Detection device for installation of Beidou high-precision smart equipment

By designing a detection device for the installation of Beidou high-precision smart equipment, the problem of the lack of detection equipment in the existing technology has been solved. It realizes high-precision measurement and stability detection of the installation position, ensuring the stability of the equipment and the accuracy of installation, and facilitating installation and maintenance.

CN120890338AInactive Publication Date: 2025-11-04XIANGPU INFORMATION IND CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202511036247.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-26
Publication Date
2025-11-04
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The lack of specialized testing equipment in the current technology to detect the installation location and stability of Beidou high-precision smart devices leads to unstable installation and affects the normal use of the equipment.

Method used

A high-precision intelligent equipment installation testing device for BeiDou was designed, including a work frame, a measurement component, a mating component, a working component, an adjustment component, and a testing component. By accurately measuring structures such as motors, wheels, tracks, and connecting belts, it achieves high-precision measurement and stability testing of the installation position.

Benefits of technology

It achieves high-precision measurement of the installation location, reduces measurement errors, provides comprehensive data support, ensures the stability of the equipment and the accuracy of installation, and facilitates installation and maintenance.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120890338A_ABST
    Figure CN120890338A_ABST
Patent Text Reader

Abstract

The invention discloses a detection device for Beidou high-precision smart equipment installation, and relates to the technical field of Beidou high-precision smart equipment installation auxiliary device.The detection device comprises a working frame, a fixing assembly is arranged at the bottom end of the working frame, a measuring assembly is arranged on the upper portion of the working frame, the measuring assembly is connected with a matching assembly, and the matching assembly is arranged on the working frame; the measuring assembly is provided with a working assembly, the side surface of the working assembly is provided with an adjusting assembly, and the lower part of the adjusting assembly is provided with a detection assembly. According to the invention, through accurate cooperation of a measuring motor, a measuring rotating wheel, a measuring connecting belt, a measuring track and other parts in the measuring assembly, high-precision measurement of the length of an installation position can be realized. The matching assembly further ensures the stability and accuracy of the measuring assembly, and through the matching rotating wheel, the matching connecting belt, the matching track and other structures, the measuring process is more stable, and errors are reduced. The working assembly measures the width of the to-be-detected position, and can achieve the comprehensive detection of the length and width of the installation position.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The application relates to the field of a Beidou high-precision intelligent equipment installation auxiliary device, in particular to a detection device for Beidou high-precision intelligent equipment installation. BACKGROUND

[0002] The Beidou high-precision intelligent equipment refers to a series of intelligent devices and systems developed by combining the high-precision positioning, navigation and timing services of the Beidou satellite navigation system (BDS) with modern information technologies such as big data, cloud computing and the Internet of Things.

[0003] The application field of the Beidou high-precision intelligent equipment is very wide, including but not limited to transportation, marine fishery, surveying and geographic information, weather forecast, earthquake monitoring, environmental protection and the like. With the continuous progress of technology and the continuous expansion of application scenarios, the Beidou high-precision intelligent equipment will play an increasingly important role in the future society. However, the existing technology has high requirements on the installation environment of the Beidou high-precision intelligent equipment, and requires that the Beidou high-precision intelligent equipment be installed stably to ensure the normal use of the Beidou high-precision intelligent equipment. However, there is no special detection device to detect the installation position and stability of the Beidou high-precision intelligent equipment in the prior art.

[0004] Therefore, it is necessary to provide a detection device for Beidou high-precision intelligent equipment installation to solve the above problems. SUMMARY

[0005] The application aims to provide a detection device for Beidou high-precision intelligent equipment installation to solve the problems in the prior art.

[0006] To achieve the above-mentioned purpose, the application provides the following technical scheme.

[0007] A detection device for Beidou high-precision intelligent equipment installation, comprising a working frame, a fixing assembly is arranged at the bottom end of the working frame, a measuring assembly is arranged at the upper part of the working frame, a matching assembly is connected to the measuring assembly, the matching assembly is arranged on the working frame, a working assembly is arranged on the measuring assembly, an adjusting assembly is arranged on the side surface of the working assembly, and a detection assembly is arranged at the lower part of the adjusting assembly.

[0008] The application discloses a detection device for installation of a Beidou high-precision intelligent equipment, which comprises a measuring assembly, a matching assembly and a working assembly.

[0009] The application discloses a detection device for installation of a Beidou high-precision intelligent equipment, which comprises a measuring assembly, a matching assembly and a working assembly.

