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A distributed approach for track occupancy detection

机译:分布式的轨道占用检测方法

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This paper investigates the problem of track occupancy detection in distributed settings. Track occupancy detection determines which tracks are occupied in a railway system. For each track, the Neyman-Pearson structure is applied to reach the local decision. Globally, it is a multiple hypotheses testing problem. The Bayesian approach is employed to minimize the probability of the global decision error. Based on the prior probabilities of multiple hypotheses and the approximation of the receiving operation characteristic curve of the local detector, a person-by-person optimization method is implemented to obtain the fusion rule and the local strategies off line. The results are illustrated through an example constructed from in situ devices.
机译:本文研究了分布式环境中的轨道占用检测问题。轨道占用率检测确定铁路系统中占用了哪些轨道。对于每条音轨,都采用Neyman-Pearson结构来做出本地决策。在全球范围内,这是一个多重假设检验问题。使用贝叶斯方法来最小化全局决策错误的可能性。基于多个假设的先验概率和局部检测器接收操作特征曲线的近似,实现了逐人优化方法,以离线获得融合规则和局部策略。通过从现场设备构建的示例说明了结果。

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