Reconnaissance device for communication underground optical cable

By using an integrated exploration device, which combines lifting and camera components, the problems of large depth and limited space in communication manholes have been solved, enabling flexible and safe exploration of optical cables inside the manhole, and improving exploration results and efficiency.

CN223472299UActive Publication Date: 2025-10-24CHINA MOBILE GROUP DESIGN INST +1
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Patent Information

Application Number
CN202422108872.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-10-24
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

Existing communication manholes are deep and have limited space, resulting in incomplete exploration, poor flexibility, and potential safety hazards.

Method used

Design an integrated exploration device, including a battery box, control box, display screen, lifting assembly and camera assembly. Through the lifting of the lifting plate and the flexible adjustment of the camera assembly, the exploration of optical cables in the well can be realized. The camera assembly is connected to the display screen to transmit images in real time.

Benefits of technology

It enables effective exploration of optical cables inside wells without the need for manual entry, improving exploration results and efficiency, enhancing flexibility and safety, and offering simple and convenient operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of underground exploration, in particular to an exploration device for communication underground optical cables, which comprises a battery box, a control box arranged at the top of the battery box, a display screen arranged on the surface of the control box, and a handle arranged at the top of the control box. The storage box is arranged at the bottom of the battery box, a lighting lamp panel is arranged on the outer side of the storage box, the storage box is provided with a storage cavity opened downwards, and a lifting plate capable of entering and exiting the storage cavity is arranged below the storage box; the lifting assembly is arranged between the storage box and the lifting plate and used for achieving the lifting action of the lifting plate; and the camera shooting assembly is arranged on the lifting plate and is connected with the display screen. According to the scheme, the problems that in the prior art, a communication manhole is large in depth, the space in the manhole is limited, flexibility is poor, exploration is incomplete and the like are solved, the optical cable in the manhole can be explored without entering the communication manhole manually, and the exploration effect and efficiency are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of underground survey, especially relates to a survey device of communication underground optical cable. BACKGROUND

[0002] The communication manhole is an underground facility for communication facility maintenance and installation, in order to facilitate the staff to carry out cable maintenance, laying and other operations, a communication manhole is usually set in the communication pipeline every certain distance. In the communication line survey design stage, the hole occupation situation in the communication manhole needs to be surveyed, but some existing communication manholes are deep (especially the depth of part of the cross road pipeline manhole cover to the overlying section is more than 5 meters), the space is limited, the flexibility is poor, the exploration is not comprehensive, and the effect is poor. In addition, some deep manholes may contain toxic gases, which brings personal safety risks to the downhole survey.

[0003] The current technical means is usually that the survey personnel directly go down into the well to view and record, or use a mobile phone and other portable devices to explore into the well, and collect limited data with the help of a lighting device. However, there are risk factors such as harmful gases in the well, and this method has certain safety hazards. Moreover, only relying on the method of shooting by personnel outside the well may lead to insufficient or even unable to collect data due to different depths of the manhole.

[0004] In view of the above problems, the existing communication manhole is deep, and the space in the well is limited, which makes it very difficult for the staff to survey in the well. In addition, manual exploration in the well cannot effectively explore the optical cable in the optical cable pipeline, the flexibility is poor, the exploration is not comprehensive, and the effect is poor. UTILITY MODEL CONTENTS

[0005] The utility model provides a kind of survey device of communication underground optical cable, to solve the problems, such as the flexibility of the existing technology is poor, exploration is not comprehensive, etc., realize that optical cable in well can be explored without manual entering communication well, improve survey effect and efficiency.

[0006] The utility model provides a kind of survey device of communication underground optical cable, including: battery box, the top of battery box is provided with control box, the surface of control box is provided with display screen, the top of control box is provided with handle;Storage box is set to the bottom of battery box, the outside of storage box is provided with illuminating lamp plate, the storage box has the storage cavity that is open towards lower, the lower of storage box is provided with the lifting plate that can enter and exit storage cavity;Lifting assembly is set between the storage box and the lifting plate, for realizing the lifting action of lifting plate;Camera assembly is set on the lifting plate, and is connected with display screen.

[0007] According to the utility model provide a kind of communication underground optical cable's survey device, the opposite sides of control box are provided with the display screen respectively.