[0010] The application discloses a detection device for installation of a Beidou high-precision intelligent equipment, which comprises a measuring assembly, a matching assembly and a working assembly.

[0011] The application discloses a detection device for installation of a Beidou high-precision intelligent equipment, which comprises a measuring assembly, a matching assembly and a working assembly.

[0012] The application discloses a detection device for installation of a Beidou high-precision intelligent device.

[0013] The application discloses a detection device for installation of a Beidou high-precision intelligent device.

[0014] The application discloses a detection device for installation of a Beidou high-precision intelligent device.

[0015] The application discloses a detection device for installation of a Beidou high-precision intelligent device.

[0016] The application discloses a detection device for installation of a Beidou high-precision intelligent device.

[0017] The application discloses a detection device for installation of a Beidou high-precision intelligent device.

[0018] The application discloses a detection device for installation of a Beidou high-precision intelligent device.

[0019] The application discloses a detection device for installation of a Beidou high-precision intelligent device.

[0020] The advantages of the present application are: 1. The present application can realize high-precision measurement of the length of the installation position by measuring the precise cooperation of the measuring motor, the measuring runner, the measuring connecting belt, the measuring track and other components in the measuring assembly. The design of the cooperation assembly further ensures the stability and accuracy of the measuring assembly. Through the cooperation of the runner, the connecting belt and the track, the measuring process is more stable, and the error is reduced.

[0021] 2. The design of the working assembly enables the device to measure the width of the position to be detected. Together with the measuring assembly, it can realize comprehensive detection of the length and width of the installation position. The addition of the detection assembly enables the device to collect various information of the installation position, such as air humidity and soil looseness, providing more comprehensive data support for the judgment of the installation position.

[0022] 3. The design of the adjusting assembly enables the working height and direction of the detection assembly to be flexibly adjusted, meeting the requirements of different installation positions and different detection needs. The cooperation of the adjusting ruler and the telescopic oil cylinder enables the displacement distance and working height of the detection assembly to be accurately controlled, improving the accuracy of detection.

[0023] 4. The design of the fixing assembly, including the fixing bottom plate, the fixing hole and the reinforcing rib plate, ensures the stability of the entire device at the installation position, preventing measurement errors caused by device shaking or movement. The cooperation of the limit probe and the working motor enables the working assembly to remain stable during operation, avoiding inaccurate measurement caused by instability.

[0024] 5. The design of the present application makes the connection relationship between each component clear and easy to install and disassemble. The electrical components are externally connected to the power supply and control switch, making the device easier to use, and also facilitating later maintenance and maintenance. BRIEF DESCRIPTION OF DRAWINGS

[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed in the embodiment description. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0026] Figure 1 is a structural schematic diagram of the present application;

[0027] Figure 2 is a first perspective view of the present application;

[0028] Figure 3 is a second perspective view of the present application;

[0029] Figure 4 is a third perspective view of the present application;

[0030] Figure 5 is a fourth perspective view of the present application;

[0031] Figure 6 is a partial enlarged view of A1 of Figure 3

[0032] Figure 7 is a partial enlarged view of A2 of Figure 2

[0033] Figure 8 is a partial enlarged view of A3 of Figure 5

[0034] Figure 9 is a partial enlarged view of A4 of Figure 2

[0035] Figure 10 is a partial enlarged view of A5 of Figure 3

[0036] Figure 11 is a structural diagram of the limiting piece.

[0037] ​​​​​Label: 1, working frame; 2, fixed assembly; 3, measurement assembly; 4, matching assembly; 5, working assembly; 6, adjusting assembly; 7, detecting assembly; 21, fixed bottom plate; 22, fixed hole; 23, reinforcing rib plate; 31, measurement installation plate; 32, measurement motor; 33, connecting shaft; 34, measurement runner; 35, fixed bearing seat; 36, measurement connecting belt; 37, measurement secondary runner; 38, measurement track; 39, scale; 310, measurement moving block; 381, track bottom plate; 382, fixed bolt; 383, sliding column; 384, limiting baffle; 41, matching runner; 42, matching bearing seat; 43, matching connecting belt; 44, matching secondary runner; 45, matching track; 46, matching moving block; 47, matching seat; 48, matching folding plate seat; 49, matching folding belt; 51, working main rod; 52, working installation seat; 53, working motor; 54, working runner; 55, working connecting belt; 56, working secondary runner; 57, working moving block; 58, working track; 59, working placement seat; 510, limiting probe; 511, working scale; 61, adjusting installation seat; 62, adjusting telescopic oil cylinder; 63, adjusting connecting head; 64, adjusting placement seat; 65, adjusting track; 66, adjusting scale; 67, placement groove; 631, transition conversion head; 632, connecting clamping column; 633, clamping plate group; 71, connecting screw rod; 72, adjusting nut; 73, detecting installation seat; 74, detecting motor; 75, detecting piece; 751, detecting transition shaft; 752, detecting seat; 753, detecting probe; 754, limiting gear seat; 755, limiting sleeve; 756, gear slot; 757, limiting rod. DETAILED DESCRIPTION

