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监测过程尺度参数的VSI-EWMA-NPS图经济统计优化设计

王海宇 高小英

运筹与管理2025,Vol.34Issue(12):9-16,8.
运筹与管理2025,Vol.34Issue(12):9-16,8.DOI:10.12005/orms.2025.0369

监测过程尺度参数的VSI-EWMA-NPS图经济统计优化设计

Economic and Statistical Optimization Design of VSI-EWMA-NPS Chart for Monitoring Process Scale Parameter

王海宇 1高小英1

作者信息

  • 1. 郑州大学 商学院,河南郑州 450001
  • 折叠

摘要

Abstract

As an important tool of statistical process control,control chart has been widely used in the monitoring process of production and service.In the actual production process,for systematic reasons,the scale parameters often change but the position remains unchanged,which will lead to the overall decline in process quality,so it is necessary to monitor the scale parameters.In many production processes,some simple and rapid detection methods are often used to judge the process quality,such as measuring the diameter of cigarettes with a cigarette measuring board and measuring the concentration of alumina with a test paper.These methods are simple and rapid.In this paper,this kind of method is called rapid detection,and it is applied to the control chart. In the continuous production process of monitoring,if the sampling detection cost is high or the detection time is long,the counting control chart can be considered for monitoring.EWMA chart uses both the data information of the current sample and the data information of the historical sample,which has high monitoring efficiency for small and medium-sized deviations,but the cost of sampling detection is high;NPS diagram can effectively reduce the detection cost,but it is not sensitive to process fluctuation.Dynamic control chart can improve monitoring efficiency and save costs by adjusting sampling strategy,but the degree of improvement and saving is limited.Therefore,through the application of rapid detection method,this paper constructs a VSI-EW-MA-NPS scale parameter control chart which can effectively monitor the scale parameters of continuous produc-tion process.In order to consider the monitoring efficiency and quality cost of VSI-EWMA-NPS control chart,the economic statistical optimization model of VSI-EWMA-NPS scale parameter control chart is constructed with the Average Product Length(APL)as the statistical evaluation index and the average quality cost per unit product as the economic evaluation index.The optimization model of this paper is illustrated by a case of graphite gasket production.Through the combination and analysis of non-inferior solutions,the relationship among sample size,sampling interval,quality cost per unit time(C)and average product length(APL1)in out-of-control state is studied.Through sensitivity analysis,the influence of model parameters on economic indicators and statistical indicators is studied.Finally,the optimization method of economic statistics proposed in this paper is compared with the existing models,and the results show that the model in this paper is advanced in economy and statistics. In this study,it is assumed that the product quality characteristic values obey the normal distribution,but with the development of intelligent manufacturing,the product production mode becomes more flexible and refined.In the process of product production,the process quality characteristic value will follow some non-normal distribution,and even sometimes it is difficult to judge the specific distribution type it obeys.In view of this kind of production process,if the quality monitoring method based on the assumption of normal distribution is still used to monitor the product production in real time,it will lead to large errors and misjudge the production process.Therefore,it is necessary to consider the monitoring of non-normal data by VSI-EWMA-NPS control chart in the subsequent research.

关键词

VSI-EWMA-NPS控制图/尺度参数/平均产品长度/经济统计设计/多目标优化

Key words

VSI-EWMA-NPS control chart/scale parameter/average product length/economic and statistical design/multi-objective optimization

分类

信息技术与安全科学

引用本文复制引用

王海宇,高小英..监测过程尺度参数的VSI-EWMA-NPS图经济统计优化设计[J].运筹与管理,2025,34(12):9-16,8.

基金项目

国家自然科学基金资助项目(71672209,U1904211) (71672209,U1904211)

国家社会科学基金资助项目(20BTJ059) (20BTJ059)

运筹与管理

OA北大核心CHSSCDCSCDCSSCICSTPCD

1007-3221

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