, threaded rods are coaxially arranged on the transmission pieces, and the threaded rods are connected with the adjusting assembly. A telescopic part is arranged on the threaded rod, the adjusting assembly is arranged on the mounting base and used for synchronously adjusting the angles of the three transmission parts, and the mounting assembly is arranged on the mounting base and used for positioning and mounting the surveying instrument. Operation is convenient, and adaptability is high.
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Description

Technical Field

[0001] The utility model relates to the technical field of surveying and mapping positioning, in particular to a high-performance remote sensing surveying and mapping positioning device. Background Technique

[0002] As an important means of modern geographical information acquisition, remote sensing surveying and mapping is widely used in fields such as resource investigation, environmental monitoring, urban planning, and disaster assessment. Its core lies in using sensors (such as optical cameras, radars, lidars, etc.) carried by various remote sensing platforms to conduct non-contact observations of the earth's surface from the air or space, and through data processing and analysis, achieve accurate identification and quantitative measurement of surface features. With the progress of technology, remote sensing technology is developing towards high resolution, high precision, multi-source fusion, and real-time dynamics.

[0003] Although the existing surveying instrument positioning devices can support and position the surveying instruments, there is a problem that when the existing surveying instrument positioning devices are supporting, when the three support rods are opened and closed, they cannot rotate synchronously, and thus the support of the three support rods for the surveying instrument cannot ensure stable horizontal placement. Content of the Utility Model

[0004] To solve the above technical problems, the utility model provides a high-performance remote sensing surveying and mapping positioning device with convenient operation and strong adaptability.

[0005] Preferably, it includes:

[0006] An installation base and an adjustment component. Three groups of fixing parts are equidistantly arranged on the installation base. A lead-out end is arranged on the fixing part. A transmission part is arranged on the lead-out end of the fixing part. A threaded rod is coaxially arranged on the transmission part. A telescopic part is arranged on the threaded rod. The adjustment component is arranged on the installation base and is used for synchronously adjusting the angles of the three groups of transmission parts.

[0007] An installation component is arranged on the installation base and is used for positioning and installing the surveying instrument.

[0008] Further, the adjustment component includes a positioning part arranged on the installation base. A moving part is arranged on the positioning part. Three groups of connecting parts are equiangularly arranged on the moving part. A conduction part is arranged at the installation hole of the connecting part. An extension end is arranged on the conduction part. The extension end of the conduction part is arranged inside the slot hole of the transmission part.

[0009] Preferably, the adjustment component includes an auxiliary part coaxially arranged on the moving part. Transmission ends are equiangularly arranged on the auxiliary part. Multiple long slot holes are arranged on the positioning part. The transmission ends of the auxiliary part are arranged inside the long slot holes. A threaded column is arranged at the shaft hole of the positioning part. One end of the threaded column is arranged in the positioning hole of the installation base. The threaded column is in threaded fit connection with multiple groups of transmission ends of the auxiliary part.

[0010] Further, the installation component includes a support member and a drive component disposed on the installation base. An installation member is coaxially disposed on the support member, and the drive component is used to drive the installation member to adjust the angle by the support member.

[0011] Preferably, the drive component includes a protection member coaxially disposed on the installation base. The installation member is cooperatively connected with the protection member. A drive member is disposed in the hole groove of the protection member. A worm is coaxially disposed on the drive member. A worm gear is coaxially disposed on the support member. The worm gear is in meshing transmission connection with the worm.

[0012] Further, a storage member is disposed on the telescopic member. A piston member is disposed inside the storage member. One end of the piston member passes through the notch of the storage member. A driven member is disposed on the piston member. The driven member is in meshing transmission connection with the threaded rod. A spring is disposed on the piston member. The other end of the spring is connected to the cavity wall of the storage member.

[0013] Preferably, an extension member is disposed on the piston member. The extension member passes through the inner groove of the storage member. A power member is disposed on the extension member.

[0014] Further, an adjusting member is coaxially disposed on the threaded post.

[0015] Preferably, the bottom end of the telescopic member is provided with a spherical structure.

[0016] Further, an internal hexagonal threaded hole is disposed on the drive member.