[0008] According to the utility model provide a kind of communication underground optical cable's survey device, the cross section of the storage box is rectangle, and four lateral surfaces of the storage box outside are all equipped with the illuminating lamp plate.

[0009] According to the utility model provide a kind of communication underground optical cable's survey device, the lifting assembly includes: multiple third electric telescopic rods, are set to the storage box, and the tail end of the third electric telescopic rod is connected to base;Multiple first electric telescopic rods are set between the lifting plate and the base, for realizing the lifting action of the lifting plate relative to the base.

[0010] According to the utility model provide a kind of communication underground optical cable's survey device, the camera assembly includes: camera fixed frame;Multiple first cameras, multiple the first camera is all set on the camera fixed frame, and the orientation of each the first camera is different;First illuminating lamp strip is set in the adjacent position of each the first camera.

[0011] According to the utility model provide a kind of communication underground optical cable's survey device, the camera assembly further includes: fixed seat, is installed in the lifting plate;Motor is set to one side of the fixed seat;Second electric telescopic rod is set to the fixed seat, and the starting end of the second electric telescopic rod is driven connection through connecting shaft with the motor, can swing relative to the fixed seat under the drive of the motor;Fixed plate is set to the tail end of the second electric telescopic rod, and the camera fixed frame is installed in the fixed plate.

[0012] According to the utility model provide a kind of communication underground optical cable's survey device, the camera assembly further includes: second camera, is installed in the lower surface of the lifting plate;Second illuminating lamp strip is set in the adjacent position of the second camera.

[0013] According to the utility model provide a kind of communication underground optical cable's survey device, the battery box is provided with fixed frame storage groove towards below, and both sides of the fixed frame storage groove are provided with storage battery;When the lifting plate is stored in the storage cavity, the camera fixed frame is located in the fixed frame storage groove.

[0014] According to the utility model provide a kind of communication underground optical cable's survey device, the top of the control box is provided with control switch, and the storage battery is electrically connected with the control switch, and the control switch is electrically connected with display screen, first electric telescopic rod, motor, second electric telescopic rod, third electric telescopic rod, illuminating lamp plate, second illuminating lamp strip respectively.

[0015] The second camera and the first camera are electrically connected with the display screen through the controller.

[0016] The communication underground optical cable surveying device provided by the utility model has the advantages that the integrated equipment design is adopted, the battery box, the control box, the display screen, the handle, the storage box, the illuminating lamp plate, the lifting plate, the lifting assembly and the camera assembly are cooperatively operated, and effective exploration of the communication underground optical cable is realized. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical scheme in the utility model or the prior art, the drawings needed to be used in the following embodiment or prior art description will be briefly introduced, and obviously, the drawings in the following description are some embodiments of the utility model, and for those skilled in the art, other drawings can be obtained according to these drawings without creative labor.

[0018] Figure 1 It is a structural schematic view of the communication underground optical cable surveying device provided by the utility model;

[0019] Figure 2 It is an unfolding structural schematic view of the second electric telescopic rod of the communication underground optical cable surveying device of the utility model;

[0020] Figure 3 It is a structural schematic view of the lifting plate of the communication underground optical cable surveying device of the utility model;

[0021] Figure 4 It is a structural schematic view of the camera fixing frame of the communication underground optical cable surveying device of the utility model;

[0022] Figure 5 It is a bottom structural schematic view of the lifting plate of the communication underground optical cable surveying device of the utility model;

[0023] Figure 6 It is a structural schematic view in the battery box of the communication underground optical cable surveying device of the utility model.

[0024] Reference signs:

