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Complex Amplitudes Tracking Loop for multipath channel estimation in OFDM systems under slow to moderate fading

机译:慢速至中度衰落下OFDM系统中多径信道估计的复振幅跟踪环路

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This paper deals with multipath channel estimation for Orthogonal Frequency-Division Multiplexing systems under slow to moderate fading conditions. Most of the conventional methods exploit only the frequency-domain correlation by estimating the channel at pilot frequencies, and then interpolating the channel frequency response. More advanced algorithms exploit in addition the time-domain correlation, by employing Kalman filters based on the approximation of the time-varying channel. Adopting a parametric approach and assuming a primary acquisition of the path delays, channel estimators have to track the complex amplitudes of the paths. In this perspective, we propose a less complex algorithm than the Kalman methods, inspired by second-order Phase-Locked Loops. An error signal is created from the pilot-aided Least-Squares estimates of the complex amplitudes, and is integrated by the loop to carry out the final estimates. We derive closed-form expressions of the mean squared error of the algorithm and of the optimal loop coefficients versus the channel state, assuming a Rayleigh channel with Jakes' Doppler spectrum. The efficiency of our reduced complexity algorithm is demonstrated, with an asymptotic mean squared error lower than the first-order auto-regressive Kalman filters reported in the literature, and almost the same as a second-order Kalman-based algorithm.
机译:本文讨论了在慢到中等衰落条件下正交频分复用系统的多径信道估计。大多数常规方法通过在导频处估计信道,然后对信道频率响应进行内插,仅利用频域相关性。通过使用基于时变信道近似的卡尔曼滤波器,更高级的算法还利用时域相关性。采用参数方法并假定主要获取路径延迟,信道估计器必须跟踪路径的复杂幅度。从这个角度出发,我们提出了一种比Kalman方法更简单的算法,其灵感来自于二阶锁相环。从复振幅的飞行员辅助最小二乘估计中创建一个误差信号,并通过环路对其进行积分以执行最终估计。假设瑞利信道具有Jakes多普勒频谱,我们得出算法均方误差和最佳环路系数与信道状态的均方表达式。证明了我们降低复杂度的算法的效率,其渐近均方误差低于文献中报道的一阶自回归卡尔曼滤波器,并且与基于二阶卡尔曼算法几乎相同。

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