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Bayesian Design of Tandem Networks for Distributed Detection With Multi-Bit Sensor Decisions

机译:具有多位传感器决策的分布式检测的串联网络的贝叶斯设计

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We consider the problem of decentralized hypothesis testing under communication constraints in a topology where several peripheral nodes are arranged in tandem. Each node receives an observation and transmits a message to its successor, and the last node then decides which hypothesis is true. We assume that the observations at different nodes are, conditioned on the true hypothesis, independent and the channel between any two successive nodes is considered error-free but rate-constrained. We propose a cyclic numerical design algorithm for the design of nodes using a person-by-person methodology with the minimum expected error probability as a design criterion, where the number of communicated messages is not necessarily equal to the number of hypotheses. The number of peripheral nodes in the proposed method is in principle arbitrary and the information rate constraints are satisfied by quantizing the input of each node. The performance of the proposed method for different information rate constraints, in a binary hypothesis test, is compared to the optimum rate-one solution due to Swaszek and a method proposed by Cover, and it is shown numerically that increasing the channel rate can significantly enhance the performance of the tandem network. Simulation results for -ary hypothesis tests also show that by increasing the channel rates the performance of the tandem network significantly improves.
机译:我们考虑在通信约束下的拓扑假设中的分散假设检验问题,该拓扑中几个外围节点串联排列。每个节点接收一个观察并将消息发送给它的后继节点,然后最后一个节点确定哪个假设是正确的。我们假设,在不同节点上的观测值以真实假设为条件,并且彼此独立,并且任意两个连续节点之间的通道均被视为无差错但受速率限制。我们提出了一种使用人与人的方法进行节点设计的循环数值设计算法,该算法采用最小预期错误概率作为设计准则,其中,传递的消息数不一定等于假设数。所提出的方法中的外围节点的数量原则上是任意的,并且通过量化每个节点的输入来满足信息速率约束。在二元假设检验中,将所建议的方法在不同信息速率约束下的性能与由Swaszek和Cover提出的最佳速率一解决方案进行比较,并通过数字表明,增加信道速率可以显着提高串联网络的性能。基本假设测试的仿真结果还表明,通过提高信道速率,串联网络的性能得到了显着改善。

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