[0025] 1, battery box; 2, storage box; 3, handle; 4, display screen; 5, control switch; 6, base; 7, first electric telescopic rod; 8, lifting plate; 9, fixing seat; 10, motor; 11, second electric telescopic rod; 12, third electric telescopic rod; 13, fixing plate; 14, camera fixing frame; 15, illuminating lamp plate; 16, control box; 17, fixing frame storage groove; 18, storage battery; 801, second illuminating lamp strip; 802, second camera; 1401, first camera; 1402, first illuminating lamp strip. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical scheme and advantages of the utility model more clear, the technical scheme in the utility model will be described clearly and completely below in combination with the drawings in the utility model. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0027] In the description of the embodiments of the utility model, it should be explained that the orientation or position relationship indicated by the terms "center", "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is the orientation or position relationship shown in the drawings, and is only for the convenience of describing the embodiments of the utility model and simplifying the description, and cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, a particular orientation and operation, therefore, it cannot be understood as a limitation on the embodiments of the utility model. In addition, the terms "first", "second", "third" are only for the purpose of description, and cannot be understood as indicating or implying relative importance. It should be explained that, in the description of the utility model, unless otherwise explicitly specified and limited, the terms "arrangement", "installation", "connection" should be understood in a broad sense, for example, it can be fixed connection, or detachable connection, or integral connection. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0028] The specific embodiments of the surveying device of the communication downhole optical cable of the utility model will be described below in combination with Figures 1-6

[0029] As Figure 1 and Figure 2 ​The utility model provides a kind of survey device of communication underground optical cable, comprising: battery box 1, battery box 1 top is provided with control box 16, the surface of control box 16 is provided with display screen 4, the top of control box 16 is provided with handle 3;Storage box 2, it is set to the bottom of battery box 1, the outside of storage box 2 is provided with illuminating lamp plate 15, storage box 2 has the storage cavity that is open towards below, the lower of storage box 2 is provided with the lifting plate 8 that can enter and exit storage cavity;Lifting assembly, it is set between storage box 2 and lifting plate 8, for realizing the lifting action of lifting plate 8;Camera component, it is set on lifting plate 8, and is connected with display screen 4.The survey device is designed by integration, including battery box 1, control box 16, display screen 4, handle 3, storage box 2, illuminating lamp plate 15, lifting plate 8, lifting assembly and camera component, realizes the goal that optical cable in well can be explored without manually entering communication well.

[0030] Specifically, battery box 1 serves as the power source of the entire survey device, powering all electronic components. The top of battery box 1 is equipped with control box 16 for overall layout and operation. Control box 16 is located at the top of battery box 1 and contains a control system inside to control the operation of the entire survey device. Display screen 4 is set on the surface of control box 16 to display images captured by the camera component and other relevant information. Handle 3 is also set on the top of control box 16 for easy handling of the entire device. Storage box 2 is set at the bottom of battery box 1, and illuminating lamp plate 15 is installed on the outside of storage box 2 to illuminate the surrounding environment, ensuring that the camera component can clearly capture images. Storage box 2 has a storage cavity open towards below for easy access of lifting plate 8. Lifting plate 8 is located below storage box 2 and can move up and down through lifting assembly, allowing the camera component to adjust its height as needed for easy observation of optical cables at different depths. Lifting assembly is set between storage box 2 and lifting plate 8 to drive lifting plate 8 to move up and down. Camera component is installed on lifting plate 8 and connected to display screen 4 on control box 16 through a cable or other means. Camera component can capture images underground and transmit them in real time to display screen 4 for staff to view. According to the above scheme, not only the safety and efficiency of exploration are improved, but also the flexibility of the device is enhanced, making it easy for staff to explore optical cables at different depths while ensuring that the device is easy to carry and operate.

[0031] In the downhole environment, the staff may need to approach the control box 16 from different angles. According to the utility model provides a kind of communication downhole optical cable's survey device, the opposite sides of control box 16 are respectively provided with display screen 4. By being provided with display screen 4 on the opposite sides of control box 16, it can be ensured that no matter from which direction approaches control box 16, operator can conveniently view the information on screen. Double display screen 4 design allows staff to view monitoring information from two different directions, thereby improving the convenience of operation. It can be understood that the two display screens 4 can also be set to independently display different content, which can simultaneously display multiple perspective images or different data information, thereby supporting multi-task processing capability and improving work efficiency. In some cases, the double display screen 4 can also be used as a redundant design, where one display screen 4 fails, the other can still be used normally, ensuring that the operation will not be interrupted, and improving the overall reliability of the system.

[0032] Sufficient lighting can not only help the camera assembly work better, but also improve the safety of the staff. According to the utility model provides a kind of communication downhole optical cable's survey device, the cross section of storage box 2 is rectangular, and the four sides of the outside of storage box 2 are all installed with lighting lamp plate 15. Since the lighting lamp plate 15 is distributed on the four sides of the storage box 2, even in the complex downhole environment or light condition changes, the camera assembly can ensure sufficient light for exploration, which helps to improve the imaging quality of the camera assembly.

