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Trade-off performance regions of random access protocols with multi-packet reception (MPR) via multi-objective optimization

机译:通过多目标优化,在具有多分组接收(MPR)的情况下权衡随机访问协议的性能区域

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This paper revisits the study of random access protocols enabled with multi-packet reception capabilities (MPR) using multi-objective optimization tools. The work is focused on the characterization of the boundary (envelope) or the Pareto front curve of different types of trade-off performance region: the conventional throughput region, sum-throughput vs. fairness, and sum-throughput vs. power consumption. Fairness is evaluated by means of the Gini-index, which is a metric used in economics to measure income inequality. Transmit power is directly linked to the global transmission rate. For simplicity in the analysis, this paper focuses on a two-user Slotted ALOHA (S-ALOHA) system enabled with MPR. The results provide useful insights into the operation of MPR protocols under different reception scenarios. In weak MPR conditions, it is observed that the system has problems in achieving simultaneously good fairness and high sum-throughput, due to a non-convex throughput region. On the contrary, in scenarios with strong MPR, good fairness and high sum-throughput can be simultaneously achieved at the expense of high power consumption.
机译:本文回顾了使用多目标优化工具启用具有多数据包接收功能(MPR)的随机访问协议的研究。这项工作着重于对不同类型的折衷性能区域的边界(包络)或Pareto前曲线进行表征:常规吞吐量区域,总吞吐量与公平性以及总吞吐量与功耗之间的关系。公平性是通过基尼系数来评估的,基尼系数是经济学中用来衡量收入不平等的指标。发射功率直接与总体传输速率相关。为了简化分析,本文重点介绍启用了MPR的两用户时隙ALOHA(S-ALOHA)系统。结果为在不同接收情况下MPR协议的操作提供了有用的见解。在弱MPR条件下,由于非凸吞吐量区域,观察到该系统在同时实现良好公平性和高和吞吐量方面存在问题。相反,在具有强MPR的方案中,可以以高功耗为代价同时实现良好的公平性和高和吞吐量。

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