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Estimation over Communication Networks: Performance Bounds and Achievability Results

机译:通信网络上的估计:性能界限和可实现性结果

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摘要

This paper considers the problem of estimation over communication networks. Suppose a sensor is taking measurements of a dynamic process. However the process needs to be estimated at a remote location connected to the sensor through a network of communication links that drop packets stochastically. We provide a framework for computing the optimal performance in the sense of expected error covariance. Using this framework we characterize the dependency of the performance on the topology of the network and the packet dropping process. For independent and memoryless packet dropping processes we find the steady-state error for some classes of networks and obtain lower and upper bounds for the performance of a general network. Finally we find a necessary and sufficient condition for the stability of the estimate error covariance for general networks with spatially correlated and Markov type dropping process. This interesting condition has a max-cut interpretation.
机译:本文考虑了通信网络上的估计问题。假设传感器正在测量动态过程。但是,需要通过通信链路网络随机地丢弃数据包的远程位置估计该过程。我们提供了一个在预期误差协方差意义上计算最佳性能的框架。使用此框架,我们可以表征性能对网络拓扑和数据包丢弃过程的依赖性。对于独立且无内存的数据包丢弃过程,我们找到了某些网络类别的稳态错误,并获得了一般网络性能的上下限。最后,我们找到了具有空间相关和马尔可夫类型下降过程的一般网络的估计误差协方差的稳定性的充要条件。这个有趣的条件具有最大极限的解释。

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