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| Biểu đồ kiểm soát dựa trên rủi ro× | Kiểm soát quá trình thống kê dựa trên rủi ro× | |
|---|---|---|
| Lĩnh vực | Thiết kế thí nghiệm | Thiết kế thí nghiệm |
| Họ | Process / pipeline | Process / pipeline |
| Năm ra đời≠ | 1956 (economic design); refined through 1980s–2000s | 1920s (SPC foundations); risk-based integration formalized in 2000s–2010s |
| Người khởi xướng≠ | A. J. Duncan (economic design, 1956); T. J. Lorenzen & L. C. Vance (unified economic model, 1986) | Integrated from SPC (Shewhart, 1920s; Deming, 1950s) and risk analysis frameworks (FDA ICH Q10, ISO 31000) |
| Loại≠ | Quantitative process monitoring method | Hybrid quality-risk engineering method |
| Công trình gốc≠ | Lorenzen, T. J., & Vance, L. C. (1986). The economic design of control charts: A unified approach. Technometrics, 28(1), 3–10. DOI ↗ | Montgomery, D. C. (2020). Introduction to Statistical Quality Control (8th ed.). Wiley. ISBN: 978-1119399308 |
| Tên gọi khác | economic control chart, risk-integrated SPC, cost-based control chart, economic design of control charts | Risk-based SPC, RBSPC, risk-prioritized SPC, risk-informed process monitoring |
| Liên quan | 6 | 6 |
| Tóm tắt≠ | A risk-based control chart extends the classical Shewhart control chart by explicitly incorporating the costs and probabilities of two error types — false alarms (Type I) and missed shifts (Type II) — along with sampling costs, into the design of chart parameters. Rather than using arbitrary 3-sigma limits, the method selects sample size, sampling interval, and control limits to minimise the total expected cost or risk of operating the monitoring scheme. | Risk-based statistical process control (Risk-based SPC) is an engineering quality method that integrates formal risk analysis — typically FMEA or a risk matrix — with statistical process monitoring to focus control chart resources on the process parameters that pose the greatest risk to product quality or system safety. Rather than applying control charts uniformly across all variables, risk-based SPC directs tighter monitoring toward high-risk, high-impact process characteristics identified through structured hazard prioritization. |
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