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Two-Step Approach to Time-Domain Channel Estimation for Wideband Millimeter Wave Systems With Hybrid Architecture

机译:混合架构的宽带毫米波系统时域信道估计的两步法

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摘要

We consider the problem of time domain (TD) channel estimation for wideband millimeter wave systems with a hybrid architecture. TD channel estimators can exploit both angular and delay domain sparsity, and can perform better than frequency domain (FD) estimators exploiting only angular domain sparsity; however, the former usually require a heavier computational load than the latter. To overcome this difficulty, we propose an efficient, two-step TD channel estimator: in the first step, an effective channel incorporated with beamforming, array responses, and pulse shaping is estimated by the least squares (LS) method; in the second, the desired channel is estimated via an orthogonal matching pursuit (OMP) algorithm. It is analytically shown that the proposed two-step method can yield the same outputs as the original single-step TD estimator when an identity pulse shaping matrix and a unitary pilot matrix are employed. The proposed algorithm is simpler to implement than the other estimators based on OMP, because its sensing matrix is block-diagonal. The simulation results demonstrate that complexity reduction of the proposed method is achieved without (or with minor) performance degradation.
机译:我们考虑了具有混合架构的宽带毫米波系统的时域(TD)信道估计问题。 TD信道估计器可以利用角域和延迟域稀疏性,并且比仅利用角域稀疏性的频域(FD)估计器性能更好;但是,前者通常比后者需要更大的计算负荷。为了克服这一困难,我们提出了一种有效的两步TD信道估计器:第一步,通过最小二乘(LS)方法估计结合了波束成形,阵列响应和脉冲整形的有效信道;第二,通过正交匹配追踪(OMP)算法估计所需的信道。分析表明,当采用同一脉冲整形矩阵和a导频矩阵时,所提出的两步法可以产生与原始单步TD估计器相同的输出。该算法比其他基于OMP的估计器易于实现,因为它的感知矩阵是块对角线的。仿真结果表明,在不降低性能(或降低性能)的前提下,降低了所提方法的复杂度。

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