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Performance Analysis of Hybrid ARQ for Ultra-Reliable Low Latency Communications

机译:混合ARQ对超可靠低延迟通信的性能分析

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Considering an ultra-reliable low latency communication scenario, we assess the trade-off in terms of energy consumption between achieving time diversity through retransmissions and having to communicate at a higher rate due to latency constraints. Our analysis considers Nakagami-m block-fading channels with Chase combining hybrid automatic repeat request. We derive a fixed-point equation to determine the best number of allowed transmission attempts considering the maximum possible energy spent, which yields insights into the system behavior. Furthermore, we compare the energy consumption of the proposed approach against direct transmission with frequency diversity. Results show substantial energy savings using retransmissions when selecting the maximum number of transmission attempts according to our approach. For instance, considering a Rayleigh channel and smart grid teleprotection applications, our approach uses around 8 times less energy per hit compared with a direct transmission with frequency diversity.
机译:考虑到超可靠的低延迟通信场景,我们在通过重传实现时间分集之间的能耗方面评估权衡,并且由于延迟约束而不得不以更高的速率进行通信。我们的分析考虑了Nakagami-M块衰落通道,追逐混合混合自动重复请求。我们得出了一个定点方程,以确定考虑到所花费的最大能量的最佳变速器尝试,从而产生了对系统行为的见解。此外,我们比较所提出的方法的能量消耗与频率分集的直接传输。结果在选择根据我们的方法选择最大传输尝试时,使用重传的实质节能。例如,考虑到Rayleigh通道和智能电网无线连接应用,我们的方法使用每次击中的能量少8倍,而与具有频率分集的直接传输相比。

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