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Approximate Best Linear Unbiased Channel Estimation for Multi-Antenna Frequency Selective Channels with Applications to Digital TV systems

机译:用于数字电视系统的多天线频率选择性通道的近似最佳线性无偏见信道估计

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We provide an iterative and a non-iterative channel impulse response (CIR) estimation algorithm for communication receivers with multiple-antenna. Our algorithm is best suited for communication systems which utilize a periodically transmitted training sequence within a continuous stream of information symbols, and the receivers for this particular system are expected work in a severe frequency selective multipath environment with long delay spreads relative to the length of the training sequence. The iterative procedure calculates the (semi-blind) Best Linear Unbiased Estimate (BLUE) of the CIR. The non-iterative version is an approximation to the BLUE CIR estimate, denoted by a-BLUE, achieving almost similar performance, with much lower complexity. Indeed we show that, with reasonable assumptions, a-BLUE channel estimate can be obtained by using a stored copy of a pre-computed matrix in the receiver which enables the use of the initial CIR estimate by the subsequent equalizer tap weight calculator. Simulation results are provided to demonstrate the performance of the novel algorithms for 8-VSB ATSC Digital TV system. We also provide a simulation study of the robustness of the a-BLUE algorithm to timing and carrier phase offsets.
机译:我们提供了一种具有多天线的通信接收机的迭代和非迭代信道脉冲响应(CIR)估计算法。我们的算法最适合于在连续的信息符号中利用周期性传输的训练序列,并且该特定系统的接收器是预期的,在严格的频率选择性多径环境中,长延迟相对于长度扩展训练顺序。迭代程序计算CIR的(半盲)最佳线性无偏见的估计(蓝色)。非迭代版本是蓝CIR估计的近似,由蓝色表示,实现几乎类似的性能,复杂程度较低。事实上,我们表明,通过合理的假设,可以通过使用接收器中的预计算机矩阵的存储副本来获得A蓝频道估计,这使得能够通过随后的均衡器抽头权重计算器使用初始CIR估计。提供了仿真结果以证明8-VSB ATSC数字电视系统的新型算法的性能。我们还提供了对A-Blue算法到定时和载波相位偏移的鲁棒性的仿真研究。

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