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Weighted adaptive threshold estimating method and its application to Satellite-to-Ground optical communications

机译:加权自适应门限估计方法及其在星地光学通信中的应用

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摘要

In this paper, a weighted adaptive threshold estimating method is proposed to deal with long and deep channel fades in Satellite-to-Ground optical communications. During the channel correlation interval where there are sufficient correlations in adjacent signal samples, the correlations in its change rates are described by weighted equations in the form of Toeplitz matrix. As vital inputs to the proposed adaptive threshold estimator, the optimal values of the change rates can be obtained by solving the weighted equation systems. The effect of channel fades and aberrant samples can be mitigated by joint use of weighted equation systems and Kalman estimation. Based on the channel information data from star observation trails, simulations are made and the numerical results show that the proposed method have better anti-fade performances than the D-value adaptive threshold estimating method in both weak and strong turbulence conditions.
机译:本文提出了一种加权自适应阈值估计方法,以处理卫星到地面光通信中的长通道和深通道衰落。在相邻信号样本中有足够相关性的信道相关性间隔期间,其变化率的相关性由Toeplitz矩阵形式的加权方程式描述。作为建议的自适应阈值估计器的重要输入,可以通过求解加权方程组来获得变化率的最佳值。可以通过结合使用加权方程系统和卡尔曼估计来减轻信道衰落和异常采样的影响。基于恒星观测通道的信道信息数据,进行了仿真,数值结果表明,该方法在弱湍流和强湍流条件下均具有比D值自适应阈值估计方法更好的抗褪色性能。

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