能量收集物联网网络中渐近最优按需AoI最小化

Mohammad Hatami, Markus Leinonen, Zheng Chen, Nikolaos Pappas, M. Codreanu
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引用次数: 5

摘要

我们考虑一个资源受限的物联网网络,其中用户按需向启用缓存的边缘节点发出请求,以发送有关各种随机进程的状态更新,每个进程都由能量收集传感器监控。边缘节点通过命令相应的传感器发送新的状态更新或从缓存中检索最近收到的测量值来为用户的请求提供服务。我们的目标是在边缘节点上找到一个控制策略,以最小化请求时接收到的测量的平均信息年龄(AoI),即平均按需AoI,受每个插槽传输和能量约束。我们开发了一种低复杂度的算法-称为松弛-截断-并证明了它是渐近最优的,当传感器的数量趋于无穷。数值结果评估了所提方法的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Asymptotically Optimal On-Demand AoI Minimization in Energy Harvesting IoT Networks
We consider a resource-constrained IoT network, where users make on-demand requests to a cache-enabled edge node to send status updates about various random processes, each monitored by an energy harvesting sensor. The edge node serves users’ requests by either commanding the corresponding sensor to send a fresh status update or retrieving the most recently received measurement from the cache. We aim to find a control policy at the edge node to minimize the average age of information (AoI) of the received measurements upon requests, i.e., average on-demand AoI, subject to per-slot transmission and energy constraints. We develop a low-complexity algorithm – termed relax-then-truncate – and prove that it is asymptotically optimal as the number of sensors goes to infinity. Numerical results assess the performance of the proposed method.
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