Receiving performance assessment method and device of directional antenna

A technology of directional antenna and receiving performance, applied in the field of communication

Active Publication Date: 2018-07-20
上海鸿洛通信电子有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The existing antenna TIS (Total Isotropic Sensitivity, Total Isotropic Sensitivity) evaluation method is mainly used to evaluate the receiving performance of isotropic antennas (that is, omnidirectional antennas). However, with the rapid development of the communication field, directional antennas It has been gradually applied in satellite communications and some directional communications. Due to the strong directivity of the antenna direction of the directional antenna, the existing antenna TIS evaluation method is no longer suitable for evaluating the receiving performance of the directional antenna.

Method used

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  • Receiving performance assessment method and device of directional antenna
  • Receiving performance assessment method and device of directional antenna
  • Receiving performance assessment method and device of directional antenna

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0048] see figure 1 The flow chart of a receiving performance evaluation method of a directional antenna shown includes the following steps:

[0049] Step S102, detecting sensitivity test values ​​of the directional antenna to be tested at each test position; the azimuth angle and / or inclination angle of different test positions are different.

[0050] The anechoic turntable in the OTA test system can move the directional antenna to different Theta angles (ie tilt angles) and Phi angles (ie azimuth angles) in sequence. The azimuth angles and / or tilt angles of different test positions are different. All locations need to measure the sensitivity test value of the directional antenna, and record the results. For example, when testing a directional antenna, it is assumed that the Theta angle is set from 0 degrees to 180 degrees, and each 30 degrees is a step length of 6 steps; the Phi angle is from 0 degrees to 360 degrees, and each 30 degrees is a step length. , a total of 12 s...

Embodiment 2

[0077] Corresponding to the method for evaluating the receiving performance of a directional antenna provided in the foregoing embodiments, this embodiment provides a device for evaluating the receiving performance of a directional antenna, see image 3 A structural block diagram of a receiving performance evaluation device for a directional antenna shown, including the following modules:

[0078] The sensitivity detection module 302 is used to detect the sensitivity test value of the directional antenna to be tested at each test position; the azimuth and / or inclination angle of different test positions are different;

[0079] Weight lookup module 304, is used for looking up the weight corresponding to each test position;

[0080] The receiving performance evaluation module 306 is configured to evaluate the receiving performance of the directional antenna according to each test position of the directional antenna, the sensitivity test value and the weight corresponding to each...

Embodiment 3

[0089] Corresponding to the foregoing embodiments, this embodiment provides a terminal, the terminal includes a memory and a processor, the memory is used to store a program that supports the processor to execute the method for evaluating the receiving performance of a directional antenna provided in Embodiment 1, and the processor is controlled by configured to execute a program stored in memory. The terminal can be directly applied to the OTA test system, and evaluate the directivity according to each test position of the directional antenna, the first sensitivity test value and the second sensitivity test value corresponding to each test position, and the weight corresponding to each test test position Antenna reception performance.

[0090] Further, this embodiment also provides a computer storage medium for storing computer software instructions used in the method for evaluating the receiving performance of a directional antenna provided in Embodiment 2.

[0091] Figur...

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Abstract

The invention provides the receiving performance assessment method and device of a directional antenna and relates to the communication technology field. The method comprises the following steps of detecting the sensitivity test value of the directional antenna to be tested at each test position, wherein the azimuth angles and/or angles of inclination at different test positions are different; searching weight corresponding to each test position; and according to each test position, the sensitivity test value corresponding to each test position and the weight, assessing the receiving performance of the directional antenna. In the invention, the receiving performance of the directional antenna can be reasonably and reliably assessed.

Description

technical field [0001] The invention relates to the field of communication technology, in particular to a method and device for evaluating the receiving performance of a directional antenna. Background technique [0002] In order to ensure the reliability of the antenna and to apply the antenna reasonably to the market, it is necessary to evaluate the reception performance of the antenna. The existing antenna TIS (Total Isotropic Sensitivity, Total Isotropic Sensitivity) evaluation method is mainly used to evaluate the receiving performance of isotropic antennas (that is, omnidirectional antennas). However, with the rapid development of the communication field, directional antennas It has been gradually applied to satellite communications and some directional communications. Due to the strong directivity of the antenna direction of the directional antenna, the existing antenna TIS evaluation method is no longer suitable for evaluating the receiving performance of the directi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H04B17/29
CPCH04B17/29
Inventor 张妍杨晓魏耀德孔庆辉
Owner 上海鸿洛通信电子有限公司
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