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Optimal Energy Allocation for Kalman Filtering Over Packet Dropping Links With Imperfect Acknowledgments and Energy Harvesting Constraints

机译:具有不完善的确认和能量收集约束的丢包链路上的卡尔曼滤波的最佳能量分配

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摘要

This paper presents a design methodology for optimal transmission energy allocation at a sensor equipped with energy harvesting technology for remote state estimation of linear stochastic dynamical systems. In this framework, the sensor measurements as noisy versions of the system states are sent to the receiver over a packet dropping communication channel. The packet dropout probabilities of the channel depend on both the sensor's transmission energies and time varying wireless fading channel gains. The sensor has access to an energy harvesting source which is an everlasting but unreliable energy source compared to conventional batteries with fixed energy storages. The receiver performs optimal state estimation with random packet dropouts to minimize the estimation error covariances based on received measurements. The receiver also sends packet receipt acknowledgments to the sensor via an erroneous feedback communication channel which is itself packet dropping.
机译:本文提出了一种在配备了能量收集技术的传感器上优化传输能量分配的设计方法,该传感器用于线性随机动力系统的远程状态估计。在此框架中,传感器测量值作为系统状态的嘈杂版本通过丢包通信信道发送到接收器。信道的丢包概率取决于传感器的传输能量和随时间变化的无线衰落信道增益。与具有固定能量存储的常规电池相比,该传感器可以访问能量收集源,该能量收集源是永久但不可靠的能量源。接收器执行具有随机数据包丢失的最佳状态估计,以根据接收到的测量值最小化估计误差协方差。接收器还会通过错误的反馈通信通道将数据包接收确认发送给传感器,该错误的通信通道本身就是数据包丢失。

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