论文标题
在物联网系统中使用固定和随机截止日期的多播传输的信息年龄
Age of Information for Multicast Transmission with Fixed and Random Deadlines in IoT Systems
论文作者
论文摘要
在本文中,我们考虑了实时互联网(IoT)系统的多播传输,其中访问点(AP)将时间戳记的状态更新传输到多个IoT设备。与仅考虑没有截止日期的多播传输的现有研究不同,我们考虑了固定的和随机分布的截止日期,为每个多播状态更新的服务时间执行了截止日期。特别是,当状态更新截止日期到期或由某些IoT设备成功收到时,将删除状态更新。考虑到截止日期对于许多新兴的物联网应用程序很重要,在该应用程序中,过时的状态更新对IoT设备没有用。我们通过应用最近提出的指标(AOI)(AOI)来评估状态更新交付的及时性,该指标定义为自最近收到的状态更新的产生以来所经过的时间。在对物联网设备的所有可能接收结果的服务时间分布之后,我们设法获得了平均AOI和平均峰值AOI的闭合形式表达式。模拟验证了性能分析,该绩效分析表明,截止日期的多播变速箱的平均AOI比没有截止日期的平均AOI低,并且截止日期的最佳值可以最大程度地减少平均值(峰值)AOI。结果还表明,固定和随机的截止日期在不同的截止日期制度中具有相应的优势。
In this paper, we consider the multicast transmission of a real-time Internet of Things (IoT) system, where an access point (AP) transmits time-stamped status updates to multiple IoT devices. Different from the existing studies that only considered multicast transmission without deadlines, we enforce a deadline for the service time of each multicast status update, taking into account both the fixed and randomly distributed deadlines. In particular, a status update is dropped when either its deadline expires or it is successfully received by a certain number of IoT devices. Considering deadlines is important for many emerging IoT applications, where the outdated status updates are of no use to IoT devices. We evaluate the timeliness of the status update delivery by applying a recently proposed metric, named the age of information (AoI), which is defined as the time elapsed since the generation of the most recently received status update. After deriving the distributions of the service time for all possible reception outcomes at IoT devices, we manage to obtain the closed-form expressions of both the average AoI and the average peak AoI. Simulations validate the performance analysis, which reveals that the multicast transmission with deadlines achieves a lower average AoI than that without deadlines and there exists an optimal value of the deadline that can minimize the average (peak) AoI. Results also show that the fixed and random deadlines have respective advantages in different deadline regimes.