[0038] In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely 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 of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0039] As Figures 1-11As shown, a kind of detection device for installing Beidou high-precision intelligent equipment, including working frame 1, fixed assembly 2 is equipped at the bottom of working frame 1, measuring assembly 3 is equipped at the upper portion of working frame 1, measuring assembly 3 is connected with cooperation assembly 4, cooperation assembly 4 is arranged on working frame 1, working assembly 5 is equipped on measuring assembly 3, adjusting assembly 6 is equipped at the side of working assembly 5, detection assembly 7 is equipped at the lower portion of adjusting assembly 6. The fixed assembly 2 includes fixed bottom plate 21, fixed hole 22 is equipped on fixed bottom plate 21, fixed bottom plate 21 is arranged on ground, reinforcing rib plate 23 is equipped on fixed bottom plate 21, reinforcing rib plate 23 is connected with working frame 1. When using the present application, it needs to be connected together according to the connection relationship of each component, the electrical elements in the present application are all externally connected with power supply and control switch, so that the normal use of the present application can be guaranteed, the fixed assembly 2 fixes the present application in the position to be detected, the measuring assembly 3 and the detection assembly 7 are used mutually, the length of the position to be detected is measured, at the same time, the cooperation assembly 4 guarantees the stable use of the measuring assembly 3, the working assembly 5 is used for measuring the width of the position to be detected, the measuring assembly 3 and the working assembly 5 are used with the detection assembly 7, the detection assembly 7 collects signals from each position, can detect the inclination or installation condition of each position in real time, and the measuring assembly 3 and the working assembly 5 are used simultaneously, the length, width and height of the installation position can be detected clearly, so that the stability of subsequent installation of Beidou high-precision intelligent equipment can be guaranteed.

