Saturated Power Control Scheme for Kalman Filtering via Wireless Sensor Networks

Dongmei Zhang, Z. Miao, Xingang Wang
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引用次数: 1

Abstract

We investigate the Kalman filtering problem via wireless sensor networks over fading channels. When part or all of the observation measurements are lost in a random fashion, we obtain the conclusion that the packet dropout probabilities depend upon the time-varying channel gains and the transmission power levels used by the sensors. We develop a satu- rated power controller which trades off sensor energy expenditure versus state estimation accuracy. The latter is measured by the expected value of the future covariance matrices provided by the associated time-varying Kalman filter. We study the statistical convergence properties of the error covariance matrix and pointed out the existence of the admissible packet arrival probability bound.
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基于无线传感器网络的卡尔曼滤波饱和功率控制方案
研究了无线传感器网络在衰落信道上的卡尔曼滤波问题。当部分或全部观测值以随机方式丢失时,我们得到这样的结论:丢包概率取决于时变信道增益和传感器使用的传输功率水平。我们开发了一种平衡传感器能量消耗与状态估计精度的饱和功率控制器。后者由相关时变卡尔曼滤波器提供的未来协方差矩阵的期望值来测量。研究了误差协方差矩阵的统计收敛性,并指出了允许包到达概率界的存在性。
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