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Signal intensity prediction method and system based on wireless propagation model correction

A wireless propagation model and wireless signal strength technology, applied in transmission systems, transmission monitoring, electrical components, etc., can solve the problems of inability to obtain coefficient correction, difficult to obtain coefficients, fragmentation, etc., to avoid the effect of manual repeated adjustment

Active Publication Date: 2015-05-13
GUANGDONG PLANNING & DESIGNING INST OF TELECOMM
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AI Technical Summary

Problems solved by technology

[0005] With the development of wireless communication, the current wireless propagation model can no longer meet the planning and design requirements of the communication network
In the calibration of traditional wireless propagation model coefficients, design and planning personnel are required to continuously intervene manually, and the calibration accuracy is too dependent on personal engineering experience, thus requiring high professional quality of personnel; the traditional calibration method separates the relationship between various coefficients, according to The importance in the specific project planning is determined in turn, so it is difficult to obtain the coefficients that meet the engineering requirements, let alone obtain the optimal coefficient correction; therefore, the current wireless propagation model cannot accurately predict the wireless signal strength, so it is impossible to predict the accurate The degree of signal attenuation cannot provide highly reliable data for the planning and design of communication engineering

Method used

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  • Signal intensity prediction method and system based on wireless propagation model correction
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Embodiment Construction

[0018] The present invention will be described in further detail below in conjunction with the embodiments and accompanying drawings, but the embodiments of the present invention are not limited thereto.

[0019] like figure 1 Shown, is a kind of signal strength prediction method based on wireless propagation model correction of the present invention, comprises the following steps:

[0020] S11. Input preset base station data into a preset wireless propagation model to establish a least squares model;

[0021] First obtain base station data, including antenna configuration and base station location, and conduct drive test continuous wave test to collect test data;

[0022] When selecting the location of the base station, it is generally possible to choose a very representative place for the experimental site of the propagation model correction; for example, you can choose the university town as the student area, the business circle as the urban area, etc. At the same time, c...

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Abstract

The invention provides a signal intensity prediction method and system based on wireless propagation model correction. The method includes the following steps: inputting the preset base station data to a preset wireless propagation model and building a least square model; solving the least square model through a coordinate descent method and obtaining an optimal correction coefficient; and adjusting the parameters of the wireless propagation model according to the optimal correction efficient and conducting wireless signal intensity prediction according to the wireless propagation model whose parameters are adjusted. The signal intensity prediction method and system based on the wireless propagation model correction can rapidly realize wireless model coefficient correction and accurately predicts the intensity of wireless signals.

Description

technical field [0001] The invention relates to the field of wireless communication, in particular to a signal strength prediction method based on wireless propagation model correction and a signal strength prediction system based on wireless propagation model correction. Background technique [0002] The mobile wireless communication system relies on the radio to transmit signals between the base station and the user to achieve the purpose of communication, and the radio in the mobile wireless communication system generally propagates under irregular terrain conditions. Therefore, the propagation of radio between the base station and the user (or between the transmitter and the receiver) will encounter various complex terrains, such as the urban core area with high-rise buildings, the suburbs with dense plants, and the terrain of mountains and mountains. Mountainous areas, etc., even leaves, street lamps, etc. These factors make mobile wireless channels unpredictable and e...

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Application Information

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IPC IPC(8): H04B17/391
Inventor 肖恒辉丁胜培李炯城陈运动管学锋
Owner GUANGDONG PLANNING & DESIGNING INST OF TELECOMM
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