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Robust Distributed Discrete-Time Block and Sequential Detection in Uncertain Environments.

机译:不确定环境中的稳健的分布式离散时间块和顺序检测。

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摘要

Two detectors making independent observations must decide which one of two hypotheses is true. Both fixed-sample-size (block) detection and sequential detection are considered. The decisions are coupled through a common cost function which for tests with fixed sample size consists of the sum of the error probabilities while for sequential tests it comprises the sum of the error probabilities and the expected sample sizes. The probability measures which govern the statistics of the i.i.d. observations belong to uncertainty classes determined by 2-alternating capacities. A minimax robust (worst-case) design is pursued according to which the two detectors employ fixed-sample-size tests or sequential probability ratio tests whose likelihood ratios and thresholds depend on the least-favorable probability measures over the uncertainty class. For the aforementioned cost function the optimal thresholds of the two detectors turn out to be coupled. It is shown that, despite the uncertainty, the two detectors are thus guaranteed a minimum level of acceptable performance.
机译:两个进行独立观察的检测器必须确定两个假设之一是正确的。同时考虑了固定样本大小(块)检测和顺序检测。决策通过共同的成本函数进行耦合,该函数对于具有固定样本量的测试由误差概率之和组成,而对于顺序测试,则由误差概率与预期样本数之和组成。控制I.i.d.统计的概率度量观测值属于由2种交替能力确定的不确定性类别。追求最小最大鲁棒性(最坏情况)设计,根据该设计,两个检测器采用固定样本大小检验或顺序概率比检验,其似然比和阈值取决于不确定性类别上最不利的概率度量。对于上述成本函数,两个检测器的最佳阈值被证明是耦合的。结果表明,尽管存在不确定性,但仍保证两个检测器达到可接受性能的最低水平。

著录项

  • 作者

    Geraniotis, Evaggelos A.;

  • 作者单位
  • 年度 1987
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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