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Direction Finding Estimators of Cyclostationary Signals in Array Processing for Microwave Power Transmission

机译:微波功率传输阵列处理中循环平稳信号的测向估计器

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摘要

A solar power satellite is paid attention to as a clean, inexhaustible large- scale base-load power supply. The following technology related to beam control is used: A pilot signal is sent from the power receiving site and after direction of arrival estimation the beam is directed back to the earth by same direction. A novel direction-finding algorithm based on linear prediction technique for exploiting cyclostationary statistical information (spatial and temporal) is explored. Many modulated communication signals exhibit a cyclostationarity (or periodic correlation) property, corresponding to the underlying periodicity arising from carrier frequencies or baud rates. The problem was solved by using both cyclic second-order statistics and cyclic higher-order statistics. By evaluating the corresponding cyclic statistics of the received data at certain cycle frequencies, we can extract the cyclic correlations of only signals with the same cycle frequency and null out the cyclic correlations of stationary additive noise and all other co-channel interferences with different cycle frequencies. Thus, the signal detection capability can be significantly improved. The proposed algorithms employ cyclic higher-order statistics of the array output and suppress additive Gaussian noise of unknown spectral content, even when the noise shares common cycle frequencies with the non-Gaussian signals of interest. The proposed method completely exploits temporal information (multiple lag ), and also can correctly estimate direction of arrival of desired signals by suppressing undesired signals. Our approach was generalized over direction of arrival estimation of cyclostationary coherent signals. In this paper, we propose a new approach for exploiting cyclostationarity that seems to be more advanced in comparison with the other existing direction finding algorithms.
机译:太阳能卫星是一种清洁,取之不尽,用之不竭的大型基础负荷电源。使用与波束控制有关的以下技术:从受电站点发送导频信号,在到达方向估计之后,波束以相同方向被引导回地球。探索了一种基于线性预测技术的方向性搜索算法,用于循环平稳统计信息(时空)的开发。许多调制的通信信号表现出循环平稳性(或周期性相关性)特性,对应于由载波频率或波特率引起的潜在周期性。通过使用循环二阶统计信息和循环高阶统计信息解决了该问题。通过评估在某些周期频率下接收到的数据的相应周期统计信息,我们可以提取仅具有相同周期频率的信号的周期相关性,并消除固定加性噪声和所有其他具有不同周期频率的同信道干扰的周期相关性。因此,可以显着提高信号检测能力。所提出的算法利用阵列输出的循环高阶统计量,并且抑制了未知频谱含量的加性高斯噪声,即使该噪声与感兴趣的非高斯信号共享公共周期频率也是如此。所提出的方法完全利用了时间信息(多个滞后),并且还可以通过抑制不需要的信号来正确估计所需信号的到达方向。我们的方法在循环平稳相干信号的到达方向估计上得到了推广。在本文中,我们提出了一种利用循环平稳性的新方法,与其他现有的测向算法相比,该方法似乎更为先进。

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