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Common Pilot Signal Design for Non-Orthogonal Multiple Access in 5G

机译:5G中非正交多路访问的通用导频信号设计

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In this paper, common pilot signal design for channel estimation of users with different channel strengths simultaneously served by non-orthogonal multiple access (NOMA) is considered. The problem is approached based on two design criteria: minimization of weighted sum mean-square error (MSE) and maximization of weighted sum conditional mutual information (CMI) between the channel and the received signal given the pilot signal. It is shown that the two design problems reduce to semi-definite programming (SDP). Furthermore, in the practical case of two-user clustering, closed-form solutions to the two problems are obtained under some additional assumption on the channel's statistical information. Numerical result shows that the pilot signal design exploiting the multi-group structure of NOMA yields better channel estimation performance than conventional design.
机译:本文考虑了非正交多址接入(NOMA)同时服务于具有不同信道强度的用户的信道估计的通用导频信号设计。基于两个设计标准来解决该问题:在给定导频信号的情况下,信道与接收信号之间的加权和均方误差(MSE)最小化和加权和条件互信息(CMI)最大化。结果表明,这两个设计问题都简化为半定编程(SDP)。此外,在两用户群集的实际情况下,在对信道的统计信息进行某些附加假设的情况下,可以获得针对这两个问题的闭式解决方案。数值结果表明,采用NOMA的多组结构的导频信号设计比常规设计具有更好的信道估计性能。

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