GIS-based remote sensing detection device

By adopting a threaded column design for the mounting base and support base in the remote sensing detection device, the problems of unfixed protective shell and non-adjustable height are solved, achieving stable fixation and convenient connection of the device, and improving the safety and ease of installation.

CN224107948UActive Publication Date: 2026-04-10INST OF GEOGRAPHICAL SCI & NATURAL RESOURCE RES CAS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
INST OF GEOGRAPHICAL SCI & NATURAL RESOURCE RES CAS
Filing Date
2025-06-06
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

The protective casing of the existing remote sensing detection device is not fixed to the ground, posing a risk of tipping over, and its height cannot be adjusted, making it inconvenient to connect the module cables.

Method used

The design incorporates a mounting base and a support base. By utilizing the threaded column and the threaded hole of the support base, the vertical sliding and height adjustment of the mounting base can be achieved. Combined with a movable plate and a rotating base, stability and convenience are improved.

Benefits of technology

It achieves stable fixation and height adjustment of the remote sensing detection device, simplifies the connection between the module and external cables, and improves installation convenience and safety.

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Abstract

The utility model discloses a remote sensing detection device based on a GIS, which comprises a mounting seat and a supporting seat, the mounting seat is provided with a GIS module and a remote sensing detection data processing module, the supporting seat is provided with a mounting hole used for being matched with a bolt to be mounted on the ground, a threaded column is vertically and rotatably arranged in the mounting seat, and the threaded column is connected with the GIS module and the remote sensing detection data processing module. The threaded column is in threaded fit with a threaded hole formed in the supporting base, and the threaded column is driven to rotate so that the mounting base can vertically slide relative to the supporting base. According to the remote sensing detection device based on the GIS provided by the utility model, the threaded column is rotatably arranged in the mounting seat, and the threaded column is matched with the threaded hole of the supporting seat, so that the threaded column can synchronously drive the mounting seat to vertically slide in the process of being driven to rotate, and the fixed height of the mounting seat relative to the ground is adjustable; therefore, the module and an external cable can be conveniently connected, assembled and used, and the installation convenience is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to remote sensing detection device technical field, concretely relates to a remote sensing detection device based on GIS. BACKGROUND

[0002] Remote sensing refers to non-contact, long-distance detection technology. Generally refers to the use of sensors / remote sensors to detect the electromagnetic wave radiation, reflection characteristics of the object. Remote sensing is through remote sensor such as instrument sensitive to electromagnetic waves, under the condition of far from target and non-contact target object detection target ground object. Obtain the reflected, radiated or scattered electromagnetic wave information, and carry out extraction, determination, processing, analysis and application. Remote sensing detection refers to the collection of electromagnetic radiation information of ground target through sensors carried on artificial satellites, aircraft or other aircraft platforms, and the extraction of required physical information from observed spectrum.

[0003] According to the announcement number CN220288663U, the announcement date: 2024.01.02, the remote sensing detection device based on GIS disclosed in the prior art is provided with a protection shell, a remote sensing detection data processing module, a GIS module, a wiring port, a supporting plate, the top of the protection shell is fixedly provided with a remote sensing detection data processing module, the rear of the protection shell is fixedly provided with a GIS module, the side of the GIS module is fixedly provided with a wiring port, the bottom of the protection shell is fixedly provided with a supporting plate, the bottom of the supporting plate is fixedly provided with a supporting column, the protection shell is of waterproof and fireproof material, the protection shell is in closed U shape in plan view, and the remote sensing detection data processing module is fixed on the top of the protection shell by screws. Compared with the prior art, the advantages of the utility model lie in that the waterproof and fireproof protection shell can effectively protect the internal modules, the remote sensing detection data processing module and the GIS module can position the device, transmit and process remote sensing data, and the heat dissipation holes can dissipate heat for the GIS module.

[0004] In the prior art including the above-mentioned patent, the protection shell is supported and placed at the required position by the supporting column, and the remote sensing detection data processing module and the GIS module on the protection shell are used for detection. The supporting column is only placed directly on the ground. Firstly, the protection shell is not fixed to the ground, which has the risk of toppling over. Secondly, the height of the protection shell arranged on the ground cannot be adjusted, which is not convenient for the cable connection, installation and use of the modules. UTILITY MODEL CONTENT

[0005] The utility model aims at providing a remote sensing detection device based on GIS, which solves the above-mentioned problems.

