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Mean square detectability of multi-output systems over stochastic multiplicative channels

机译:随机乘法通道上多输出系统的均方可检测性

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This study addresses the mean square detectability problem for multi-output networked systems via single packet or multiple packets transmission, where a multiplicative white noise model the unreliability of output channels. For the single packet case, by adopting the bisection technique, the authors give the critical value (lower bound) of mean square capacity for ensuring mean square detectability. For the m-parallel multiple packets transmission strategy, a necessary and sufficient condition on overall mean square capacity for mean square detectability in terms of the Mahler measure or topological entropy of the plant is presented, under the assumption that the given network resource can be allocated among all the output channels. Applications in erasure-type channel and channel with stochastic sector-bounded uncertainty are provided to demonstrate the results.
机译:这项研究通过单包或多包传输解决了多输出网络系统的均方根可检测性问题,其中乘性白噪声模拟了输出通道的不可靠性。对于单包情况,通过采用对分技术,作者给出了均方容量的临界值(下界),以确保均方可检测性。对于m并行多数据包传输策略,提出了在可以分配给定网络资源的前提下,根据植物的马勒测度或工厂拓扑熵的均方可检测性的总体均方容量的充要条件。在所有输出通道中。提供了在擦除型信道和具有随机扇区限制的不确定性的信道中的应用以证明结果。

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