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TADP: Enabling temporal and distantial priority scheduling for on-demand charging architecture in wireless rechargeable sensor Networks

机译:TADP:为无线可充电传感器网络中的按需充电架构启用时空优先级调度

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Recently, adopting mobile energy chargers to replenish the energy supply of sensor nodes in wireless sensor networks has gained increasing attentions from the research community. The utilization of the mobile energy chargers provides a more reliable energy supply than systems harvesting dynamic energy from the surrounding environment Wireless power transfer technique provides a new alternative for solving the limited power capacity problem for so many popular mobile wireless devices, and makes wireless rechargeable sensor networks (WRSNs) promising. However, mainly due to the underestimate of the unbalanced influences of spatial and temporal constraints posed by charging requests, traditional scheduling strategies for on-demand WRSNs architecture achieve rather low charging request throughput or successful rate, posing as a major bottleneck for further improvements. In this paper, we propose a Temporal & Distantial Priority charging scheduling algorithm (TADP), which takes both the distance between nodes and the mobile charger and the arrival time of charging requests into consideration, and quantizes these two factors step by step. TADP forms a mixed priority queue which directs mobile charger to replenish the energy for nodes. At last extensive simulations are conducted to demonstrate the advantages of TADP. Simulation results reveal that TADP can achieve better scheduling performance in guaranteeing the scheduling success of the high-priority tasks and improving stability of the system. (C) 2016 Elsevier B.V. All rights reserved.
机译:近来,在无线传感器网络中采用移动能量充电器来补充传感器节点的能量供应已经引起了研究界的越来越多的关注。与从周围环境中收集动态能量的系统相比,移动能量充电器的使用提供了更可靠的能量供应。无线功率传输技术为解决如此多的流行移动无线设备的有限功率容量问题提供了一种新的替代方法,并制造了无线可充电传感器网络(WRSN)前景广阔。但是,主要是由于低估了计费请求所带来的时空约束的不平衡影响,传统的按需WRSN体系结构的调度策略实现了相当低的计费请求吞吐量或成功率,成为进一步改进的主要瓶颈。在本文中,我们提出了一种时空优先调度算法(TADP),该算法既考虑了节点与移动充电器之间的距离,又考虑了充电请求的到达时间,并逐步量化了这两个因素。 TADP形成了一个混合优先级队列,该队列指示移动充电器为节点补充能量。最后进行了广泛的仿真,以证明TADP的优势。仿真结果表明,TADP在保证高优先级任务的调度成功和提高系统稳定性方面具有较好的调度性能。 (C)2016 Elsevier B.V.保留所有权利。

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