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A Limited Feedback Joint Precoding for Amplify-and-Forward Relaying

机译:用于放大转发中继的有限反馈联合预编码

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摘要

This paper deals with the practical precoding design for a dual hop downlink with multiple-input multiple-output (MIMO) amplify-and-forward relaying. First, assuming that full channel state information (CSI) of the two hop channels is available, a suboptimal dual hop joint precoding scheme, i.e., precoding at both the base station and relay station, is investigated. Based on its structure, a scheme of limited feedback joint precoding using joint codebooks is then proposed, which uses a distributed codeword selection to concurrently choose two joint precoders such that the feedback delay is considerably decreased. Finally, the joint codebook design for the limited feedback joint precoding system is analyzed, and results reveal that independent codebook designs at the base station and relay station using the conventional Grassmannian subspace packing method is able to guarantee that the overall performance of the dual hop joint precoding scheme improves with the size of each of the two codebooks. Simulation results show that the proposed dual hop joint precoding system using distributed codeword selection scheme exhibits a rate or BER performance close to the one using the optimal centralized codeword selection scheme, while having lower computational complexity and shorter feedback delay.
机译:本文讨论了具有多输入多输出(MIMO)放大转发中继的双跳下行链路的实用预编码设计。首先,假设两个跳变信道的全信道状态信息(CSI)可用,则研究次优的双跳变联合预编码方案,即在基站和中继站处的预编码。根据其结构,提出了一种使用联合码本的有限反馈联合预编码方案,该方案使用分布式码字选择同时选择两个联合预编码器,从而大大降低了反馈延迟。最后,对有限反馈联合预编码系统的联合密码本设计进行了分析,结果表明,采用传统的格拉斯曼子空间打包方法在基站和中继站进行独立的密码本设计能够保证双跳联合的整体性能。预编码方案随着两个码本的大小而提高。仿真结果表明,所提出的采用分布式码字选择方案的双跳联合预编码系统具有接近于最优集中码字选择方案的速率或BER性能,同时具有较低的计算复杂度和较短的反馈延迟。

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