[0006] In order to achieve the above object, the utility model provides the following technical scheme: a remote sensing detection device based on GIS, including mounting seat and support base, GIS module and remote sensing detection data processing module are provided on the mounting seat, the support base is equipped with installation hole for cooperation bolt installation to the ground, the threaded column is arranged in the mounting seat and rotates vertically, the threaded hole is screwed on the support base, the threaded column is driven to rotate to make the mounting seat slide vertically relative to the support base.

[0007] As preferred, the support base is symmetrically provided with a sliding part, and the sliding part is provided with a movable plate, the movable plate is vertically slidably arranged in the movable cavity opened in the mounting seat.

[0008] As preferred, the movable plate is slidably arranged in the movable cavity, and the mounting seat is provided with a communication hole, the first end of the communication hole is communicated with the movable cavity, and the second end of the communication hole faces the remote sensing detection data processing module.

[0009] As preferred, the mounting seat is symmetrically and vertically rotatably arranged with a rotating seat, the rotating seat is arranged with a counterweight ring, the threaded column is driven to rotate to drive the two rotating seats to rotate synchronously.

[0010] As preferred, the support base is provided with a guide sliding column coaxially arranged with the threaded column, and the threaded hole is coaxially arranged on the guide sliding column, the end of the guide sliding column is provided with a contact groove, the counterweight ring is circumferentially arranged with a flexible extension column, and the mounting seat is driven to slide and approach the support base to make the flexible extension column rotate circumferentially and sequentially contact and disengage the contact groove.

[0011] As preferred, the mounting seat is rotatably arranged with a cover, the rotating seat rotates to drive the cover to rotate to cover or expose the remote sensing detection data processing module.

[0012] As preferred, the mounting seat is rotatably arranged with a transmission rod, the transmission rod is provided with a third gear ring part and a worm part, the rotating part of the cover is provided with a partial worm wheel part, the worm part is coupled with the partial worm wheel part, and the third gear ring part is coupled with the second gear ring part arranged on the rotating seat.

[0013] As preferred, the threaded column is provided with a driving gear ring, the rotating seat is provided with a first gear ring part, and the first gear ring parts of the two rotating seats are symmetrically coupled on the driving gear ring.

[0014] As preferred, the mounting seat is provided with a driving motor for driving the threaded column to rotate axially.

[0015] As preferred, the flexible extension column is a rubber column.

[0016] In the above technical scheme, the utility model provides a kind of remote sensing detection device based on GIS, with the following beneficial effects: threaded column is arranged in mounting seat using rotation, and threaded column is matched with the threaded hole of support seat, and then make threaded column in the process of being driven to rotate, can simultaneously drive mounting seat to carry out vertical sliding, realize the fixed height of mounting seat relative to ground adjustable, to facilitate module and external cable connection installation and use, improve the convenience of installation. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical scheme in the embodiments of the present application or prior art, the drawings needed in the embodiments will be briefly introduced as follows, and obviously, the drawings in the following description are only some embodiments described in the utility model, and other drawings can also be obtained by those skilled in the art according to these drawings.

[0018] Figure 1 The overall structure schematic view provided by the embodiments of the utility model is shown in the figure.

[0019] Figure 2 The overall transverse structure cross-sectional view provided by the embodiments of the utility model is shown in the figure.

[0020] Figure 3 The overall longitudinal structure cross-sectional view provided by the embodiments of the utility model is shown in the figure.

[0021] Figure 4 The overall explosion structure schematic view provided by the embodiments of the utility model is shown in the figure.

[0022] Figure 5 The structure schematic view of support seat provided by the embodiments of the utility model is shown in the figure.

[0023] Figure 6 The overall structure schematic view provided by the embodiments of the utility model is shown in the figure. Figure 2 The local enlarged schematic view of A in the figure.