[0017] Compared with the prior art, the beneficial effects of the present utility model are as follows: The adjustment component equipped in the device can realize the synchronous angle adjustment of the three transmission members, ensuring the precision of the coordinated work among the components, avoiding the positioning deviation that may be caused by traditional single-point adjustment, significantly improving the accuracy of remote sensing mapping and positioning. The sliding fit between the threaded rod coaxially disposed on the transmission member and the telescopic member enables the device to have a fast and fine height adjustment function. The operator can quickly adjust the height and pitch angle of the mapping instrument according to the actual operation requirements, enhancing the adaptability and operation efficiency of the device in the face of complex terrains or multi-task scenarios. The three fixing members equidistantly disposed on the installation base, and the rotation connection between the lead-out end on the fixing member and the transmission member endow the device with high flexibility and versatility. Different specifications or types of mapping instruments can be conveniently and firmly installed through the installation component and adjusted in multiple directions by using the transmission member, reducing the equipment cost and broadening the application scope of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 is the front view structural schematic diagram of the present utility model;

[0019] Figure 2 is the axonometric structural schematic diagram of the present utility model;

[0020] Figure 3 is the partial structural schematic diagram of the present utility model;

[0021] Figure 4 is a schematic diagram of the part structure of the present utility model;

[0022] Reference numerals in the drawings: 1, mounting base; 2, fixing member; 3, transmission member; 4, threaded rod; 5, telescopic member; 6, positioning member; 7, moving member; 8, connecting member; 9, conducting member; 10, auxiliary member; 11, threaded column; 12, supporting member; 13, mounting member; 14, protecting member; 15, driving member; 16, worm; 17, worm wheel; 18, receiving member; 19, piston member; 20, driven member; 21, spring; 22, extending member; 23, power member; 24, adjusting member. Detailed implementation manners

[0023] The following combines the drawings and embodiments to further describe in detail the specific implementation manners of the present utility model. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.

[0024] As Figures 1 to 4 shown, a high-performance remote sensing mapping and positioning device of the present utility model includes:

[0025] A mounting base 1 and an adjusting assembly. Three groups of fixing members 2 are equidistantly arranged on the mounting base 1. An outlet end is provided on the fixing member 2. A transmission member 3 is rotatably arranged on the outlet end of the fixing member 2. A threaded rod 4 is coaxially arranged on the transmission member 3. A telescopic member 5 is slidably arranged on the external thread of the threaded rod 4. The adjusting assembly is arranged on the mounting base 1 and is used for synchronously adjusting the angles of the three groups of transmission members 3. The bottom end of the telescopic member 5 is set as a spherical structure;

[0026] The installation component is arranged on the installation base 1 and is used for positioning and installing the surveying instrument. The adjustment component equipped in the device can realize the angle synchronous adjustment of the three transmission parts 3, ensuring the precision of the collaborative work among various components, avoiding the positioning deviation that may be caused by traditional single-point adjustment, and significantly improving the accuracy of remote sensing surveying and positioning. The bottom end of the telescopic part 5 is designed with a spherical structure, which not only provides flexible three-dimensional space adjustment ability, but also can automatically adapt to the contact surface under different terrains or working conditions to ensure that the surveying instrument always maintains a stable posture. The threaded rod 4 coaxially arranged on the transmission part 3 and the sliding fit of the telescopic part 5 enable the device to have a fast and fine height adjustment function. Operators can quickly adjust the height and pitch angle of the surveying instrument according to actual operation requirements, enhancing the adaptability and operation efficiency of the device in the face of complex terrains or multi-task scenarios. The three fixing parts 2 equidistantly arranged on the installation base 1 and the rotational connection between the lead-out end of the fixing part 2 and the transmission part 3 endow the device with high flexibility and versatility. Surveying instruments of different specifications or types can be conveniently and firmly installed through the installation component and adjusted in multiple directions by using the transmission part 3, reducing the equipment cost and broadening the application scope of the device.

