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Optimal Remote Estimation Over Use-Dependent Packet-Drop Channels

机译:使用相关的分组丢弃信道上的最佳远程估计

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Abstract: Consider a discrete-time remote estimation system formed by an encoder, a transmission policy, a channel, and a remote estimator. The encoder assesses a random process that the remote estimator seeks to estimate based on information sent to it by the encoder via the channel. The channel is affected by Bernoulli drops. The instantaneous probability of a drop is governed by a finite state machine (FSM). The state of the FSM is denoted as the channel state. At each time step, the encoder decides whether to attempt a transmission through the packet-drop link. The sequence of transmission decisions is the input to the FSM. This paper seeks to design an encoder, transmission policy and remote estimator that minimize a finite-horizon mean squared error cost. We present two structural results. The first result in which we assume that the process to be estimated is white and Gaussian, we show that there is an optimal transmission policy governed by a threshold on the estimation error. The second result characterizes optimal symmetric transmission policies for the case when the measured process is the state of a scalar linear time-invariant plant driven by white Gaussian noise. Use-dependent packet-drop channels can be used to quantify the effect of transmission on channel quality when the channel is powered by energy harvesting. In the expanded version of this paper, an additional application to a mixed initiative system in which a human operator performs visual search tasks is presented.
机译:摘要:考虑由编码器,传输策略,信道和远程估计器组成的离散时间远程估计系统。编码器根据编码器通过信道发送给它的信息,评估远程估计器试图估计的随机过程。该通道受Bernoulli下降影响。掉落的瞬时概率由有限状态机(FSM)控制。 FSM的状态表示为通道状态。在每个时间步长,编码器都会决定是否尝试通过丢包链路进行传输。传输决策的顺序是FSM的输入。本文旨在设计一种编码器,传输策略和远程估计器,以最大程度地减少有限水平均方误差成本。我们提出两个结构性结果。我们假设要估计的过程是怀特和高斯的第一个结果表明,存在由估计误差阈值控制的最佳传输策略。第二个结果表征了当测量过程是由高斯白噪声驱动的标量线性时不变植物的状态时的最优对称传输策略。当使用能量收集为信道供电时,可以使用基于用途的丢包信道来量化传输对信道质量的影响。在本文的扩展版本中,提出了一种混合混合主动系统的附加应用程序,其中操作员可以执行视觉搜索任务。

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