[0033] According to the utility model provides a kind of communication downhole optical cable's survey device, the lifting assembly includes: a plurality of third electric telescopic rods 12, which are arranged in storage box 2, and the ends of the third electric telescopic rods 12 are connected to base 6;A plurality of first electric telescopic rods 7 are arranged between lifting plate 8 and base 6, for realizing the lifting action of lifting plate 8 relative to base 6. The lifting action of lifting plate 8 is realized by the cooperation of the plurality of third electric telescopic rods 12 and the plurality of first electric telescopic rods 7, so that the communication well of different depths can be adapted, and the camera can enter the communication well pipeline of different positions for surveying.

[0034] Specifically, the third electric telescopic rod 12 is arranged on the storage box 2, and the end thereof is connected to the base 6, so as to support the entire lifting plate 8 system and ensure that it can move smoothly in the vertical direction. The third electric telescopic rod 12 can be installed on the storage box 2 by bolts. The first electric telescopic rod 7 is arranged between the lifting plate 8 and the base 6, for realizing the lifting action of the lifting plate 8 relative to the base 6. The first electric telescopic rod 7 can be installed on the lifting plate 8 by bolts. Through the cooperation of the first electric telescopic rod 7 and the third electric telescopic rod 12, the height of the lifting plate 8 can be adjusted, so that the camera assembly can adapt to communication wells of different depths, and ensure that effective surveying work can be carried out at different depths.

[0035] As Figure 2 , Figure 3 and Figure 4 indicated, according to the utility model provides a kind of communication underground optical cable's survey device, camera component includes: camera fixed frame 14;Multiple first camera 1401, multiple first camera 1401 are all set on camera fixed frame 14, and the orientation of each first camera 1401 is different;First illumination light bar 1402 is set in the adjacent position of each first camera 1401. Among them, multiple first camera 1401 are all set on camera fixed frame 14, and the orientation of each camera is different. This design ensures that it can cover each angle inside pipeline, so that the arbitrary position of pipeline inner wall can be photographed. First illumination light bar 1402 is set in the adjacent position of each first camera 1401, ensure that each camera can obtain sufficient illumination when shooting. First illumination light bar 1402 provides necessary light source for camera, especially in the underground environment of insufficient light, clear image can be ensured to be shot.

[0036] According to the utility model provides a kind of communication underground optical cable's survey device, camera component further includes: fixed seat 9, is installed in lifting plate 8;Motor 10 is set on one side of fixed seat 9;Second electric telescopic rod 11 is set in fixed seat 9, and the starting end of second electric telescopic rod 11 is driven connection with motor 10 through connecting shaft, can swing relative to fixed seat 9 under the drive of motor 10;Fixed plate 13 is set in the end of second electric telescopic rod 11, and camera fixed frame 14 is installed in fixed plate 13. Among them, motor 10 is set on one side of fixed seat 9, for driving the swing action of second electric telescopic rod 11. Motor 10 is driven connection with the starting end of second electric telescopic rod 11 through connecting shaft, can control second electric telescopic rod 11 swing relative to fixed seat 9, to adjust the position of camera fixed frame 14. Fixed plate 13 is set in the end of second electric telescopic rod 11, for installing camera fixed frame 14. By adjusting the length and angle of second electric telescopic rod 11, the position of camera fixed frame 14 can be changed, so that the shooting of different depth pipeline is realized.

[0037] The survey device for the optical cable in the communication shaft has high flexibility, after the pipeline on one side of the communication shaft is surveyed, the second electric telescopic rod 11 can be driven by the motor 10 to rotate, so that the camera can quickly enter the pipeline on the other side to perform surveying, thereby saving surveying time. Preferably, the fixing seat 9 can be mounted on the lifting plate 8 by bolts, and the longitudinal section of the fixing seat 9 can be provided in a U-shaped manner to accommodate the starting end of the second electric telescopic rod 11, thereby forming a swingable mounting mode. The end of the second electric telescopic rod 11 is connected with the bearing on the fixing seat 9 and the motor 10 through a connecting shaft, and the motor 10 is mounted on one side of the fixing seat 9 by bolts. The fixing plate 13 can be mounted on one end of the second electric telescopic rod 11 by bolts. The camera fixing frame 14 can be mounted on the fixing plate 13 by bolts. The first camera 1401 and the first lighting strip 1402 can be mounted on the camera fixing frame 14 by bolts. Through the flexible and detachable design of each component, the local installation and maintenance of the device are facilitated.

