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Delay Optimization in Cooperative Relaying with Cyclic Delay Diversity

机译:循环时延分集的协作中继时延优化

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Cooperative relaying has recently been recognized as an alternative to MIMO in a typical multicellular environment. Inserting random delays at the nonregenerative fixed relays further improve the system performance. However, random delays result in limited performance gain from multipath diversity. In this paper, two promising delay optimization schemes are introduced for a multicellular OFDM system with cooperative relaying with stationary multiple users and fixed relays. Both of the schemes basically aim to take the most advantages of the potential frequency selectivity by inserting predetermined delays at the relays, in order to further improve the system performance (coverage and throughput). Evaluation results for different multipath fading environments show that the system performance with delay optimization increases tremendously compared with the case of random delay.
机译:最近,在典型的多蜂窝环境中,协作中继已被视为MIMO的替代方案。在非再生式固定继电器处插入随机延迟可进一步提高系统性能。但是,随机延迟会导致多径分集带来的有限性能提升。在本文中,针对具有固定多用户和固定中继的协作中继的多蜂窝OFDM系统,介绍了两种有希望的延迟优化方案。两种方案的基本目的都是通过在继电器上插入预定的延迟来利用潜在的频率选择性的最大优势,以便进一步提高系统性能(覆盖范围和吞吐量)。对不同的多径衰落环境的评估结果表明,与随机延迟相比,具有延迟优化的系统性能大大提高。

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