[0027] Such as Figures 1 to 4As shown, as an optimal solution, the adjustment assembly includes a positioning member 6 provided on the mounting base 1. A moving member 7 is slidably provided on the positioning member 6. Three groups of connecting members 8 are equiangularly provided on the moving member 7. A transmission member 9 is rotatably provided at the mounting hole of the connecting member 8. An extension end is provided on the transmission member 9. The extension end of the transmission member 9 is rotatably provided inside the slot hole of the transmission member 3. The adjustment assembly includes an auxiliary member 10 coaxially slidably provided on the moving member 7. Transmission ends are equiangularly provided on the auxiliary member 10. Multiple long slot holes are provided on the positioning member 6. The transmission ends of the auxiliary member 10 are provided inside the long slot holes. A threaded column 11 is provided at the shaft hole of the positioning member 6. One end of the threaded column 11 is provided in the positioning hole of the mounting base 1. The threaded column 11 is in threaded fit connection with multiple transmission ends of the auxiliary member 10. An adjusting member 24 is coaxially provided on the threaded column 11; through the precise cooperation of components such as the positioning member 6, the moving member 7, the connecting member 8, the transmission member 9, the auxiliary member 10, and the threaded column 11, the adjustment assembly realizes the synchronous and precise adjustment of the angles of the three groups of transmission members 3. This design effectively avoids the cumulative errors that may be caused by the traditional single-point adjustment method, ensures that the cooperative work among components reaches a higher precision. The three groups of connecting members 8 on the moving member 7 are equiangularly provided. Combining the rotational connection between the extension end of the transmission member 9 and the slot hole of the transmission member 3 enables the device to perform multi-directional and dead-angle-free angle adjustment. This characteristic greatly enhances the adaptability of the device in complex terrains and multi-task scenarios. The auxiliary member 10 forms an integrated adjustment mechanism through the cooperation of multiple transmission ends with the long slot holes of the positioning member 6 and the threaded connection with the threaded column 11. The operator only needs to rotate the threaded column 11 to synchronously drive the auxiliary member 10, the moving member 7, and each connecting member 8, thereby realizing the synchronous angular change of the transmission member 3. This integrated design simplifies the operation process. It is coaxially provided with the adjusting member 24. Here, it is assumed to be an associated component, reducing the rotation difficulty of the threaded column 11 and greatly improving the adjustment efficiency.

[0028] As Figures 1 to 4As shown, as a preferred solution, the mounting assembly includes a support member 12 and a driving assembly arranged on the mounting base 1, a mounting member 13 is coaxially arranged on the support member 12, and the driving assembly is used for the support member 12 to drive the mounting member 13 to adjust the angle, and the driving assembly includes a protective member 14 coaxially arranged on the mounting base 1, the mounting member 13 is matched and connected with the protective member 14, a driving member 15 is arranged in the hole groove of the protective member 14, a worm 16 is coaxially arranged on the driving member 15, a worm wheel 17 is coaxially arranged on the support member 12, the worm wheel 17 is meshingly connected with the worm 16, and a hexagonal threaded hole is arranged on the driving member 15; the mounting assembly realizes precise angle adjustment between the support member 12 and the mounting member 13 through the meshing transmission of the worm wheel 17 and the worm 16 in the driving assembly, the mounting member 13 is used for positioning and placing the surveying instrument, and the worm gear mechanism has It has a self-locking feature, which can ensure that the angle of the surveying instrument is kept stable in any working state, thereby significantly improving the accuracy of remote sensing mapping and positioning. The drive assembly is integrated into the mounting base 1, and the worm 16 contained in the drive member 15 is engaged with the worm wheel 17 on the support member 12 to form an integrated drive system. The operator only needs to apply torque to the drive member 15 through a hexagonal tool to easily complete the angle adjustment of the mounting member 13. This design greatly simplifies the operating process, reduces the complexity of on-site operations, and improves work efficiency. The protective member 14 in the drive assembly provides physical protection for the mounting member 13 and key transmission components such as the worm wheel 17 and the worm 16 to prevent external environmental factors from damaging the precision transmission mechanism, thereby extending the service life of the entire device and ensuring that it can still work stably and reliably in various harsh environments.

[0029] like Figures 1 to 4 As shown, as a preferred solution, a storage member 18 is provided on the telescopic member 5, a piston member 19 is provided inside the storage member 18, one end of the piston member 19 passes through the notch of the storage member 18, a follower 20 is provided on the piston member 19, the follower 20 is slidably arranged in the positioning groove of the telescopic member 5, the follower 20 is meshed and connected with the threaded rod 4, a spring 21 is provided on the piston member 19, the other end of the spring 21 is connected to the cavity wall of the storage member 18, an extension member 22 is provided on the piston member 19, the extension member 22 passes through the inner groove of the storage member 18, and the extension member 22 extends A power member 23 is provided on the member 22; the piston member 19 is positioned and slidably supported on the telescopic member 5 through the storage member 18, the spring 21 is connected to the follower 20 through the piston member 19, the follower 20 is stably matched with the threaded rod 4 through the spring 21, and the telescopic member 5 and the threaded rod 4 are matched so that the mounting base 1 can be leveled when the threaded rod 4 rotates, the power member 23 is installed on the piston member 19 through the extension member 22, and the follower 20 can be disconnected from the threaded rod 4 through the power member 23 for quick storage.