[0024] Explanation of reference signs:

[0025] 1, mounting seat;11, movable cavity;12, communication hole;13, mounting groove;2, support seat;21, mounting hole;22, sliding part;221, movable plate;23, guide sliding column;231, threaded hole;232, abutting groove;3, threaded column;31, driving gear ring;4, cover;41, rotating part;42, partial worm gear part;5, rotating seat;51, first gear ring part;52, second gear ring part;6, transmission rod;61, third gear ring part;62, worm part;7, counterweight ring;71, flexible extension column;8, driving motor;91, GIS module;92, remote sensing detection data processing module. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical scheme and advantages of the embodiments of the present disclosure clearer, the technical solutions of the embodiments of the present disclosure will be described clearly and completely below with reference to the drawings of the embodiments of the present disclosure. Obviously, the described embodiments are part of the embodiments of the present disclosure, rather than all the embodiments. Based on the described embodiments of the present disclosure, all other embodiments obtained by a person of ordinary skill in the art without any inventive effort fall within the scope of protection of the present disclosure.

[0027] As shown in Figures 1-6 a GIS-based remote sensing detection device, comprising a mounting seat 1 and a support seat 2, the mounting seat 1 is provided with a GIS module 91 and a remote sensing detection data processing module 92, the support seat 2 is provided with a mounting hole 21 for cooperating with bolts to be installed on the ground, a threaded column 3 is vertically arranged in the mounting seat 1, the threaded column 3 is threadedly matched with a threaded hole 231 formed on the support seat 2, and the threaded column 3 is driven to rotate to make the mounting seat 1 vertically slide relative to the support seat 2.

[0028] Specifically, as shown in Figure 1 first, the support seat 2 can be fixedly installed on the ground through bolts and the mounting hole 21, and the support seat 2 supports the mounting seat 1, thereby realizing stable support of the mounting seat 1 relative to the ground and improving the use safety and stability of the GIS module 91 and the remote sensing detection data processing module 92 on the mounting seat 1. The mounting seat 1 is provided with a mounting groove 13, the remote sensing detection data processing module 92 is arranged in the mounting groove 13, and the GIS module 91 is arranged on the side surface of the mounting seat 1 and is provided with a socket for connecting with an external cable.

[0029] As shown in Figure 2 the threaded column 3 is arranged in the mounting seat 1 and is matched with the threaded hole 231 of the support seat 2, so that the threaded column 3 can drive the mounting seat 1 to vertically slide synchronously during the driven rotation, thereby realizing fixed-height adjustment of the mounting seat 1 relative to the ground, facilitating module connection, installation and use of the external cable, and improving the convenience of installation.

[0030] Further, the mounting seat 1 is provided with a driving motor 8 for driving the threaded column 3 to rotate axially, and the GIS module 91 and the remote sensing detection data processing module 92, the driving motor 8 and electrical connection with the outside are common technical knowledge of those skilled in the art, which will not be described here.

[0031] In the technical scheme, the threaded column 3 is arranged to rotate in the mounting seat 1, and the threaded column 3 is matched with the threaded hole 231 of the support seat 2, so that the threaded column 3 can drive the mounting seat 1 to vertically slide synchronously in the process of being driven to rotate, the fixed height of the mounting seat 1 relative to the ground is adjustable, the module is convenient to connect, install and use with the external cable, and the convenience of installation is improved.

[0032] As further provided in the embodiment of the utility model, the support seat 2 is symmetrically provided with a sliding part 22, the sliding part 22 is provided with a movable plate 221, and the movable plate 221 is vertically slidably arranged in the movable cavity 11 of the mounting seat 1.

[0033] Specifically, as shown in the figure, Figure 3 the movable plate 221 on the sliding part 22 of the support seat 2 is slidably arranged in the movable cavity 11, so that the sliding stability between the support seat 2 and the mounting seat 1 is further improved, the support stability of the mounting seat 1 by the support seat 2 is improved, and the shaking of the mounting seat 1 in vertical sliding is reduced, and the use safety of the module is further improved.

[0034] As further provided in the embodiment of the utility model, the movable plate 221 is piston slidably arranged in the movable cavity 11, and the mounting seat 1 is provided with a communication hole 12, the first end of the communication hole 12 is communicated with the movable cavity 11, and the second end of the communication hole 12 faces the remote sensing detection data processing module 92.

