On the energy-delay tradeoff in lossy network communications

Lei Yu, Houqiang Li, Weiping Li, Zixiang Xiong, A. Høst-Madsen
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Abstract

This work investigates the energy-delay tradeoff in real-time network communication systems with ARQ, where energy is measured by power and energy per bit, respectively. We consider the lossy communication case with a finite buffer size, where each block is allowed to be retransmitted under a time constraint. We apply finite blocklength results of channel coding into our system. By adaptively optimizing the blocklength, coding rate, power allocation, and maximum number of retransmissions according to the queue state, we algorithmically achieve the optimal energy-delay tradeoff. We also lower and upper bound the optimal energy-delay function in order to study its asymptotic behavior as the delay and buffer size go to infinity, showing consistency with existing result. That is: the energy per bit approaches the minimum of -1.59 dB as the delay goes to infinity and power approaches zero. We observe that the power increases very rapidly when delay moves away from infinity, meaning that it is very hard to achieve the -1.59 dB limit in practice.
损耗网络通信中的能量延迟权衡
这项工作研究了实时网络通信系统中具有ARQ的能量延迟权衡,其中能量分别由功率和每比特能量测量。我们考虑具有有限缓冲区大小的有损通信情况,其中每个块允许在时间约束下重传。我们将有限块长度的信道编码结果应用到我们的系统中。通过根据队列状态自适应优化分组长度、编码速率、功率分配和最大重传次数,算法实现了最优的能量延迟权衡。为了研究最优能量-延迟函数在延迟和缓冲区大小趋于无穷时的渐近行为,我们还对最优能量-延迟函数进行了下界和上界,与已有结果一致。也就是说:当延迟趋于无穷大,功率趋于零时,每比特的能量接近最小值-1.59 dB。我们观察到,当延迟远离无穷大时,功率增加得非常快,这意味着在实践中很难达到-1.59 dB的限制。
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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