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Decentralized multi-charger coordination for wireless rechargeable sensor networks

机译:无线可充电传感器网络的分散式多充电器协调

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Wireless charging is a promising technology for provisioning dynamic power supply in wireless rechargeable sensor networks (WRSNs). The charging equipment can be carried by some mobile nodes to enhance the charging flexibility. With such mobile chargers (MCs), the charging process should simultaneously address the MC scheduling, the moving and charging time allocation, while saving the total energy consumption of MCs. However, the efficient solutions that jointly solve those challenges are generally lacking in the literature. First, we investigate the multi-MC coordination problem that minimizing the energy expenditure of MCs while guaranteeing the perpetual operation of WRSNs, and formulate this problem as a mixed-integer linear program (MILP). Second, to solve this problem efficiently, we propose a novel decentralized method which is based on Benders decomposition. The multi-MC coordination problem is then decomposed into a master problem (MP) and a slave problem (SP), with the MP for MC scheduling and the SP for MC moving and charging time allocation. The MP is being solved by the base station (BS), while the SP is further decomposed into several sub-SPs and being solved by the MCs in parallel. The BS and MCs coordinate themselves to decide an optimal charging strategy. The convergence of proposed method is analyzed theoretically. Simulation results demonstrate the effectiveness and scalability of the proposed method.
机译:无线充电是一种在无线可充电传感器网络(WRSN)中配置动态电源的有前途的技术。充电设备可以由一些移动节点携带以增强充电灵活性。对于此类移动充电器(MC),充电过程应同时解决MC调度,移动和充电时间分配问题,同时节省MC的总能耗。然而,文献中通常缺乏共同解决这些挑战的有效解决方案。首先,我们研究了多MC协调问题,该问题在保证WRSN永久运行的同时最大程度地降低了MC的能量消耗,并将此问题表述为混合整数线性程序(MILP)。其次,为了有效解决该问题,我们提出了一种基于Benders分解的新型分散方法。然后,将多MC协调问题分解为一个主问题(MP)和一个从问题(SP),其中用于MC调度的MP和用于MC移动和充电时间分配的SP。 MP正在由基站(BS)解决,而SP进一步分解为几个子SP,并由MC并行解决。 BS和MC协调以决定最佳的计费策略。从理论上分析了该方法的收敛性。仿真结果证明了该方法的有效性和可扩展性。

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