Constructing Optimal Quick Switching System with Hurdle Poisson Distribution

V. Haridoss, V. Sasikala
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Abstract

Objectives: Optimizing the sum of risks involved in the selection of acceptance sampling plans playing a vital role. This paper uses the Hurdle Poisson distribution to design an optimal quick switching system attribute plan for a given acceptable quality level (AQL) and limiting quality level (LQL) involving a minimum sum of risks. Methods: The sum of producer's and consumer's risks has been met for the specified AQL and LQL. The sum of these risks, as well as the acceptance and rejection numbers have been calculated using the Hurdle Poisson distribution. The operating characteristic function for the quick switching system attribute plan has also been derived using the Hurdle Poisson distribution. Findings: The producer and the consumer both represent the same party in the final inspection. As a result, the sum of these two risks should be minimized. In this paper, the sum of risks for various operating ratios are tabulated using the Hurdle Poisson distribution. These tabulated values are less than the sum of risks calculated using the Weighted Poisson distribution. Novelty: Reducing the sum of risks is the ultimate aim of the work. In this proposed paper, to attain the minimum sum of risks, the authors make an attempt to approach the Quick Switching System Sampling Plan, when the number of defectives in the submitted lots are very less. In other words, the probability of getting defective is very less. This indicates the quality of the lot selected for the inspection to ensure the protection for the consumer. And the plan is also designed in the way that the producer is also not get affected by rejecting a good lot by the consumer. This is the requirement of minimizing the risks. Keywords: Acceptable Quality Level (AQL), Limiting Quality Level (LQL), Minimum Risk Plan, Quick Switching System Sampling Attribute Plan, Operating Characteristic (OC) Function, Hurdle Poisson Distribution
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利用飓风泊松分布构建最佳快速切换系统
目标:优化风险总和在选择验收抽样计划中起着至关重要的作用。本文利用飓风泊松分布,针对给定的可接受质量水平(AQL)和限制质量水平(LQL),设计出涉及最小风险总和的最佳快速切换系统属性计划。设计方法在指定的 AQL 和 LQL 条件下,生产者和消费者的风险总和已经满足。这些风险的总和以及验收数和拒收数是通过飓风泊松分布计算得出的。快速切换系统属性计划的运行特征函数也是利用飓风泊松分布得出的。研究结果生产者和消费者在最终检验中代表同一方。因此,应尽量减少这两种风险之和。本文利用飓风泊松分布列出了各种运营比率的风险总和。这些表列值小于使用加权泊松分布计算的风险总和。新颖性:降低风险总和是工作的最终目的。在本文中,为了实现最小风险总和,作者尝试在提交的批次中缺陷数量非常少的情况下,采用快速切换系统抽样计划。换句话说,出现缺陷的概率非常小。这表明被选中检验的批次质量很好,可以确保对消费者的保护。同时,该计划的设计还考虑到了生产商不会因为消费者拒收一批好产品而受到影响。这就是最大限度降低风险的要求。关键词可接受质量水平 (AQL)、限制质量水平 (LQL)、最小风险计划、快速切换系统抽样属性计划、运行特征 (OC) 函数、绊泊松分布
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