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Online Transmission Policy in Wireless Powered Networks with Urgency-aware Age of Information

机译:无线动力网络中的在线传输策略,具有紧急感知的信息年龄

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This paper investigates the age of information (Aol) for a radio frequency (RF) energy harvesting (EH) enabled network, where a sensor first scavenges energy from a wireless power station and then transmits the collected status update to a sink node. To capture the thirst for the fresh update becoming more and more urgent as time elapsing, urgency-aware AoI (U-AoI) is defined, which increases exponentially with the increment of time between two received updates. Due to EH, a waiting time is required at the sensor before transmitting the status update. An optimization problem is formulated to minimize the long-term average U-AoI under constraint of energy causality. A two-layer algorithm is presented to solve it, where the outer loop is designed based on Dinklebach's method, and the inner loop presents a semi-closed-form expression of the optimal waiting time policy based on Karush-Kuhn-Tucker (KKT) optimality conditions. Numerical results show that our proposed optimal transmission policy outperforms the zero time waiting policy and equal time waiting policy in terms of long-term average U-AoI, especially when the networks are in slight load. It also shows that the system U-AoI first decreases and then keeps unchanged with the increments of EH circuit's saturation level.
机译:本文研究了射频(RF)能量收集(EH)的网络的信息(AOL)的年龄,其中传感器首先从无线电力站扫除能量,然后将收集的状态更新发送到宿节点。为了捕获最新更新的渴望变得越来越紧急,因为时间越来越迫切,所定义紧急感知的AOI(U-AOI),这在两个接收更新之间的时间递增时呈指数增加。由于EH,在传输状态更新之前,传感器需要等待时间。制定了优化问题,以最小化能量因果关系约束下的长期平均U-AOI。提出了一种双层算法来解决,其中基于DinkleBach的方法设计了外环,内部环路呈现了基于Karush-Kuhn-Tucker(KKT)的最佳等候时间策略的半闭合形式表达式最佳条件。数值结果表明,我们所提出的最佳传输策略优于长期平均U-AOI的零时间等待政策和平均等待政策,特别是当网络略有负载时。它还表明系统U-AOI首先减小,然后随着EH电路饱和级别的增量保持不变。

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