Can Decentralized Status Update Achieve Universally Near-Optimal Age-of-Information in Wireless Multiaccess Channels?

Zhiyuan Jiang, B. Krishnamachari, Sheng Zhou, Z. Niu
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引用次数: 71

Abstract

In an Internet-of-Things system where status data are collected from sensors and actuators for time-critical applications, the freshness of data is vital and can be quantified by the recently proposed age-of-information (AoI) metric. In this paper, we first consider a general scenario where multiple terminals share a common channel to transmit or receive randomly generated status packets. The optimal scheduling problem to minimize AoI is formulated as a restless multi-armed bandit problem. To solve the problem efficiently, we derive the Whittle's index in closed-form and establish the indexability thereof. Compared with existing work, we extend the index policy for AoI optimization to incorporate stochastic packet arrivals and optimal packet management (buffering the latest packet). Inspired by the index policy which has near-optimal performance but is centralized by nature, a decentralized status update scheme, i.e., the index-prioritized random access policy (IPRA), is further proposed, achieving universally near-optimal AoI performance and outperforming state-of-the-arts in the literature.
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在无线多址信道中,去中心化状态更新能否实现普遍接近最优的信息时代?
在物联网系统中,从传感器和执行器收集状态数据用于时间关键型应用,数据的新鲜度至关重要,可以通过最近提出的信息年龄(AoI)度量来量化。在本文中,我们首先考虑一个通用场景,其中多个终端共享一个公共通道来发送或接收随机生成的状态数据包。将AoI最小的最优调度问题表述为一个不宁多臂强盗问题。为了有效地解决这一问题,我们导出了封闭形式的惠特尔指数,并建立了其可索引性。与已有的工作相比,我们扩展了AoI优化的索引策略,将随机数据包到达和最优数据包管理(缓冲最新数据包)结合起来。受具有接近最优性能但本质上是中心化的索引策略的启发,进一步提出了一种分散的状态更新方案,即索引优先随机访问策略(index- priority random access policy, IPRA),实现了普遍接近最优的AoI性能,优于文献中最先进的性能。
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