[0035] Specifically, as shown in the figure, Figure 3 the lower end of the communication hole 12 is the first end, and the upper end is the second end, when the mounting seat 1 vertically slides away from the support seat 2 to be lifted in height, the movable plate 221 is piston slidably arranged in the movable cavity 11 to extrude the air in the movable cavity 11 along the first end of the communication hole 12 to the second end of the communication hole 12, so that the airflow blows and cleans the surface of the remote sensing detection data processing module 92 along the communication hole 12, and the actual use of the remote sensing detection data processing module 92 is facilitated.

[0036] As further provided in the embodiment of the utility model, the mounting seat 1 is symmetrically and vertically rotatably arranged with a rotating seat 5, the rotating seat 5 is arranged with a counterweight ring 7, and the threaded column 3 is driven to rotate to drive the two rotating seats 5 to synchronously rotate.

[0037] Specifically, as shown in the figure, Figure 2 the rotating seat 5 is symmetrically arranged on the mounting seat 1, and since the rotating seat 5 is provided with the counterweight ring 7, when the threaded column 3 is driven to rotate, the two rotating seats 5 drive the counterweight ring 7 to synchronously rotate axially, so that the rotating seat 5 and the counterweight ring 7 play a role similar to a gyroscope, the sliding stability of the mounting seat 1 in vertical lifting is improved, and the horizontal shaking of the mounting seat 1 is reduced.

[0038] As a further provided embodiment of the utility model, the support base 2 is provided with a guide sliding column 23 coaxially arranged with the threaded column 3, and a threaded hole 231 is coaxially arranged on the guide sliding column 23, and the end of the guide sliding column 23 is provided with a contact groove 232, and the flexible extension column 71 is circumferentially arranged on the counterweight ring 7, and the mounting base 1 is driven to slide and approach the support base 2 to make the flexible extension column 71 rotate circumferentially and sequentially contact and disengage from the contact groove 232.

[0039] Specifically, as shown in the figure, Figure 6 the threaded column 3 is coupled with the threaded hole 231 of the guide sliding column 23, and when the mounting base 1 vertically slides relative to the support base 2, the guide sliding column 23 axially slides in the mounting base 1 to further improve the vertical sliding stability of the mounting base 1. When the mounting base 1 is driven to slide vertically and approach the support base 2 to lower the height of the mounting base 1, the guide sliding column 23 gradually slides into the mounting base 1 to approach the rotating seat 5, and the threaded column 3 drives the rotating seat 5 and the flexible extension column 71 to rotate, and the flexible extension column 71 rotates circumferentially and sequentially contacts and disengages from the contact groove 232, so that the flexible extension column 71 buffers and slows down when the mounting base 1 is about to lower and approach the support base 2, thereby improving the protection of the module on the mounting base 1.

[0040] As a further provided embodiment of the utility model, the mounting base 1 is rotatably arranged with a cover 4, and the rotating seat 5 rotates to drive the cover 4 to rotate to cover or expose the remote sensing detection data processing module 92.

[0041] Specifically, as shown in the figure, Figure 4 the cover 4 is rotatably arranged on the mounting base 1 to cover the remote sensing detection data processing module 92, so that the cover 4 can provide cover protection when the remote sensing detection data processing module 92 is not used, and the use safety of the remote sensing detection data processing module 92 is further improved.

[0042] As a further provided embodiment of the utility model, the mounting base 1 is rotatably arranged with a cover 4, and the rotating seat 5 rotates to drive the cover 4 to rotate to cover or expose the remote sensing detection data processing module 92.

[0043] Specifically, as shown in the figure, Figure 4 the rotating part 41 of the cover 4 is rotatably arranged on the mounting base 1, and when the rotating seat 5 is driven to rotate, the second gear ring part 52 drives the worm part 62 to rotate through the third gear ring part 61, and the worm part 62 rotates to drive the rotating part 41 to rotate through the partial worm wheel part 42, thereby utilizing the existence of the transmission rod 6 to realize the driving of the cover 4 by the rotating seat 5, and utilizing the worm part 62 and the partial worm wheel part 42 to realize the self-locking and stable rotation of the cover 4, thereby improving the use safety of the cover 4.

[0044] As further provided by the utility model, the threaded column 3 is provided with a driving gear ring 31, the rotating seat 5 is provided with a first gear ring part 51, and the first gear ring parts 51 of the two rotating seats 5 are symmetrically coupled to the driving gear ring 31.

