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Performance analysis of adaptive modulation and transmit antenna selection with channel prediction errors and feedback delay

机译:具有信道预测误差和反馈延迟的自适应调制和发射天线选择的性能分析

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摘要

Rate-adaptive modulation and transmit antenna selection require channel knowledge at the transmitter, typically achieved using a feedback communications path from receiver to transmitter. Feedback delay in such systems causes outdated channel knowledge at the receiver and thus suboptimal switching decisions. This study evaluates the effect of degraded switching and proposes a channel prediction scheme to mitigate against delay-induced performance degradation, specifically when deployed in Rayleigh fading channels using maximum ratio combining at the receiver. Shannon capacity expressions are found and then closed form bit-error-rate and average spectral efficiency expressions derived - all derivations supporting arbitrary number of antennas at both receiver and transmitter. These expressions are developed to allow optimal switching boundaries to be determined for M-quadrature amplitude modulation rate adaptation under different degrees of channel prediction error, system arrangement and number of antennas.
机译:速率自适应调制和发射天线的选择需要发射机具备信道知识,通常使用从接收机到发射机的反馈通信路径来实现。在这样的系统中,反馈延迟导致接收器的信道知识过时,从而导致次优的切换决策。这项研究评估了降级切换的影响,并提出了一种信道预测方案来缓解延迟引起的性能下降,特别是在接收机使用最大比合并在瑞利衰落信道中部署时。找到香农容量表达式,然后从误码率和平均频谱效率表达式中得出封闭式-所有推导在接收机和发射机处都支持任意数量的天线。开发这些表达式是为了在信道预测误差,系统布置和天线数量不同的情况下,为M正交幅度调制速率自适应确定最佳切换边界。

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