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Optimal parametric feedforward estimation of frequency-selective fading radio channels

机译:选频衰落无线电信道的最优参数前馈估计

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摘要

Estimation of time-varying dispersive radio channels is one of the most important tasks of receiver synchronisation. State-of-the-art adaptive estimators employing decision feedback suffer from error propagation and limited robustness against faster fading. In this paper, the optimal feedforward channel estimator using only known training symbols is systematically derived. Statistical channel information is assumed to be available. For moderately rapid fading channels (snapshot assumption), the optimal estimator is shown to be divided into the two subtasks of maximum-likelihood acquisition and subsequent Wiener filtering of the acquired quantities. If perfect training sequences resulting in optimal performance are used, the Wiener filtering operation collapses into independent filtering of the individual acquired tap estimates, and the resulting channel estimator becomes efficient and flexible. The performance of the optimal estimator is evaluated for important cases. A design example of a near-optimal HF channel estimator/receiver is discussed. Linear interpolation is used to reduce the computational complexity of receiver coefficient adjustment. Simulation results confirm the superiority and robustness of feedforward synchronization having near-optimal performance at reduced complexity.
机译:估计随时间变化的分散无线电信道是接收机同步的最重要任务之一。采用决策反馈的最先进的自适应估计器遭受误差传播和针对较快衰落的有限鲁棒性的困扰。在本文中,系统地推导了仅使用已知训练符号的最优前馈信道估计器。假定统计信道信息可用。对于中等快速衰落的信道(快照假设),最佳估计器被显示为分为两个子任务:最大似然性获取和随后的维纳滤波。如果使用了导致最佳性能的完美训练序列,则维纳滤波操作将陷入对单独获取的抽头估计的独立滤波中,并且所得的信道估计器将变得高效而灵活。针对重要情况评估了最佳估计器的性能。讨论了近乎最佳的HF信道估计器/接收器的设计示例。线性插值用于减少接收机系数调整的计算复杂度。仿真结果证实了前馈同步的优越性和鲁棒性,并且在降低复杂性的同时具有接近最佳的性能。

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