分布式顺序检测的最优带宽分配

Q. Cheng, P. Varshney, K. Mehrotra, C. Mohan
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引用次数: 5

摘要

本文研究了具有量子化观测值的分布式序列检测问题。每个传感器上可用的观测数据首先被压缩成多比特传感器决策(软决策)并发送到融合中心。在融合中心,采用顺序数据融合方案,实现全局决策。在通信约束和广义代价公式下,考虑传感器间的最优带宽分配。在给定误报概率和漏报概率的前提下,提出了一种系统优化算法,包括优化融合中心设计和优化局部量化器设计,以实现平均样本数的最小化。仿真结果表明,该方法能够有效地实现带宽的优化分配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal bandwidth assignment for distributed sequential detection
In this paper, distributed sequential detection problems with quantized observations are investigated. The observations available at each sensor are first compressed to multi-bit sensor decisions (soft decisions) and sent to the fusion center. At the fusion center, a sequential data fusion scheme is implemented in order to reach a global decision. Optimal bandwidth distribution among sensors is considered under communication constraints as well as under a generalized cost formulation. A system optimization algorithm is developed, including optimal fusion center design and optimal local quantizer design, for the minimization of the average sample number, given prespecified values of the probabilities of false alarm and miss. Simulations of the algorithm show that this approach succeeds in effective optimal bandwidth assignment.
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