[0040] Specifically, as Figures 1-11The embodiment is shown, the measuring assembly 3 described in the embodiment includes a measuring mounting plate 31, the measuring mounting plate 31 is arranged at one end of the work stand 1, the measuring mounting plate 31 is equipped with a measuring motor 32, the measuring motor 32 is equipped with a connecting shaft 33 at both ends, the connecting shaft 33 of one end of the measuring motor 32 is connected with a measuring runner 34, the measuring runner 34 is fixed on the work stand 1 through a fixed bearing seat 35, the measuring runner 34 is connected with a measuring deputy runner 37 through a measuring connecting belt 36, the measuring deputy runner 37 is fixed on the work stand 1 through the fixed bearing seat 35, the measuring runner 34 and the measuring deputy runner 37 are equipped with a measuring track 38, the measuring track 38 is arranged on the work stand 1, one side of the measuring track 38 is equipped with a scale 39, the measuring track 38 is equipped with a measuring moving block 310, the measuring moving block 310 is connected with the measuring connecting belt 36, the measuring moving block 310 is equipped with a work assembly 5.The cooperation assembly 4 includes a cooperation runner 41, the cooperation runner 41 is connected with the connecting shaft 33, the cooperation runner 41 is connected with the work stand 1 through a cooperation bearing seat 42, the cooperation runner 41 is connected with a cooperation deputy runner 44 through a cooperation connecting belt 43, the cooperation deputy runner 44 is connected with the work stand 1 through the cooperation bearing seat 42, the lower part of the cooperation connecting belt 43 is equipped with a cooperation track 45, the cooperation track 45 is arranged on the upper part of the work stand 1, the upper part of the cooperation track 45 is equipped with a cooperation moving block 46, the cooperation moving block 46 is connected with the cooperation connecting belt 43, the cooperation moving block 46 is equipped with a cooperation seat 47, the cooperation seat 47 is equipped with the work assembly 5, the side surface of the cooperation seat 47 is equipped with a cooperation folding plate seat 48, the cooperation folding plate seat 48 is connected with a cooperation folding belt 49, the lower part of the cooperation folding belt 49 is equipped with a cooperation groove, the cooperation groove is arranged on the side surface of the work stand 1, and the cooperation folding belt 49 is arranged in the cooperation groove.The work assembly 5 includes a work main rod 51, one end of the work main rod 51 is connected with the measuring moving block 310, the other end of the work main rod 51 is connected with the cooperation moving block 46, the cooperation moving block 46 is equipped with a work mounting seat 52, the work mounting seat 52 is equipped with a work motor 53, the work motor 53 is connected with a work runner 54, the work runner 54 is arranged on the lower part of the work mounting seat 52, the work runner 54 is connected with a work deputy runner 56 through a work connecting belt 55, the work deputy runner 56 is arranged on one end of the work main rod 51, the work connecting belt 55 is equipped with a work moving block 57, the work moving block 57 is connected with a work track 58, the work track 58 is arranged on the side surface of the work main rod 51, the work moving block 57 is equipped with an adjusting assembly 6, the work moving block 57 is equipped with a work placing seat 59, the work placing seat 59 is equipped with a limit probe 510 on both sides, the limit probe 510 is arranged on the work main rod 51, the limit probe 510 is connected with the work motor 53, the work main rod 51 is equipped with a work ruler 511, and the limit probe 510 is arranged on the work ruler 511.The structure of the measuring track 38, the cooperation track 45 and the work track 58 is same.The measuring track 38 comprises a track bottom plate 381 fixed on the working frame 1 by fixing bolts 382, and the track bottom plate 381 is provided with a sliding column 383 fixedly connected with the track bottom plate 381, and the sliding column 383 is provided with limiting baffle plates 384 at both ends. The measuring motor 32 is started to drive the measuring rotating wheel 34 to rotate, the measuring connecting belt 36 is connected with the measuring auxiliary wheel 37, the measuring connecting belt 36 drives the measuring moving block 310 to move along the measuring track 38, the measuring moving block 310 is clamped with the sliding column 383, and the moving distance of the measuring moving block 310 can be obtained by observing the measuring scale to judge the length of the Beidou high-precision intelligent equipment installation position. The cooperating rotating wheel 41 is driven by the driving action of the measuring motor 32, the cooperating rotating wheel 41 and the cooperating auxiliary wheel 44 work with the cooperating connecting belt 43, the cooperating connecting belt 43 works to rotate to drive the cooperating moving block 46 to move, the cooperating moving block 46 drives the cooperating folding belt 49 to move, and the cooperating folding belt 49 is located in the cooperating folding plate seat 48. In this way, it is ensured that the measuring assembly 3 can accurately move along the measuring track 38, and the accuracy of the measuring data of the measuring assembly 3 is ensured. The working motor 53 is started to drive the working rotating wheel 54 to rotate, thereby driving the working moving block 57 to move to adjust the working position of the detection assembly 7 and the adjusting assembly 6. In this way, on the one hand, the installation situation of each position can be detected in real time, and on the other hand, the width of the Beidou high-precision intelligent equipment installation position can be measured.

