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Nonparametric Control Scheme for Monitoring Phase Ⅱ Nonlinear Profiles with Varied Argument Values 被引量:6

Nonparametric Control Scheme for Monitoring Phase Ⅱ Nonlinear Profiles with Varied Argument Values
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摘要 Profile monitoring is used to check the stability of the quality of a product over time when the product quality is best represented by a function at each time point.However,most previous monitoring approaches have not considered that the argument values may vary from profile to profile,which is common in practice.A novel nonparametric control scheme based on profile error is proposed for monitoring nonlinear profiles with varied argument values.The proposed scheme uses the metrics of profile error as the statistics to construct the control charts.More details about the design of this nonparametric scheme are also discussed.The monitoring performance of the combined control scheme is compared with that of alternative nonparametric methods via simulation.Simulation studies show that the combined scheme is effective in detecting parameter error and is sensitive to small shifts in the process.In addition,due to the properties of the charting statistics,the out-of-control signal can provide diagnostic information for the users.Finally,the implementation steps of the proposed monitoring scheme are given and applied for monitoring the blade manufacturing process.With the application in blade manufacturing of aircraft engines,the proposed nonparametric control scheme is effective,interpretable,and easy to apply. Profile monitoring is used to check the stability of the quality of a product over time when the product quality is best represented by a function at each time point.However,most previous monitoring approaches have not considered that the argument values may vary from profile to profile,which is common in practice.A novel nonparametric control scheme based on profile error is proposed for monitoring nonlinear profiles with varied argument values.The proposed scheme uses the metrics of profile error as the statistics to construct the control charts.More details about the design of this nonparametric scheme are also discussed.The monitoring performance of the combined control scheme is compared with that of alternative nonparametric methods via simulation.Simulation studies show that the combined scheme is effective in detecting parameter error and is sensitive to small shifts in the process.In addition,due to the properties of the charting statistics,the out-of-control signal can provide diagnostic information for the users.Finally,the implementation steps of the proposed monitoring scheme are given and applied for monitoring the blade manufacturing process.With the application in blade manufacturing of aircraft engines,the proposed nonparametric control scheme is effective,interpretable,and easy to apply.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2012年第3期587-597,共11页 中国机械工程学报(英文版)
基金 supported by National Natural Science Foundation of China (Grant No. 70931004,Grant No. 70802043)
关键词 statistical process control profile monitoring nonparametric metric profile error statistical process control,profile monitoring,nonparametric metric,profile error
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参考文献25

  • 1KANG L, ALBIN S L. On-line monitoring when the process yields a linear profile[J]. Journal of Quality Technology, 2000, 32(4): 418-426.
  • 2WOODALL W H, SPITZNER D J, MONTGOMERY D C, et al. Using control charts to monitor process and product quality profiles[J]. Journal of Quality Technology, 2004, 36(3): 309-320.
  • 3WOODALL W H. Current research on profile monitoring[J]. Produf6o, 2007, 17(3): 420-425.
  • 4WOODALL W H. Controversies and contradictions in statistical process control[J]. Journal of Quality Technology, 2000, 32(4): 341-378.
  • 5ZHANG J, LI Z, WANG Z. Control chart based on likelihood ratio for monitoring linear profiles[J]. Computational Statistics and Data Analysis, 2009, 53(4): 1 440-1 448.
  • 6KIM K, MAHMOUD M A, WOODALL W H. On the monitoring of linear profiles[J]. Journal of Quality Technology, 2003, 35(3): 317 -328.
  • 7ZOU C, TSUNG F, WANG Z. Monitoring profiles based on nonparametric regression methods[J], rechnometrics, 2008, 50(4): 512-526.
  • 8MAHMOUD M A, WOODALL W H. Phase 1 analysis of linear profiles with calibration applications[J]. Technometrics, 2004, 46(4) 380-391.
  • 9ZOU C, ZHANG Y, WANG Z. A control chart based on a change-point model for monitoring linear profiles[J], liE Transactions, 2006, 38(12): 1 093-1 103.
  • 10MAHMOUD M A, PARKER P A, WOODALL W H, et al. A change point method for linear profile data[J]. Quality and Reliability Engineering Intetnational, 2007, 23(2): 247-268.

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  • 2崔敬巍,谢里阳.面向小批量制造环境的控制图理论的研究[J].组合机床与自动化加工技术,2006(10):1-4. 被引量:5
  • 3唐浩,屈梁生.基于支持向量机的发动机故障诊断[J].西安交通大学学报,2007,41(9):1124-1126. 被引量:19
  • 4虞跨海,李立州,岳珠峰.基于解析及特征造型的涡轮冷却叶片参数化设计[J].推进技术,2007,28(6):637-640. 被引量:17
  • 5Chernoff H, Zacks S. Estimating the current mean of a normal distribution which is subjected to changes in time [J].The Annals of Mathematical Statistics, 1964,35(3): 999- 101.
  • 6Tsiamyrtzis P,Hawkins D M.A Bayesian scheme to detect changes in the mean of a short-run process [J]. Technometrics, 2005,47(4): 446-456.
  • 7Hawkins D M,Qiu P,Kang C W. The Change-point Model for Statistical Process Control[J]. Journal of Quality Technology, 2003,35 (4) .355-366.
  • 8Kang L, Albin S L. On-line Monitoring When the Process Yields a Linear Profile[J]. Journal of Quali- ty Technology,2000,32(4) :418-426.
  • 9Mahmoud M A, Parker P A, Woodall W H. A Change Point Method for Linear Profile Data[J]. Quality and Reliability Engineering International, 2007,23(2) :247-268.
  • 10Ding Y, Zeng L, Zhou S. Phase I Analysis for Mo- nitoring Nonlinear Profiles in Manufacturing Processes[J]. Journal of Quality Technology, 2006, 38, 199-216.

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