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A Combinatorial Approach for Analyzing Start-Up Demonstration Tests

机译:分析启动演示测试的组合方法

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摘要

There exist various approaches to evaluate the statistical properties of a set of start-up demonstration tests. Among them is the function generating method and the Markov chain imbedding approach. A different approach stems from using basic combinatorics. It has been presented in various articles and it is intended here to give a short summary. Various criteria are suggested for determining whether to accept or reject the tested equipment. These include the older and simpler ones like CSTF (continuous successes total failures) according to which acceptance is achieved if a certain length of run of successes comes before a specified total number of failures, and vice versa for rejection. A more advanced test criterion is for instance TSCSTFCF (total successes continuous successes total failures continuous failures) where the equipment is accepted if either there appears a certain length of run of successes or a specified total number of successes is encountered before a pre-specified length of a run of failures and a certain total number of failures. It is rejected if the opposite case is observed. Using a combinatorial approach, features like the expected number of tests and the probability of accepting the tested unit are evaluated. Further on, an optimization procedure for determining the various parameters that are involved in the process will be presented. The reasonable objective of minimizing the number of required tests is considered. This is carried out subject to confidence level constraints. The theory has been expanded to include multi-valued tests and to possibly assuming some dependence between the tests. A recent generalization to the two-dimensional case will also be included.
机译:存在各种方法来评估一组启动演示测试的统计属性。其中包括函数生成方法和马尔可夫链嵌入方法。使用基本的组合语言可产生不同的方法。它已在各种文章中进行了介绍,并打算在此给出简短的摘要。建议使用各种标准来确定是否接受或拒绝被测设备。这些包括较旧的和较简单的方法,例如CSTF(连续成功总数失败),如果在指定的失败总数之前达到一定长度的成功次数,则根据CSTF可以接受,反之亦然。一个更高级的测试标准是例如TSCSTFCF(总成功次数,连续成功次数,总失败次数,连续失败次数),如果在达到预定长度之前出现一定长度的成功运行或遇到了指定的总成功次数,则接受设备一连串的故障和一定数量的故障。如果观察到相反的情况,则将其拒绝。使用组合方法,可以评估预期的测试数量和接受测试单元的可能性等功能。进一步地,将提出用于确定过程中涉及的各种参数的优化程序。考虑了减少所需测试次数的合理目标。这在置信度约束下进行。该理论已经扩展到包括多值测试,并可能假设测试之间存在某种依赖性。还将包括对二维情况的最新概括。

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