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Two-Way Decode-and-Forward for Low-Complexity Wireless Relaying: Selective Forwarding Versus One-Bit Soft Forwarding

机译:低复杂度无线中继的双向解码和转发:选择性转发与一位软转发

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摘要

Motivated by applications such as battery-operated wireless sensor networks (WSN), we propose an easy-to-implement low-complexity two-way relaying scheme. In particular, we address the challenge of improving the standard two-way selective decode-and-forward protocol (TW-SDF) in terms of block-error-rate (BLER) with minor additional complexity and energy consumption. By following the principle of soft relaying, our solution is the two-way one-bit soft forwarding (TW-1bSF) protocol in which the relay forwards the one-bit quantization of a posterior information metric about the transmitted bits, associated with an appropriately designed reliability parameter. In WSN-related standards (such as IEEE802.15.6 and Bluetooth), block codes are adopted instead of convolutional and other sophisticated codes, due to their efficient decoder hardware implementation. As the second main contribution, we derive tight upper bounds on the BLER performance for both TW-SDF and TW-1bSF, when the two-way relaying network employs block codes and hard decoding. As a valuable tool for the BLER analysis, we introduce a new code-theoretic performance metric, named sphere partition function (SPF). The error probability analysis confirms the superiority of TW-1bSF. Moreover, we derive the asymptotic performance gain of TW-1bSF over TW-SDF, which further suggests that the proposed protocol is a good choice, especially when long block codes are used.
机译:受诸如电池供电的无线传感器网络(WSN)之类的应用的激励,我们提出了一种易于实现的低复杂度双向中继方案。特别是,我们解决了在误码率(BLER)方面改进标准双向选择性解码转发协议(TW-SDF)的挑战,同时还增加了复杂性和能耗。通过遵循软中继的原理,我们的解决方案是双向一比特软转发(TW-1bSF)协议,其中中继转发与传输比特有关的后验信息度量的一比特量化,并与适当地关联设计的可靠性参数。在WSN相关标准(例如IEEE802.15.6和Bluetooth)中,由于其高效的解码器硬件实现,因此采用了块代码来代替卷积码和其他复杂代码。作为第二个主要贡献,当双向中继网络使用分组代码和硬解码时,我们推导出TW-SDF和TW-1bSF的BLER性能的严格上限。作为BLER分析的有价值的工具,我们引入了一种新的代码理论性能指标,称为球面分区函数(SPF)。错误概率分析证实了TW-1bSF的优越性。此外,我们推导了TW-1bSF在TW-SDF上的渐近性能增益,这进一步表明,所提出的协议是一个不错的选择,尤其是在使用长块码的情况下。

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