用反卷积法恢复RET相位函数

H. Cui, J. Richter, M. Al-Nuaimi, R. Caldeirinha
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引用次数: 2

摘要

植被的影响已经成为无线通信链路设计的一个重要方面。近年来,辐射能量传输理论(RET)作为一种可靠的工具被应用于预测植被中无线电波的传播。所建立的RET预测模型需要4个独立的输入参数,目前只能从一次测量中建立,从而限制了其准确性。一个称为相函数的独立测量可以很容易地独立产生4个输入参数中的2个,这大大增加了这些参数的精度。然而,影响相函数测量的一个主要因素是接收天线的辐射方向图。测量曲线将是天线辐射方向图与植被介质相函数卷积的结果。因此,测量曲线需要经过反褶积过程,然后才能从中导出任何RET输入参数。本文提出了利用最优补偿反褶积方法开发的反褶积方法。使用模拟信号形状和在消声室中设置的植被中测量的信号来演示反卷积。本文讨论了不同情况下的最优补偿滤波,并给出了相关曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Restoration of the RET Phase Function Using Deconvolution
The influence of vegetation has become an important aspect of the design of wireless communication links. In recent years theory of Radiative Energy Transfer (RET) has been adapted as a reliable tool to predict the radiowave propagation through and near vegetation. The developed RET prediction model requires 4 input independent parameters, which so far had to be established from one measurement only, thus limiting their accuracy. An independent measurement which is termed the phase function can readily yield 2 of the 4 input parameters independently, which significantly increases the accuracy of these parameters. However one major factor influencing the phase function measurement is the radiation pattern of the receiving antenna. The measured curve will be the result of the convolution of the antenna radiation pattern and the phase function of the vegetation medium. The measurement curve therefore needs to undergo a deconvolution process before any RET input parameters can be derived from it. This paper presents the deconvolution method developed using optimal compensation deconvolution methods. Deconvolution is demonstrated using both simulation signal shapes and those measured in vegetation set up in the anechoic chamber. This paper discusses different cases of optimal compensation filtering with the relative curves shown.
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