[0038] In order to ensure that different positions in the communication shaft, especially the bottom of the shaft, can be fully surveyed, as shown in Figure 5 The survey device for the optical cable in the communication shaft according to the utility model, the camera assembly further comprises: a second camera 802 mounted on the lower surface of the lifting plate 8; and a second lighting strip 801 arranged adjacent to the second camera 802. Preferably, the second lighting strip 801 and the second camera 802 are mounted on the bottom of the lifting plate 8 by bolts. The second camera 802 is mounted on the lower surface of the lifting plate 8, so that the bottom of the communication shaft can be photographed. The second lighting strip 801 provides the necessary light source for the second camera 802, especially in the dark environment of the shaft, so that a clear image can be captured. In combination with the first camera 1401 and the second camera 802, the inner wall and the bottom of the communication shaft can be fully covered, so that no important details are missed.

[0039] In order to realize compact storage and convenient transportation of the entire survey device, as shown in Figure 6As shown, according to the utility model provide a kind of communication underground optical cable's survey device, battery box 1 is provided with the fixed frame storage groove 17 towards below, the both sides of fixed frame storage groove 17 are provided with battery 18;When lifting plate 8 is stored in storage cavity, camera fixed frame 14 is located in fixed frame storage groove 17. Fixed frame storage groove 17 is arranged in battery box 1, towards below, that is, towards the storage cavity of storage box 2, for storing the camera fixed frame 14 of the storage height of storage box 2. When not needing to use camera assembly, camera fixed frame 14 can be stored in fixed frame storage groove 17, the compact storage of overall device is realized. When lifting plate 8 is stored in storage cavity, camera fixed frame 14 also enters fixed frame storage groove 17. Battery 18 is arranged at the both sides of fixed frame storage groove 17, so that the whole device can be provided with power support, and additional space is not occupied.

[0040] In order to concentrate control the functions of the whole survey device, ensure that operation is simple and efficient, according to the utility model provide a kind of communication underground optical cable's survey device, the top of control box 16 is provided with control switch 5, battery 18 is electrically connected with control switch 5, control switch 5 is electrically connected with display screen 4, first electric telescopic rod 7, motor 10, second electric telescopic rod 11, third electric telescopic rod 12, illuminating lamp plate 15, second illuminating lamp strip 801 respectively. Among them, control switch 5 is arranged at the top of control box 16, and the operator is conveniently controlled. Battery 18 is electrically connected with control switch 5, and power support is provided for the whole device. Control switch 5 is electrically connected with display screen 4, and the opening and closing of display screen 4 can be controlled. Control switch 5 is electrically connected with first electric telescopic rod 7, for controlling the lifting action of lifting plate 8. Control switch 5 is electrically connected with motor 10, for controlling the swing of second electric telescopic rod 11. Control switch 5 is electrically connected with second electric telescopic rod 11, for controlling the position adjustment of camera fixed frame 14. Control switch 5 is electrically connected with third electric telescopic rod 12, for controlling the lifting action of the whole lifting system. Control switch 5 is electrically connected with illuminating lamp plate 15, for controlling the switch of illuminating lamp plate 15, to ensure that there is enough illumination underground. Control switch 5 is electrically connected with second illuminating lamp strip 801, for controlling the switch of second illuminating lamp strip 801, to ensure that second camera 802 can clearly shoot.

[0041] According to the utility model provide a kind of communication underground optical cable's survey device, the second camera 802 of above-mentioned each embodiment, first camera 1401 preferably are electrically connected with display screen 4 by controller, to realize the signal transmission between camera assembly and display screen 4, to ensure that the image information underground can be displayed on display screen 4 in real time.