[0041] Specifically, as Figures 1-11The adjusting assembly 6 includes an adjusting mounting seat 61 arranged on the working moving block 57, an adjusting telescopic oil cylinder 62 arranged on the upper portion of the adjusting mounting seat 61, an adjusting connecting head 63 arranged at the bottom end of the adjusting telescopic oil cylinder 62, an adjusting placing seat 64 connected to the adjusting connecting head 63, an adjusting track 65 connected to the back surface of the adjusting placing seat 64, an adjusting ruler 66 arranged on one side of the adjusting track 65, the adjusting track 65 arranged on the side surface of the adjusting mounting seat 61, and a placing groove 67 arranged on the adjusting placing seat 64, and a detection assembly 7 arranged in the placing groove 67. The adjusting connecting head 63 includes a transition conversion head 631 connected to the adjusting telescopic oil cylinder 62, a connecting clamping column 632 connected to the transition conversion head 631, a clamping plate group 633 sleeved on the connecting clamping column 632, and the clamping plate group 633 connected to the adjusting placing seat 64. The detection assembly 7 includes a connecting screw 71, an adjusting nut 72 arranged at the top end of the connecting screw 71, the adjusting nut 72 arranged on the upper portion of the adjusting placing seat 64, a detection mounting seat 73 arranged at the bottom end of the connecting screw 71, a detection motor 74 arranged on the upper portion of the detection mounting seat 73, a detection piece 75 connected to the detection motor 74, the detection piece 75 connected to an external control system, and the detection piece 75 arranged on the lower portion of the detection mounting seat 73. The detection piece 75 includes a detection transition shaft 751 connected to the detection motor 74, a detection seat 752 connected to the detection transition shaft 751 through the detection mounting seat 73, and a detection probe 753 arranged on the detection seat 752, and a limiting piece sleeved on the detection transition shaft 751. The limiting piece includes a limiting gear seat 754 fixedly sleeved on the detection transition shaft 751, a limiting sleeve 755 sleeved on the limiting gear seat 754, a tooth groove 756 arranged in the limiting sleeve 755, and a limiting rod 757 arranged on the limiting sleeve 755. The working diameter of the limiting gear seat 754 is smaller than the inner diameter of the placing groove 67. The detection probe 753 collects the information of the installation position and transmits the information to the external control system in a wireless manner, and the specific information of each installation position, such as the air humidity of the installation position or the looseness of the soil or other information, can be observed by the control system, so that whether the installation position is suitable and whether the installation position is stable after installation can be determined.The extension or contraction of the telescopic oil cylinder 62 adjusts the working height of the detection assembly 7, and the adjustment ruler 66 can also observe the displacement distance of the detection assembly 7, so that multi-point information acquisition can be realized, the accuracy of the detection assembly 7 in collecting installation position information is ensured, the adjustment member can adjust the working direction of the detection probe 753, the worker pulls up the limiting rod 757, the limiting sleeve 755 is separated from the limiting gear seat 754 arranged on the detection transition shaft 751, the limiting rod 757 is placed on the detection seat 752, the detection motor 74 rotates, and the working direction of the detection probe 753 is adjusted; after the adjustment is completed, the worker adjusts the position of the limiting rod 757, the limiting sleeve 755 is connected with the limiting gear seat 754, the limiting rod 757 is placed into the placing groove 67, and the effect of fixing the detection probe 753 is achieved.

[0042] Finally, it should be noted that: the above examples are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing examples, or make equivalent replacement for part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A detection device for the installation of BeiDou high-precision smart equipment, characterized in that: It includes a work frame (1), a fixing component (2) at the bottom of the work frame (1), a measuring component (3) at the top of the work frame (1), a mating component (4) connected to the measuring component (3), the mating component (4) being set on the work frame (1), a working component (5) on the measuring component (3), an adjusting component (6) on the side of the working component (5), and a detection component (7) at the bottom of the adjusting component (6). The measuring assembly (3) includes a measuring mounting plate (31), which is set at one end of the work frame (1). A measuring motor (32) is mounted on the measuring mounting plate (31). Both ends of the measuring motor (32) are provided with connecting shafts (33). A measuring wheel (34) is connected to the connecting shaft (33) at one end of the measuring motor (32). The measuring wheel (34) is fixed on the work frame (1) by a fixed bearing seat (35). The measuring wheel (34) is connected to a measuring pair by a measuring connecting belt (36). The measuring wheel (37) is fixed on the work frame (1) by a fixed bearing seat (35). A measuring track (38) is provided between the measuring wheel (34) and the measuring wheel (37). The measuring track (38) is set on the work frame (1). A scale (39) is provided on one side of the measuring track (38). A measuring moving block (310) is provided on the measuring track (38). The measuring moving block (310) is connected to the measuring connecting belt (36). A working component (5) is provided on the measuring moving block (310). The mating assembly (4) includes a mating wheel (41), which is connected to the connecting shaft (33). The mating wheel (41) is connected to the work frame (1) via a mating bearing seat (42). A mating auxiliary wheel (44) is connected to the mating wheel (41) via a mating connecting belt (43). The mating auxiliary wheel (44) is connected to the work frame (1) via a mating bearing seat (42). A mating track (45) is provided at the lower part of the mating connecting belt (43). The mating track (45) is located on the upper part of the work frame (1). The upper part of the track (45) is provided with a moving block (46), the moving block (46) is connected to the connecting belt (43), the moving block (46) is provided with a seat (47), the seat (47) is provided with a working component (5), the side of the seat (47) is provided with a folding plate seat (48), the folding plate seat (48) is connected with a folding belt (49), the lower part of the folding belt (49) is provided with a groove, the groove is provided on the side of the work frame (1), and the folding belt (49) is provided in the groove. The working component (5) includes a working main rod (51), one end of which is connected to a measuring moving block (310), and the other end of which is connected to a cooperating moving block (46). A working mounting base (52) is provided on the cooperating moving block (46), and a working motor (53) is provided on the working mounting base (52). The working motor (53) is connected to a working wheel (54), which is located at the lower part of the working mounting base (52). The working wheel (54) is connected to a working auxiliary wheel (56) via a working connecting belt (55). The working auxiliary wheel (56) is located at one end of the working main rod (51). The belt (55) is provided with a working moving block (57), the working moving block (57) is connected to a working rail (58), the working rail (58) is set on the side of the working main rod (51), the working moving block (57) is provided with an adjustment component (6), the working moving block (57) is provided with a working placement seat (59), the working placement seat (59) is provided with limit probes (510) on both sides, the limit probes (510) are set on the working main rod (51), the limit probes (510) are connected to the working motor (53), the working main rod (51) is provided with a working ruler (511), and the limit probes (510) are set on the working ruler (511).

