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Multiple-Symbol Detection Scheme for IEEE 802.15.4c MPSK Receivers over Slow Rayleigh Fading Channels

机译:用于IEEE 802.15.4C MPSK接收器的多符号检测方案在慢速瑞利衰落通道上的MPSK接收器

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摘要

Although the full multiple-symbol detection (MSD) for IEEE 802.15.4c multiple phase shift keying (MPSK) receivers gives much better performance than the symbol-by-symbol detection (SBSD), its implementation complexity is extremely heavy. We propose a simple MSD scheme based on two implementation-friendly but powerful strategies. First, we find the best and second-best decisions in each symbol position with the standard SBSD procedure, and the global best decision is frozen. Second, for the remaining symbol positions, only the best and second-best symbol decisions, not all the candidates, are jointly searched by the standard MSD procedure. The simulation results indicate that the packet error rate (PER) performance of the simplified MSD scheme is almost the same as that of the full scheme. In particular, at PER of 1×10−3, no more than 0.2 dB performance gap is observed if we just increase the observation window length N to 2. However, the number of decision metrics needed to be calculated is reduced from 256 to 2. Thus, much balance gain between implementation complexity and detection performance is achieved.
机译:虽然IEEE 802.15.4c的全多符号检测(MSD)多相移位键控(MPSK)接收器的性能比符号符号检测(SBSD)提供更好的性能,但其实现复杂性非常沉重。我们提出了一个简单的MSD计划,基于两种实施友好但强大的策略。首先,我们在每个符号位置中找到了标准SBSD程序的最佳和第二个最佳决策,并将全球最佳决策冻结。其次,对于剩余的符号位置,仅由标准MSD过程共同搜索最佳和最佳的符号决策,而不是所有候选者。仿真结果表明,简化MSD方案的分组错误率(每个)性能与完整方案的分组错误率(每个)性能几乎相同。特别地,如果我们只增加观察窗口长度n至2,则观察到每1×10-3,不超过0.2dB的性能差距。但是,要计算所需的决策度量数量将从256降至2 。因此,实现了实现复杂性和检测性能之间的大量平衡增益。

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