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Energy-Delay Tradeoff for Wireless Relay Systems Using HARQ with Incremental Redundancy

机译:使用具有增量冗余的HARQ的无线中继系统的能量延迟权衡

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Using relays, wireless relay systems can provide reliable transmissions when the distance between a source node (SN) and a destination node (DN) is sufficiently long and the transmission power is limited. In this paper, we study the application of the hybrid automatic repeat request (HARQ) protocol with incremental redundancy (HARQ-IR) to wireless relay systems for energy efficient reliable packet transmissions when a delay constraint is not stringent. The energy-delay tradeoff (EDT) is discussed for one-way and two-way relay systems. It is shown that direct transmissions without a relay node (RN) can be more energy efficient under a short delay constraint (or in the high power regime). On the other hand, in the low power regime (or under a long delay constraint), we can show that decoding at an RN plays a crucial role in improving energy efficiency. In particular, if decoding is performed at an RN in both one-way and two-way relay systems, relay-aided transmissions become more energy efficient than direct transmissions by a factor of greater than or equal to 8 (with a path loss exponent of 3 over Rayleigh fading channels) as the transmission power approaches 0.
机译:使用中继,当源节点(SN)与目的节点(DN)之间的距离足够长且传输功率受到限制时,无线中继系统可以提供可靠的传输。在本文中,我们研究了具有延迟增量的混合自动重发请求(HARQ)协议和增量冗余(HARQ-IR)在无线中继系统中的应用,该技术在延迟约束不严格的情况下进行节能高效的分组传输。讨论了单向和双向中继系统的能量延迟折衷(EDT)。结果表明,没有中继节点(RN)的直接传输在较短的延迟约束下(或在高功率状态下)可以更加节能。另一方面,在低功率状态下(或在较长的延迟约束下),我们可以证明RN处的解码在提高能量效率方面起着至关重要的作用。特别是,如果在单向和双向中继系统中都在RN上执行解码,则中继辅助传输的能量效率将比直接传输高出8倍以上(路径损耗指数为发射功率接近0时,在瑞利衰落信道上为3)。

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