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A novel channel estimation and tracking method for wireless OFDM systems based on pilots and Kalman filtering

机译:基于导频和卡尔曼滤波的无线OFDM系统信道估计和跟踪新方法

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摘要

A novel on-line channel estimation and tracking method for wireless OFDM systems based on comb-type pilots is developed. Long training sequences are used to estimate the channel response in the frequency domain, and a scalar Kalman filtering scheme is designed to refine the channel estimation. To track the channel variations during a long burst packet, pilots estimated via vector Kalman filtering are used to interpolate linearly and modify the estimated channel response. Both channel AWGN and state variable noise variance are adaptively estimated. Furthermore, to overcome phase changes across symbols owing to the frequency offset estimation error, a pilot based phase compensation scheme is incorporated. The complete algorithm can be processed in real time with much better performance than training sequence based or pilot based channel estimation methods. Simulation results based on the IEEE 802.11a wireless LAN standard are presented.
机译:提出了一种基于梳状导频的无线OFDM系统在线信道估计和跟踪方法。长训练序列用于估计频域中的信道响应,并且设计了标量卡尔曼滤波方案来完善信道估计。为了跟踪长脉冲包中的信道变化,通过矢量卡尔曼滤波估计的导频用于线性内插并修改估计的信道响应。自适应地估计信道AWGN和状态变量噪声方差。此外,为了克服由于频率偏移估计误差而导致的跨符号的相位变化,引入了基于导频的相位补偿方案。与基于训练序列或基于导频的信道估计方法相比,完整算法可以实时进行处理,性能更高。给出了基于IEEE 802.11a无线局域网标准的仿真结果。

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