[0042] According to the preferred embodiment, the communication well optical cable surveying device of the utility model in use, first of all, the whole surveying device is moved to the appropriate position through handle 3. Next, the power supply of third electric telescopic rod 12 is turned on through control switch 5, and the working of third electric telescopic rod 12 is used to lower base 6 to the appropriate position. At this time, second lighting lamp strip 801 and second camera 802 at the bottom of lifting plate 8 start working, second lighting lamp strip 801 provides lighting for the inside of the communication well, and second camera 802 photographs the optical cable inside the communication well and transmits the laying video of the optical cable to display screen 4 in real time, and the staff can directly watch the situation of the optical cable inside the communication well through display screen 4.

[0043] When the inside of the optical cable pipeline at both ends of the communication well needs to be surveyed, first of all, base 6 is lowered to the bottom end inside the communication well. Then, through the working of motor 10, second electric telescopic rod 11 is rotated so that second electric telescopic rod 11 is in the same horizontal plane as lifting plate 8. Next, first electric telescopic rod 7 is used to lift lifting plate 8 to the appropriate height, and camera fixing frame 14 is aligned with the optical cable laying pipeline. At this time, second electric telescopic rod 11 is controlled to work and extend camera fixing frame 14 into the inside of the optical cable laying pipeline, and the inside of the optical cable laying pipeline is photographed by first camera 1401 on the end and four sides of camera fixing frame 14, and the video is transmitted to display screen 4, which is convenient for the staff to survey. After the survey is completed, camera fixing frame 14 is retracted to the original position by the working of second electric telescopic rod 11, and the reverse rotation of motor 10 makes second electric telescopic rod 11 rotate reversely, so that camera fixing frame 14 is aligned with another optical cable laying pipeline. Camera fixing frame 14 is moved into the inside of the optical cable laying pipeline by second electric telescopic rod 11 again, so that the optical cable in the optical cable laying pipeline is explored, and the video photographed by first camera 1401 is transmitted to display screen 4, so that the staff can directly and intuitively see the situation of the optical cable in the optical cable laying pipeline, which is simple and convenient to operate and has strong flexibility.

[0044] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "way", "specific way", or "some ways" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or way are included in at least one embodiment or way of the utility model embodiment. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or way. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or ways in a suitable way. In addition, the skilled in the art can combine and combine the different embodiments or characteristics of the different embodiments or ways described in the present specification without contradiction.

[0045] Finally, it should be noted that the above examples are intended to illustrate the technical solutions of the present application, but 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 the technical solutions recorded in the foregoing examples can still be modified, or some technical features can be replaced by equivalents; 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 survey device for a communication downhole optical cable, characterized in that, The utility model relates to a battery box (1), the top of battery box (1) is provided with control box (16), the surface of control box (16) is provided with display screen (4), the top of control box (16) is provided with handle (3). The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, 2. The survey apparatus of the communication underground optical cable according to claim 1, characterized by, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, 3. The survey apparatus of the communication underground optical cable according to claim 1, characterized by, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, 4. The survey device of a communication mineable optical cable according to any one of claims 1-3, characterized in that, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, 5. The survey apparatus of the communication underground optical cable according to claim 4, characterized by, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, 6. The survey apparatus of the communication underground optical cable according to claim 5, characterized by, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, 7. The survey apparatus of the communication underground optical cable according to claim 6, characterized by, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, 8. The survey apparatus of the communication underground optical cable according to claim 7, characterized by, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the bottom of battery box (1) is provided with storage box (2), the outside of storage box (2) is provided with illuminating lamp plate (15), storage box (2) has the storage cavity that opens towards below, the below of storage box (2) is provided with the lift plate (8) of the storage cavity can go in and out, The utility model relates to a battery box (1), the 9. The surveying device of the communication underground optical cable according to claim 8, a control switch (5) is arranged on the top of the control box (16), the battery (18) is electrically connected with the control switch (5), and the control switch (5) is electrically connected with the display screen (4), the first electric telescopic rod (7), the motor (10), the second electric telescopic rod (11), the third electric telescopic rod (12), the lighting lamp plate (15) and the second lighting lamp strip (801) respectively.

10. The survey apparatus of the communication underground optical cable according to claim 9, characterized by, The second camera (802) and the first camera (1401) are electrically connected with the display screen (4) through a controller.