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Optimal Sequential Tests for Testing Two Composite and Multiple Simple Hypotheses

机译:用于测试两个复合和多个简单假设的最佳顺序测试

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This article considers the problem of sequential testing of two composite hypotheses. Each of the hypotheses is described by a probability density function depending on a parameter. The parameter can belong to one of the two disjoint subsets of a given set. We present a sequential procedure that minimizes the Bayesian risk maximal over a family of prior parameter distributions. The family of prior distributions consists of all of the probabilistic distributions on the parametric set such that the prior probability of one of the hypotheses is equal to a given number. Consider the family of all of the possible sequential decision rules with given constraints on the greatest, with respect to the parameter, error probabilities. We prove that the procedure minimizes the maximal value (with respect to the parameter) of the average run length assuming the validity of any of the above two hypotheses over the family. In the case of two simple hypotheses sequential testing problems, our results give rise to the classical Wald-Wolfowitz theorem. Furthermore, the problem of sequential testing of three, or more, simple hypotheses becomes a special case of our results as well.
机译:本文考虑了两个复合假设的顺序检验问题。每个假设由取决于参数的概率密度函数描述。该参数可以属于给定集合的两个不相交的子集之一。我们提出了一个顺序过程,该过程使一系列先前参数分布中的最大贝叶斯风险最小化。先验分布族由参数集上的所有概率分布组成,以使假设之一的先验概率等于给定数。考虑所有可能的顺序决策规则的族,相对于参数,最大概率具有给定的约束。我们证明,假设以上两个假设中的任何一个在整个家庭中都是有效的,则该程序将平均游程长度的最大值(相对于参数)最小化。在两个简单的假设顺序检验问题的情况下,我们的结果产生了经典的Wald-Wolfowitz定理。此外,三个或更多个简单假设的顺序检验问题也成为我们结果的特例。

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