Performance of Test Supermartingale Confidence Intervals for the Success Probability of Bernoulli Trials.

IF 1.3 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Journal of Research of the National Institute of Standards and Technology Pub Date : 2020-02-05 eCollection Date: 2020-01-01 DOI:10.6028/jres.125.003
Peter Wills, Emanuel Knill, Kevin Coakley, Yanbao Zhang
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Abstract

Given a composite null hypothesis 0, test supermartingales are non-negative supermartingales with respect to 0 with an initial value of 1. Large values of test supermartingales provide evidence against 0. As a result, test supermartingales are an effective tool for rejecting 0, particularly when the p-values obtained are very small and serve as certificates against the null hypothesis. Examples include the rejection of local realism as an explanation of Bell test experiments in the foundations of physics and the certification of entanglement in quantum information science. Test supermartingales have the advantage of being adaptable during an experiment and allowing for arbitrary stopping rules. By inversion of acceptance regions, they can also be used to determine confidence sets. We used an example to compare the performance of test supermartingales for computing p-values and confidence intervals to Chernoff-Hoeffding bounds and the "exact" p-value. The example is the problem of inferring the probability of success in a sequence of Bernoulli trials. There is a cost in using a technique that has no restriction on stopping rules, and, for a particular test supermartingale, our study quantifies this cost.

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伯努利试验成功概率的检验上鞅置信区间的性能
给定一个复合零假设H0,检验上鞅是相对于H0的非负上鞅,初始值为1。检验上鞅的大值提供了反对H0的证据。因此,检验上鞅是拒绝H0的有效工具,特别是当获得的p值非常小并作为反对原假设的证明时。例子包括拒绝局部实在论作为物理学基础中贝尔测试实验的解释,以及量子信息科学中纠缠的证明。测试超鞅具有在实验过程中适应性强和允许任意停止规则的优点。通过反演可接受区域,它们也可以用来确定置信集。我们使用了一个例子来比较检验上鞅在计算p值和置信区间时与诺夫-霍夫丁界和“精确”p值的性能。这个例子是在一系列伯努利试验中推断成功概率的问题。使用一种没有停止规则限制的技术是有成本的,对于一个特定的测试上鞅,我们的研究量化了这种成本。
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来源期刊
自引率
33.30%
发文量
10
审稿时长
>12 weeks
期刊介绍: The Journal of Research of the National Institute of Standards and Technology is the flagship publication of the National Institute of Standards and Technology. It has been published under various titles and forms since 1904, with its roots as Scientific Papers issued as the Bulletin of the Bureau of Standards. In 1928, the Scientific Papers were combined with Technologic Papers, which reported results of investigations of material and methods of testing. This new publication was titled the Bureau of Standards Journal of Research. The Journal of Research of NIST reports NIST research and development in metrology and related fields of physical science, engineering, applied mathematics, statistics, biotechnology, information technology.
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