[0045] Specifically, as shown in the figure, Figure 4 The driving gear ring 31 of the threaded column 3 is coupled to the first gear ring parts 51 of the two rotating seats 5 respectively, so that the rotation of the threaded column 3 can synchronously drive the two rotating seats 5 to rotate, improving the transmission stability of the rotating seat 5.

[0046] As further provided by the utility model, the flexible extension column 71 is a rubber column.

[0047] Specifically, the flexible extension column 71 is a rubber column to improve the service life of the flexible extension column 71.

[0048] The above only describes some exemplary embodiments of the utility model by way of illustration, and it is needless to say that those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the utility model. Therefore, the above figures and description are illustrative in nature and should not be understood as limiting the scope of protection claimed by the utility model.

Claims

1. A GIS-based remote sensing device, characterized by, The utility model provides a kind of remote sensing detection data processing device, including mounting seat (1) and support seat (2), the mounting seat (1) is provided with GIS module (91) and remote sensing detection data processing module (92), the support seat (2) is opened with the installation hole (21) for cooperation bolt installation to ground, the mounting seat (1) is vertically rotationally arranged with threaded column (3), the threaded column (3) is threadedly cooperated with the threaded hole (231) opened on support seat (2), the threaded column (3) is rotated to make mounting seat (1) vertically slide relative to support seat (2).

2. The remote sensing device based on GIS according to claim 1, characterized in that, The support seat (2) is symmetrically provided with a sliding portion (22), and the sliding portion (22) is provided with a movable plate (221). The movable plate (221) is vertically slidably arranged in an active cavity (11) formed in the mounting seat (1).

3. The remote sensing device based on GIS according to claim 2, characterized in that, The movable plate (221) is piston slidably arranged in the active cavity (11), and the mounting seat (1) is provided with a communication hole (12). The first end of the communication hole (12) is in communication with the active cavity (11), and the second end of the communication hole (12) faces the remote sensing detection data processing module (92).

4. The remote sensing device based on GIS according to claim 1, characterized in that, The mounting seat (1) is symmetrically vertically rotatably arranged with a rotating seat (5), and the rotating seat (5) is arranged with a counterweight ring (7). The threaded column (3) is driven to rotate to drive the two rotating seats (5) to synchronously rotate.

5. The GIS-based remote sensing device according to claim 4, wherein, The support seat (2) is provided with a guide sliding column (23) coaxially arranged with the threaded column (3), and the threaded hole (231) is coaxially formed on the guide sliding column (23). The end of the guide sliding column (23) is provided with a contact groove (232). The counterweight ring (7) is circumferentially arranged with a flexible extension column (71). The mounting seat (1) is driven to slide towards the support seat (2) to make the flexible extension column (71) rotate circumferentially and sequentially contact and disengage the contact groove (232).

6. The GIS-based remote sensing device according to claim 4, wherein, The mounting seat (1) is rotatably arranged with a cover (4). The rotating seat (5) rotates to drive the cover (4) to rotate to cover or expose the remote sensing detection data processing module (92).

7. The GIS-based remote sensing device according to claim 6, characterized in that, The mounting seat (1) is rotatably arranged with a transmission rod (6). The transmission rod (6) is provided with a third gear ring portion (61) and a worm portion (62). The rotating portion (41) of the cover (4) is provided with a partial worm wheel portion (42). The worm portion (62) is coupled with the partial worm wheel portion (42). The third gear ring portion (61) is coupled with the second gear ring portion (52) arranged on the rotating seat (5).

8. The remote sensing device based on GIS according to claim 4, characterized in that, The threaded column (3) is provided with a driving gear ring (31). The rotating seat (5) is provided with a first gear ring portion (51). The first gear ring portions (51) of the two rotating seats (5) are symmetrically coupled on the driving gear ring (31).

9. The GIS-based remote sensing device of claim 1, wherein, The mounting seat (1) is provided with a driving motor (8) for driving the threaded column (3) to rotate axially.

10. The GIS-based remote sensing device of claim 5, wherein, The flexible extension column (71) is a rubber column.

Citation Information

Patent Citations

  • GIS-based remote sensing detection device

    CN220288663U