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MIMO-STBC Based Multiple Relay Cooperative Communication Over Time-Selective Rayleigh Fading Links With Imperfect Channel Estimates

机译:具有不完善信道估计的基于时间选择瑞利衰落链路的基于MIMO-STBC的多中继协作通信

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This paper analyzes the effect of time-selective fading arising due to node mobility and imperfect channel estimates on the end-to-end performance of multiple-input multiple-output space-time block coded multiple relay cooperative communication systems. Both dual-phase and multi-phase selective decode-and-forward relaying protocols are considered for the end-to-end communication in a multiple relay cooperative system, followed by presentation of complete analyses for the same. For each protocol, closed-form expressions are derived for the per-frame average pair-wise error probability and asymptotic error floor over independent and nonidentical time-selective Rayleigh fading links. A framework is also developed for obtaining the optimal source relay power factors for each of the above protocols, which significantly improve the end-to-end reliability of the system for a given power budget. It is shown that both the multirelay systems achieve the full diversity order (DO) when all the nodes are static and perfect channel estimates are available at each receiving node. The DO of the system reduces to that of the direct source–destination link for a scenario when only the relays are mobile. Interestingly, however, in other mobile scenarios, both the systems are limited by an asymptotic error floor with increasing signal to noise ratio. Further, the impact of DO of the source–relay and relay–destination links on the optimal source–relay power allocation is also explicitly demonstrated. Simulation results yield several important insights into the end-to-end error performance for different mobility conditions and also validate the derived analytical results.
机译:本文分析了由于节点移动性和信道估计不完善引起的时间选择衰落对多输入多输出空时分组编码多中继协作通信系统的端到端性能的影响。多相协作系统中的端到端通信都考虑了双相和多相选择性解码转发中继协议,然后提供了完整的分析说明。对于每种协议,在独立和不相同的时间选择性瑞利衰落链路上,针对每帧平均成对错误概率和渐近错误基底,得出闭式表达式。还开发了一种框架,用于获取上述每个协议的最佳源中继功率因数,对于给定的功率预算,这可以显着提高系统的端到端可靠性。结果表明,当所有节点都是静态的并且在每个接收节点上都可获得完美的信道估计时,两个多中继系统均达到全分集阶数(DO)。对于只有中继器可移动的情况,系统的DO减少为直接源-目标链路的DO。然而,有趣的是,在其他移动方案中,两个系统都受到渐进误差底限的限制,且信噪比不断提高。此外,还明确展示了源-中继和中继-目标链路的DO对最佳源-中继功率分配的影响。仿真结果对不同移动性条件下的端到端错误性能提供了一些重要的见解,并验证了得出的分析结果。

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