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Optimal design and placement of pilot symbols for channel estimation

机译:用于信道估计的导频符号的优化设计和放置

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The problem of designing and placing pilot symbols for the estimation of frequency-selective random channels is considered. The channel is assumed to be a block-fading model with finite impulse response (FIR). For both single-input single-output (SISO) and multiple-input multiple-output (MIMO) channels, under the assumption of independent and identical distributed channel taps, the Cramer-Rao bound (CRB) on the mean square error (MSE) of semi-blind channel estimators is derived and minimized with respect to pilot symbols and their placement. It is shown that the optimal strategy is to place pilot symbols satisfying certain orthogonality condition in such a way that data and pilot symbols with higher power are in the middle of the packet. The results also indicate that the optimal pilot placements are independent of channel probability distribution. For constant modulus symbols, we show that the quasi-periodic placement and its generalization in the multiuser case turn out to be optimal. We further consider estimating channels with correlated taps and show that the previous placement strategy is also optimal among orthogonal pilot sequences.
机译:考虑了设计和放置用于估计频率选择性随机信道的导频符号的问题。假定该信道是具有有限脉冲响应(FIR)的块衰落模型。对于单输入单输出(SISO)和多输入多输出(MIMO)通道,在独立且相同的分布式通道抽头的假设下,均方误差(MSE)的Cramer-Rao界限(CRB)关于导频符号及其放置,推导并最小化半盲信道估计器的估计。结果表明,最优策略是将满足一定正交性条件的导频符号放置在数据包的中间,使功率较高的数据和导频符号位于数据包的中间。结果还表明,最佳导频位置与信道概率分布无关。对于恒定模数符号,我们证明了在多用户情况下的准周期位置及其推广是最优的。我们进一步考虑了估计具有相关抽头的信道,并表明先前的放置策略在正交导频序列中也是最佳的。

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