Scan and wait combining (SWC): a switch and examine strategy with a performance-delay tradeoff

Hong-Chuan Yang, M. Simon, Mohamed-Slim Alouini
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引用次数: 29

Abstract

This paper proposes and analyzes an alternative form of switch and examine combining, namely one that waits for a channel coherence time if all the available diversity paths fail to meet a predetermined minimum quality requirement. This scanning through the available diversity paths followed by waiting is repeated indefinitely until a path with an acceptable quality is found. The performance of the resulting "scan and wait" combining (SWC) scheme is studied in terms of its average probability of error and ergodic capacity. The paper looks also into (i) the delay associated with SWC by deriving the statistics of the waiting time needed before satisfactory transmission occurs and (ii) the underlying complexity by studying the statistics of the number of diversity paths estimated per channel access. Selected numerical examples show that, for a fixed average number of channel estimates per channel access, SWC outperforms traditional diversity combining schemes at the expense of a negligible time delay.
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扫描和等待组合(SWC):一种性能延迟折衷的切换和检查策略
本文提出并分析了一种替代形式的开关和检验组合,即当所有可用的分集路径不能满足预定的最低质量要求时,等待信道相干时间。这种扫描通过可用的分集路径,然后等待,无限重复,直到找到具有可接受质量的路径。从平均误差概率和遍历容量两个方面研究了“扫描与等待”组合方案的性能。本文还研究了(i)通过推导令人满意的传输发生之前所需等待时间的统计数据,与SWC相关的延迟,以及(ii)通过研究每个信道访问估计的分集路径数量的统计数据,潜在的复杂性。所选的数值示例表明,对于每个信道接入的平均信道估计数量固定,SWC优于传统的分集组合方案,而延迟可以忽略不计。
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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