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A kind of installation method of self-adaptive windproof communication base station

A technology of communication base station and installation method, which is applied in wind power generation, building type, wind turbine and other directions, can solve the problems of communication base station falling off, easily broken by force, etc., and achieves the effect of reducing height and wind resistance.

Active Publication Date: 2022-08-05
中国通信建设北京工程局有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The invention provides an installation method of an adaptive windproof communication base station, which can solve the problems that the communication base station in the prior art is easy to be loose and toppled, and is easy to be broken when encountering a strong wind

Method used

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  • A kind of installation method of self-adaptive windproof communication base station
  • A kind of installation method of self-adaptive windproof communication base station
  • A kind of installation method of self-adaptive windproof communication base station

Examples

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Effect test

Embodiment 1

[0051] like Figure 1 to Figure 4 As shown, an embodiment of the present invention provides an installation method of an adaptive windproof communication base station, the communication base station includes a transceiver device 11, and also includes a support device, a fixing device and a weight:

[0052] The support device includes a base rod 10 and a support rod 101, the support rod 101 is coaxially fixed on the base rod 10, the support rod 101 is located below the base rod 10, and the transceiver equipment 11 is fixed on the base rod 10;

[0053] The fixing device includes a longitudinal rod 30, a flange 31, a pressing plate 60, a pressing bolt 61 and a fastening bolt 62, the longitudinal rod 30 is fixedly arranged on the flange 31, and the longitudinal rod 30 is arranged coaxially with the flange 31 , the longitudinal rod 30 and the flange 31 are both hollow structures, the longitudinal rod 30 penetrates into the flange 31, and the upper end of the longitudinal rod 30 is ...

Embodiment 2

[0071] In the first embodiment, since the support rod 101 is kept at the top end when the wind is small or no wind, and the hydraulic oil will be lost, when the hydraulic oil is lost, the weight 40 will move down, which will cause the cable 42 to be taut, The cable 42 is easily worn or damaged. In addition, after the hydraulic oil is lost, since the support rod 101 cannot move up, and the cable 42 has no extra margin for the weight 40 to move down, the hydraulic oil pressure is reduced, and the pressure cannot be effectively maintained. Therefore, in this embodiment, the upper end of the weight 40 is fixedly provided with a telescopic portion 41, one end of the cable 42 is fixedly connected to the rotating sleeve 20, and the other end is fixedly connected to the telescopic portion 41. The portion 41 has an amount of expansion and contraction when subjected to an external force. After the hydraulic oil is lost, the hydraulic oil level drops slightly, and the pressure of the hyd...

Embodiment 3

[0074] On the basis of the first or second embodiment, when the wind force is small, the structural strength can meet the requirements, and the rotating sleeve 20 does not need to be rotated. The load on the base rod 10 increases, which is easy to cause damage to the base rod 10 or the support rod 101 and other components. In order to prevent the above problems, such as Figure 7 to Figure 9 As shown, this embodiment also includes a first pawl 52, a second pawl 54, a first return spring 53 and a second return spring 55;

[0075] The connecting rod 51 is rotatably arranged on the rotating sleeve 20 along the circumferential direction of the rotating sleeve 20 , and the rotating sleeve 20 is provided with a first ratchet tooth slot matched with the first pawl 52 and a first ratchet groove matched with the second pawl 54 . Two ratchet tooth slots; the connecting rod 51 is provided with a receiving groove, the first ratchet 52 and the second ratchet 54 can be rotatably arranged in...

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Abstract

The invention discloses an installation method of an adaptive windproof communication base station, which belongs to the field of communication equipment. The device includes transceiver equipment, and also includes: a support device, which includes a base rod and a support rod, and the support rod is coaxially fixed on the base rod; the fixing device includes a longitudinal rod, a flange, a pressing plate, a pressing bolt and a tightening rod. The longitudinal rod is fixed on the flange, the longitudinal rod and the flange are hollow structures; the support rod can be sealed and slidable in the longitudinal rod; the longitudinal rod and the flange are filled with hydraulic oil. The upper end of the flange plate is provided with a plurality of elastic lifting parts; the pressure plate is installed on the foundation through fastening bolts, one end of the pressure plate is pressed on the flange plate, and the pressure plate is provided with threaded holes. The present invention can maintain the tightening state of the pressing bolts, so that the pressing bolts can be kept in the pressing state at all times, and the loosening of the pressing bolts can be avoided, resulting in the offset and loosening of the flange.

Description

technical field [0001] The invention relates to the field of communication equipment, in particular to an installation method of an adaptive windproof communication base station. Background technique [0002] At present, many communication base stations are generally fixedly installed on the roof of the building through structures such as brackets, which can increase the communication range and rationally use the space on the top floor. However, the existing roof base station poles are generally fixed by means of steel pipes and support, and expansion screws are driven into the wall or floor slab. And the risk of rain and water leakage, it is easy to damage the roof insulation layer, waterproof layer and other defects, and because the overall height of the entire bracket and the communication equipment is high, the high-altitude wind is strong, and the wind direction and wind force are different at different times. The forces are different, and the bolts are subject to the ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): E04H12/00E04H12/18E04H12/22F03D9/20F03D9/45
CPCE04H12/00E04H12/182E04H12/22E04H12/2269F03D9/20F03D9/45Y02B10/30
Inventor 不公告发明人
Owner 中国通信建设北京工程局有限公司
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