2. The detection device for installing BeiDou high-precision smart equipment according to claim 1, characterized in that: The measuring track (38), the mating track (45), and the working track (58) have the same structure.

3. The detection device for installing Beidou high-precision smart equipment according to claim 1, characterized in that: The measuring track (38) includes a track base plate (381), which is fixed to the work frame (1) by fixing bolts (382). A sliding column (383) is provided on the track base plate (381), and the sliding column (383) is fixedly connected to the track base plate (381). Limiting baffles (384) are provided at both ends of the sliding column (383).

4. The detection device for installing Beidou high-precision smart equipment according to claim 1, characterized in that: The adjustment component (6) includes an adjustment mounting base (61), which is mounted on the working moving block (57). An adjustment telescopic cylinder (62) is provided on the upper part of the adjustment mounting base (61), and an adjustment connector (63) is provided at the bottom end of the adjustment telescopic cylinder (62). An adjustment placement seat (64) is connected to the adjustment connector (63). An adjustment rail (65) is connected to the back of the adjustment placement seat (64). An adjustment ruler (66) is provided on one side of the adjustment rail (65). The adjustment ruler (66) is located on the side of the adjustment mounting base (61). The adjustment rail (65) is located on the side of the adjustment mounting base (61). A placement groove (67) is provided on the adjustment placement seat (64), and a detection component (7) is provided in the placement groove (67).

5. The detection device for installing Beidou high-precision smart equipment according to claim 4, characterized in that: The adjusting connector (63) includes a transition conversion head (631), which is connected to the adjusting telescopic cylinder (62). The transition conversion head (631) is connected to a connecting pin (632), and a clamping plate assembly (633) is sleeved on the connecting pin (632). The clamping plate assembly (633) is connected to the adjusting placement seat (64).

6. The detection device for installing BeiDou high-precision smart equipment according to claim 1, characterized in that: The detection component (7) includes a connecting screw (71), an adjusting nut (72) at the top of the connecting screw (71), the adjusting nut (72) being located on the upper part of the adjusting placement seat (64), a detection mounting seat (73) at the bottom of the connecting screw (71), a detection motor (74) at the upper part of the detection mounting seat (73), a detection component (75) connected to the detection motor (74), the detection component (75) being connected to an external control system, and the detection component (75) being located at the lower part of the detection mounting seat (73).

7. The detection device for installing BeiDou high-precision smart equipment according to claim 6, characterized in that: The detection component (75) includes a detection transition shaft (751), the top end of which is connected to a detection motor (74). The detection transition shaft (751) passes through a detection mounting base (73) and is connected to a detection seat (752). The detection seat (752) is provided with a detection probe (753), and a limiting component is fitted on the detection transition shaft (751).

8. The detection device for installing Beidou high-precision smart equipment according to claim 7, characterized in that: The limiting component includes a limiting gear seat (754), which is fixedly sleeved on the detection transition shaft (751). A limiting sleeve (755) is sleeved on the limiting gear seat (754), and a toothed groove (756) is provided inside the limiting sleeve (755). A limiting rod (757) is provided on the limiting sleeve (755).

9. The detection device for installing Beidou high-precision smart equipment according to claim 8, characterized in that: The working diameter of the limiting gear seat (754) is smaller than the inner diameter of the placement groove (67).

10. The detection device for installing Beidou high-precision smart equipment according to claim 1, characterized in that: The fixing component (2) includes a fixing base plate (21), a fixing hole (22) is provided on the fixing base plate (21), the fixing base plate (21) is set on the ground, and a reinforcing rib plate (23) is provided on the fixing base plate (21), the reinforcing rib plate (23) is connected to the work frame (1).