Risk modification through system dynamics simulation
Lahar Baliwangi, Hisatomi Arima, Ketut Buda Artana, Kenji Ishida
Abstract
Lahar Baliwangi, Hisatomi Arima, Ketut Buda Artana, Kenji Ishida
Abstract
Risk assessment offers several advantages to management. It enables to identify the likely causes of system failures and it provides a basis for the identification of appropriate management strategies to reduce the overall risk for a given designed operation condition, either through preventative or mitigation strategies. Doing risk assessment once is often conducted therefore it may be valid in short time period only since a non-critical component could become a critical component after sometime. Further, to modify the risk of system under different operation conditions and maintenance policies, a system dynamics simulation is necessitated since system dynamics concerns a system's dynamic behavior over time under various conditions. This paper is addressed to provide a user friendly tool to simulate the system risk under some designed decisions both operation condition and maintenance policy. The result of a better understand of system behavior depend on operation and maintenance policy is well expected.
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Risk assessment offers several advantages to management. It enables to identify the likely causes of system failures and it provides a basis for the identification of appropriate management strategies to reduce the overall risk for a given designed operation condition, either through preventative or mitigation strategies. Doing risk assessment once is often conducted therefore it may be valid in short time period only since a non-critical component could become a critical component after sometime. Further, to modify the risk of system under different operation conditions and maintenance policies, a system dynamics simulation is necessitated since system dynamics concerns a system's dynamic behavior over time under various conditions. This paper is addressed to provide a user friendly tool to simulate the system risk under some designed decisions both operation condition and maintenance policy. The result of a better understand of system behavior depend on operation and maintenance policy is well expected.
Key concepts: Risk analysis (engineering), Component (thermodynamics), System dynamics, Computer science, Reliability engineering, Risk management, Preventive maintenance, Identification (biology)