TY - GEN
T1 - Advanced Human Factors Process Failure Modes and Effects analysis
AU - Rong, Mei
AU - Zhao, Tingdi
AU - Yu, Yang
PY - 2008
Y1 - 2008
N2 - Process Failure Mode and Effects analysis (PFMEA) is a technique to identify, analyze and evaluate the potential failure modes of a production process. The purpose is to suggest control measures to reduce the risk of the production process effectively.NASA has used the PFMEA technique to analyze human processes or tasks. This type of analysis can be referred to as a "human factors process FMEA, HF-FMEA". HF-FMEA breaks down a task process into discrete steps so the actions associated with a process step can be specifically analyzed for potential failure. For each action performed, all potentialhuman errors are identified. Each error is then evaluated to identify positive and negative contributing factors, barriers, and controls. The aim of these works is to give risk reduction measures to minimize the risk of human process. Although HF-PFMEA has achieved significantachievements in the analysis of human factors, the techniqueitself is still to be improved. For example, the technique has no generic method to decompose the task, and it is difficult to identify human operational errors comprehensively. This paper proposes some solutions to the shortcomings of the conventional approach. Advanced HF-PFMEA integrates several important concepts that distinguish it from conventional HF-FMEA, including: (1) suggest a method to break down task process according to the sequence and logicality of task process, (2) use Hazard and Operability study (HAZOP) to analyze human operational errors. The operational errors can be identified by determining guidewords and process parameters. 1
AB - Process Failure Mode and Effects analysis (PFMEA) is a technique to identify, analyze and evaluate the potential failure modes of a production process. The purpose is to suggest control measures to reduce the risk of the production process effectively.NASA has used the PFMEA technique to analyze human processes or tasks. This type of analysis can be referred to as a "human factors process FMEA, HF-FMEA". HF-FMEA breaks down a task process into discrete steps so the actions associated with a process step can be specifically analyzed for potential failure. For each action performed, all potentialhuman errors are identified. Each error is then evaluated to identify positive and negative contributing factors, barriers, and controls. The aim of these works is to give risk reduction measures to minimize the risk of human process. Although HF-PFMEA has achieved significantachievements in the analysis of human factors, the techniqueitself is still to be improved. For example, the technique has no generic method to decompose the task, and it is difficult to identify human operational errors comprehensively. This paper proposes some solutions to the shortcomings of the conventional approach. Advanced HF-PFMEA integrates several important concepts that distinguish it from conventional HF-FMEA, including: (1) suggest a method to break down task process according to the sequence and logicality of task process, (2) use Hazard and Operability study (HAZOP) to analyze human operational errors. The operational errors can be identified by determining guidewords and process parameters. 1
KW - Guide words
KW - HF-PFMEA
KW - Human errors
UR - https://www.scopus.com/pages/publications/67650317669
U2 - 10.1109/RAMS.2008.4925823
DO - 10.1109/RAMS.2008.4925823
M3 - 会议稿件
AN - SCOPUS:67650317669
SN - 142441461X
SN - 9781424414611
T3 - Proceedings - Annual Reliability and Maintainability Symposium
SP - 365
EP - 370
BT - 2008 Proceedings - Annual Reliability and Maintainability Symposium, RAMS 2008
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 54th Annual Reliability and Maintainability Symposium, RAMS 2008
Y2 - 28 January 2008 through 31 January 2008
ER -