Age of information (AoI) is a performance metric that captures the freshness of status updates. While AoI has been studied thoroughly for point-to-point links, the impact of modern random-access protocols on this metric is still unclear. In this paper, we extend the recent results by Munari to prioritized random access where devices are divided into different classes according to different AoI requirements. We consider the irregular repetition slotted ALOHA protocol and analyze the AoI evolution by means of a Markovian analysis following similar lines as in Munari (2021). We aim to design the protocol to satisfy the AoI requirements for each class while minimizing the power consumption. To this end, we optimize the update probability and the degree distributions of each class, such that the probability that their AoI exceeds a given threshold lies below a given target and the average number of transmitted packets is minimized.
翻译:信息年龄( AoI) 是反映最新状态更新的性能衡量标准( AoI) 。 虽然已经对AoI 进行了彻底的点对点连接研究,但现代随机访问协议对这一指标的影响仍然不清楚。 在本文中,我们将Munari的最新结果扩展为优先随机访问,根据不同AoI的要求,将设备分为不同的类别。 我们考虑不规则的重复时间档的ALOHA协议,并通过马科维亚分析AoI的演进,按照与Munari(2021年)类似的线进行的分析。 我们的目标是设计协议,满足每个类别对AoI的要求,同时尽量减少电力消耗。 为此,我们优化了每个类别的更新概率和程度分布,以便它们的AoI超过特定阈值的概率低于特定目标,传输包的平均数量最小化。