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A fast convergence digital pre-distortion of APSK modulations based on joint algorithm

机译:基于联合算法的APSK调制快速收敛数字预失真

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To compensate the nonlinear distortion of signals when high level APSK modulations is applied to satellite communication systems, a fast convergence memoryless digital pre-distortion algorithm is proposed. Based on the Saleh model of satellite high power amplifier (HPA), a joint algorithm for the adaptive parameter estimation is adopted which combines the normalized least mean square (NLMS) and recursive least square (RLS) algorithm. At the beginning of adaptive process RLS is used, and LMS is used when errors are reduced to a certain degree, and hence the factors of HPA models are calculated fast and accurately. Simulations results show that this algorithm converges fast and gets small steady state errors.
机译:为了补偿应用于卫星通信系统的高级APSK调制时信号的非线性失真,提出了一种快速会聚的记忆数字预失真算法。基于卫星高功率放大器(HPA)的SaleH模型,采用了一种用于自适应参数估计的接合算法,其将归一化最小均方(NLMS)和递归最小二乘(RLS)算法组合。在自适应过程开始时,使用RLS,当误差减少到一定程度时,使用LMS,因此快速准确地计算HPA模型的因素。仿真结果表明,该算法会收敛快并获得小稳态误差。

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