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SWPT: A Joint-Scheduling Model for Wireless Powered Sensor Networks

机译:SWPT:无线供电传感器网络的联合调度模型

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In a rechargeable wireless sensor network, the data packets are generated by sensor nodes at a specific data rate, and transmitted to a base station. Moreover, the base station transfers power to the nodes by using Wireless Power Transfer (WPT) to extend their battery life. However, inadequately scheduling WPT and data collection causes some of the nodes to drain their battery and have their data buffer overflow, while the others waste their harvested energy, which is more than they need to transmit their packets. In this paper, we investigate a novel optimal scheduling strategy, called Scheduled WPT (SWPT), aiming to minimize data packet loss from a network of wireless powered sensor nodes by jointly considering the sensor nodes' energy consumption and data queue state information. The scheduling problem is formulated by a MDP model, assuming that the complete states of each sensor node are well known by the base station. This presents the best effort performance of the scheduling that can be collected in a wireless powered sensor network. The simulation results show that, in terms of network throughput and packet loss rate, the proposed scheduling model significantly improves the network performance.
机译:在可再充电的无线传感器网络中,数据分组由特定数据速率的传感器节点生成,并将其发送到基站。此外,基站通过使用无线电力传输(WPT)来传送到节点的电力以延长其电池寿命。然而,在安排的WPT和数据收集不充分,导致一些节点耗尽电池并具有其数据缓冲区溢出,而其他节点则浪费它们的收获能量,这比他们传输的数据包更多。在本文中,我们调查了一种名为预定的WPT(SWPT)的新颖最佳调度策略,其目的地通过共同考虑传感器节点的能量消耗和数据队列状态信息来最小化无线供电传感器节点网络的数据分组丢失。假设每个传感器节点的完整状态是基站众所周知的,调度问题由MDP模型制定。这提出了可以在无线供电的传感器网络中收集的调度的最佳努力性能。仿真结果表明,在网络吞吐量和丢包率方面,所提出的调度模型显着提高了网络性能。

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