Impact of channel estimation error upon sum-rate in amplify-and-forward two-way relaying systems

Yupeng Jia, A. Vosoughi
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引用次数: 13

Abstract

In this work, we consider the amplify-and-forward (AF) two-way relay network where the two terminals TA, TB exchange their information through a relay node TR in a bi-directional manner and study the impact of the training-based channel estimation upon individual and sum-rate of the two users. We assume that in the multiple-access (MA) phase TA, TB initiate transmission by sending their training symbols to TR, and in the broadcasting (BC) phase TR initiates transmission by sending its own training symbol, followed by an amplified version of the signal received in MA phase. This training symbol facilitates TA and TB to perform self-interference suppression and to estimate the cascaded overall relay channel required for recovery of the data of interest. We derive lower bounds on the training-based individual rates and sum-rate of the two users and investigate the impact of channel estimation errors upon the sum-rate lower bound. Under the total transmit power constraint, we search for the optimal power allocation among the three nodes and optimal power allocation between data and training such that the sum-rate lower bound is maximized. Furthermore, we discuss the relationship between the optimal solutions and the relay location.
扩前双向中继系统中信道估计误差对和速率的影响
在这项工作中,我们考虑了放大转发(AF)双向中继网络,其中两个终端TA, TB通过中继节点TR以双向方式交换信息,并研究了基于训练的信道估计对两个用户的个人和求和速率的影响。我们假设在多址(MA)阶段,TB通过向TR发送自己的训练符号来启动传输,而在广播(BC)阶段,TR通过发送自己的训练符号来启动传输,随后是在MA阶段接收到的放大版本的信号。该训练符号有助于TA和TB执行自干扰抑制,并估计恢复感兴趣数据所需的级联总体中继信道。我们推导了基于训练的个人速率和两个用户的和速率的下界,并研究了信道估计误差对和速率下界的影响。在总发射功率约束下,我们搜索三个节点之间的最优功率分配,以及数据和训练之间的最优功率分配,使求和速率下界最大化。进一步讨论了最优解与继电器位置的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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