Stochastic Maximum Likelihood Estimation of Angle- and Delay-Domain Propagation Parameters

C. Ribeiro, A. Richter, V. Koivunen
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引用次数: 24

Abstract

In this paper we derive an estimator for both time-delay and angular channel propagation parameters of the diffuse scattering component that is frequently observed in channel sounding measurements. The joint angular-delay model leads to correlation matrix with high dimensionality, which prevents direct implementation of a maximum-likelihood (ML) estimator using finite precision arithmetics and finite memory resources. We derive low complexity methods for computing the ML estimates that exploit the structure of the covariance matrices. The estimator is based on a two step procedure: first, the parameters of the power delay profile are estimated, as well as measurement noise power. Then, using the estimated time-delay parameters, the parameters of the angular distributions are estimated. We present simulation results and compare the estimated time-delay and angular distributions to the actual distributions, showing that high precision estimates are obtained
角域和延迟域传播参数的随机极大似然估计
本文推导了信道探测中经常观测到的漫射散射分量的时延和信道角传播参数的估计量。联合角延迟模型导致相关矩阵具有高维,这阻碍了使用有限精度算法和有限存储资源直接实现最大似然估计。我们推导了利用协方差矩阵结构计算ML估计的低复杂度方法。该估计方法分为两步:首先对功率延迟曲线参数进行估计,同时测量噪声功率。然后,利用估计的时滞参数,估计出角分布的参数。我们给出了仿真结果,并将估计的时延和角分布与实际分布进行了比较,表明得到了高精度的估计
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