Hazard Analysis for Escalator Emergency Braking System via System Safety Analysis Method Based on STAMP
Due to the complex mechanical structure and control process of escalator emergency braking systems (EEBS), traditional hazard analysis based on the event chain model have limitations in exploring component interaction failure in such a complex social-technical system. Therefore, a hazard analysis fr...
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doaj-7b0c808cd4274964a87b8948d73acf392020-11-25T00:56:31ZengMDPI AGApplied Sciences2076-34172019-10-01921453010.3390/app9214530app9214530Hazard Analysis for Escalator Emergency Braking System via System Safety Analysis Method Based on STAMPZitong Zhou0Yanyang Zi1Jinglong Chen2Tong An3State Key Laboratory for Manufacturing and Systems Engineering, Xi’an Jiaotong University, Xi’an 710049, ChinaState Key Laboratory for Manufacturing and Systems Engineering, Xi’an Jiaotong University, Xi’an 710049, ChinaState Key Laboratory for Manufacturing and Systems Engineering, Xi’an Jiaotong University, Xi’an 710049, ChinaState Key Laboratory for Manufacturing and Systems Engineering, Xi’an Jiaotong University, Xi’an 710049, ChinaDue to the complex mechanical structure and control process of escalator emergency braking systems (EEBS), traditional hazard analysis based on the event chain model have limitations in exploring component interaction failure in such a complex social-technical system. Therefore, a hazard analysis framework is proposed in this paper for hazard analysis of complex electromechanical systems based on system-theoretic accident model and process (STAMP). Firstly, basic principles of STAMP are introduced and comparison with other hazard analysis methods is conducted, then the safety analysis framework is proposed. Secondly, a study case is performed to identify unsafe control actions of EEBS from control structures, and a specific control diagram is organized to recognize potential example casual scenarios. Next, comparison between fault tree analysis and STAMP for escalator’s overturned accident shows that hazards related to component damaged can be identified by both, while hazards that focus on components interaction can only be identified by STAMP. Besides, single control way and tandem operation process are found to be the obvious causal factors of accidents. Finally, some improvement measures like decibel detection or vibration monitoring of key components are suggested to help the current broken chain detection to trigger the anti-reversal device for a better safe EEBS.https://www.mdpi.com/2076-3417/9/21/4530system safetystampescalator emergency braking systemhazardunsafe control actionfault tree analysis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zitong Zhou Yanyang Zi Jinglong Chen Tong An |
spellingShingle |
Zitong Zhou Yanyang Zi Jinglong Chen Tong An Hazard Analysis for Escalator Emergency Braking System via System Safety Analysis Method Based on STAMP Applied Sciences system safety stamp escalator emergency braking system hazard unsafe control action fault tree analysis |
author_facet |
Zitong Zhou Yanyang Zi Jinglong Chen Tong An |
author_sort |
Zitong Zhou |
title |
Hazard Analysis for Escalator Emergency Braking System via System Safety Analysis Method Based on STAMP |
title_short |
Hazard Analysis for Escalator Emergency Braking System via System Safety Analysis Method Based on STAMP |
title_full |
Hazard Analysis for Escalator Emergency Braking System via System Safety Analysis Method Based on STAMP |
title_fullStr |
Hazard Analysis for Escalator Emergency Braking System via System Safety Analysis Method Based on STAMP |
title_full_unstemmed |
Hazard Analysis for Escalator Emergency Braking System via System Safety Analysis Method Based on STAMP |
title_sort |
hazard analysis for escalator emergency braking system via system safety analysis method based on stamp |
publisher |
MDPI AG |
series |
Applied Sciences |
issn |
2076-3417 |
publishDate |
2019-10-01 |
description |
Due to the complex mechanical structure and control process of escalator emergency braking systems (EEBS), traditional hazard analysis based on the event chain model have limitations in exploring component interaction failure in such a complex social-technical system. Therefore, a hazard analysis framework is proposed in this paper for hazard analysis of complex electromechanical systems based on system-theoretic accident model and process (STAMP). Firstly, basic principles of STAMP are introduced and comparison with other hazard analysis methods is conducted, then the safety analysis framework is proposed. Secondly, a study case is performed to identify unsafe control actions of EEBS from control structures, and a specific control diagram is organized to recognize potential example casual scenarios. Next, comparison between fault tree analysis and STAMP for escalator’s overturned accident shows that hazards related to component damaged can be identified by both, while hazards that focus on components interaction can only be identified by STAMP. Besides, single control way and tandem operation process are found to be the obvious causal factors of accidents. Finally, some improvement measures like decibel detection or vibration monitoring of key components are suggested to help the current broken chain detection to trigger the anti-reversal device for a better safe EEBS. |
topic |
system safety stamp escalator emergency braking system hazard unsafe control action fault tree analysis |
url |
https://www.mdpi.com/2076-3417/9/21/4530 |
work_keys_str_mv |
AT zitongzhou hazardanalysisforescalatoremergencybrakingsystemviasystemsafetyanalysismethodbasedonstamp AT yanyangzi hazardanalysisforescalatoremergencybrakingsystemviasystemsafetyanalysismethodbasedonstamp AT jinglongchen hazardanalysisforescalatoremergencybrakingsystemviasystemsafetyanalysismethodbasedonstamp AT tongan hazardanalysisforescalatoremergencybrakingsystemviasystemsafetyanalysismethodbasedonstamp |
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1725226704948953088 |