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Some methods to evaluate the performance of Page's test as used to detect transient signals

机译:评估Page测试性能的一些方法,用于检测瞬态信号

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In the "classical" detection problem, a decision is to be made about the presence or absence of a target based on an observation sequence. Since this data is of a given length, we refer to this as fixed-sample-size testing. A pair of problems that are similar in spirit (but turn out to be considerably different mathematically) is that of quickest detection and transient detection. The former refers to timely notification of a statistical change; the latter, which is the subject of this paper, refers to detection of a temporary change. Much is known about the performance of Page's (1954) test in terms of average run lengths; however, more detailed statistical analysis is required to determine the detectability of a transient change. Techniques to calculate and approximate the probability of detection by Page's test for a transient of a given length and strength are developed through investigation of the probability distribution of the so-called stopping time of Page's test, which is the time between the starting instant of the test and the instant of the first alarm (false- or true-detection).
机译:在“经典”检测问题中,将基于观察序列来决定目标的存在与否。由于此数据具有给定的长度,因此我们将其称为固定样本大小测试。精神上相似的一对问题(但在数学上证明相差很大)是最快的检测和瞬态检测。前者是指及时通知统计变化;后者是指及时通知统计变化。后者是本文的主题,是指检测临时更改。关于佩奇(1954)检验的性能,从平均游程长度的角度上已广为人知。但是,需要更详细的统计分析来确定瞬态变化的可检测性。通过研究所谓的Pages测试停止时间的概率分布来开发和计算近似给定长度和强度的瞬态的Pages测试检测概率的技术,该时间是指测试开始时刻之间的时间。测试和第一个警报的即时发生(错误或真实检测)。

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