[0030] like Figures 1 to 4 As shown, as a preferred solution, its working process is as follows:

[0031] First, the operator firmly installs the surveying and mapping instrument of the required model on the support member 12 through the mounting member 13 in the mounting assembly. The operator rotates the threaded column 11 and drives the auxiliary member 10, the moving member 7, and each connecting member 8 through threaded cooperation. The three groups of connecting members 8 on the moving member 7 are arranged at equal angles, and the rotating connection between the extension end of the conduction member 9 and the slot hole of the transmission member 3 is realized, so as to achieve multi-directional and dead-angle-free angle adjustment of the transmission member 3, increase the support stability of the mounting base 1. The threaded rod 4 on the transmission member 3 is slidably matched with the telescopic member 5, so that the device has a fast and fine height adjustment function. When the mounting base 1 needs to be leveled, only the telescopic member 5 on this side needs to be rotated according to the situation to drive the driven member to rotate. However, when the surveying and mapping direction of the surveying and mapping instrument needs to be adjusted, the operator applies torque to the driving member 15 through an internal hexagonal tool, and the worm 16 in the driving member 15 meshes with the worm wheel 17 on the support member 12, thereby driving the mounting member 13 and the surveying and mapping instrument thereon to perform precise angle adjustment.

[0032] A high-performance remote sensing surveying and mapping positioning device of the present utility model, its installation method, connection method or setting method are all common mechanical methods, and any method that can achieve its beneficial effects can be implemented.

[0033] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the technical principle of the present utility model, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present utility model.

Claims

1. A high-performance remote sensing mapping and positioning device, characterized in that: include: The mounting base and the adjustment component are provided with three groups of fixing parts at equal distances on the mounting base, the fixing parts are provided with lead-out ends, the fixing parts are provided with transmission parts on the lead-out ends, the transmission parts are provided with threaded rods coaxially, the threaded rods are provided with telescopic parts, the adjustment component is provided on the mounting base, and the adjustment component is used for synchronously adjusting the angles of the three groups of transmission parts. An installation component, the installation component is arranged on the installation base, and the installation component is used to position and install the surveying instrument; The adjustment component includes a positioning member arranged on a mounting base, a moving member is arranged on the positioning member, three groups of connecting members are arranged at equal angles on the moving member, a conducting member is arranged at the mounting hole of the connecting member, an extending end is arranged on the conducting member, and the extending end of the conducting member is arranged inside the transmission member slot.

2. A high-performance remote sensing mapping and positioning device as claimed in claim 1, characterized in that: The adjustment component includes an auxiliary part coaxially arranged on the moving part, the auxiliary part is provided with a transmission end at an equal angle, the positioning part is provided with multiple groups of long slot holes, the auxiliary part transmission end is arranged inside the long slot hole, the positioning part is provided with a threaded column at the axial hole, one end of the threaded column is arranged in the positioning hole of the mounting base, and the threaded column is threadedly connected with the multiple groups of transmission ends of the auxiliary part.

3. A high-performance remote sensing mapping and positioning device as claimed in claim 1, characterized in that: The mounting assembly comprises a support member and a driving assembly which are arranged on a mounting base. A mounting member is coaxially arranged on the support member, and the driving assembly is used for the support member to drive the mounting member to adjust its angle.

4. A high-performance remote sensing mapping and positioning device as claimed in claim 3, characterized in that: The driving assembly includes a protective member coaxially arranged on the mounting base, the mounting member is cooperatively connected with the protective member, a driving member is arranged in a hole groove of the protective member, a worm is coaxially arranged on the driving member, a worm wheel is coaxially arranged on the supporting member, and the worm wheel is meshingly connected with the worm.

5. A high-performance remote sensing mapping and positioning device as claimed in claim 1, characterized in that: The telescopic member is provided with a storage member, a piston member is provided inside the storage member, one end of the piston member passes through a notch of the storage member, a follower member is provided on the piston member, the follower is meshed and transmission-connected with a threaded rod, a spring is provided on the piston member, and the other end of the spring is connected to the cavity wall of the storage member.

6. A high-performance remote sensing mapping and positioning device as claimed in claim 5, characterized in that: An extension piece is arranged on the piston piece, the extension piece passes through the inner groove of the receiving piece, and a power piece is arranged on the extension piece.

7. A high-performance remote sensing mapping and positioning device as claimed in claim 2, characterized in that: The threaded column is coaxially arranged on the adjusting member.

8. A high-performance remote sensing mapping and positioning device as claimed in claim 1, characterized in that: The bottom end of the telescopic member is arranged as a spherical structure.

9. A high-performance remote sensing mapping and positioning device as claimed in claim 4, characterized in that: The driving member is provided with a hexagonal threaded hole.