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Optimal design and performance of distributed signal detection systems with faults

机译:有故障的分布式信号检测系统的优化设计与性能

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摘要

The design and performance of distributed signal detection systems with processor failures is presented. Using a general processor fault model, which also models an imperfect channel, the optimal design given prior failure probabilities is considered. The optimal design provides a performance bound for each system when failures may occur. It is shown that for general distributed systems, a likelihood ratio test is the optimal design for each local processor, provided failures are independent of the received observation vectors. The optimal design performs significantly better than the design that assumes no failures. It is shown that the fusion network performs better than a single centralized processor for many channels. This illustrates that, for the fusion network, the performance gained by decreasing the effect of failures outweighs the performance lost by distributing the processing. The serial network always performs worse than centralized; its performance is bounded as the number of channels increases.
机译:介绍了具有处理器故障的分布式信号检测系统的设计和性能。使用通用处理器故障模型(该模型也对不完善的通道进行建模),可以考虑给定先前故障概率的最佳设计。当可能发生故障时,最佳设计为每个系统提供了性能极限。结果表明,对于一般的分布式系统,如果故障独立于接收到的观测向量,则似然比测试是每个本地处理器的最佳设计。最佳设计的性能要比没有故障的设计好得多。结果表明,对于许多通道,融合网络的性能要优于单个集中处理器。这说明,对于融合网络而言,通过减少故障影响而获得的性能要超过通过分配处理而损失的性能。串行网络总是比集中式网络性能差。其性能随着通道数量的增加而受到限制。

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