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首页> 外文期刊>IEEE Transactions on Signal Processing >Wireless Power Transfer for Distributed Estimation in Wireless Passive Sensor Networks
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Wireless Power Transfer for Distributed Estimation in Wireless Passive Sensor Networks

机译:无线功率传输,用于无线无源传感器网络中的分布式估计

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Recent advances in wireless power transfer (WPT) technology enable over-the-air charging of passive sensor devices and allow sensors to be active on demand without concern of their battery lifetime. This work examines the beam pattern selection and charging power allocation problems for distributed estimation applications in wireless passive sensor networks (WPSNs) that employ WPT to replenish sensors. The charging operation consists of two-phases: an exploration phase and a replenishment-and-transmission phase. In the exploration phase, radio-frequency (RF) energy chargers first scan the network in turn using different beam patterns and sensors that harvest sufficient energy based on these beams emit pilot signals to enable channel estimation at the fusion center. In the replenishment-and-transmission phase, beam patterns and charging powers are first chosen based on the available channel state information (CSI) and then used to emit RF charging signals to replenish the sensors. The sensors utilize the harvested RF energy to make local observations of the underlying parameter of interest and transmit them to the fusion center, where the final estimate is computed. In this paper, the beam pattern selection and charging power allocation are first jointly optimized with the goal of minimizing the mean-square error (MSE) of the final estimate under perfect CSI. For tractability, an MSE upper bound is used as the objective function and the problem is solved efficiently using the block successive upper bound minimization (BSUM) method. The impact of the exploration threshold and duration on the MSE is then examined for the imperfect CSI case. Simulation results demonstrate the effectiveness of the proposed scheme.
机译:无线功率传输(WPT)技术的最新进展实现了无源传感器设备的无线充电,并允许传感器按需激活,而无需担心其电池寿命。这项工作检查了波束模式选择和充电功率分配问题,这些问题适用于采用WPT补充传感器的无线无源传感器网络(WPSN)中的分布式估计应用。充电操作包括两个阶段:探索阶段和补给与传输阶段。在探索阶段,射频(RF)能量充电器首先使用不同的波束方向图依次扫描网络,传感器根据这些波束收集足够的能量,从而发射导频信号以实现融合中心的信道估计。在补充和传输阶段,首先根据可用的信道状态信息(CSI)选择波束方向图和充电功率,然后将其用于发射RF充电信号以补充传感器。传感器利用所采集的RF能量对感兴趣的基础参数进行局部观测,并将其传输到融合中心,在该中心计算最终估计值。本文首先对波束方向图选择和充电功率分配进行了联合优化,目的是在理想CSI下最小化最终估计值的均方误差(MSE)。为了易于处理,将MSE上限用作目标函数,并使用块连续上限最小化(BSUM)方法有效地解决了该问题。然后针对不完善的CSI案例检查探索阈值和持续时间对MSE的影响。仿真结果证明了该方案的有效性。

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