Assessing resilience in mechanical systems: an industrial perspective

Author:

Rahimazar Ali,Nouri Qarahasanlou AliORCID,Khanzadeh DinaORCID,Tavaghi Milad

Abstract

PurposeResilience as a novel concept has attracted the most attention in the management of engineering systems. The main goal of engineering systems is production assurance and increasing customer satisfaction which depends on the suitable performance of mechanical equipment. “A resilient system is defined as a system that is resistant to disruption and failures and can recover itself and returns to the state before failure as soon as possible in the case of failure.” Estimate the value of the system’s resilience to increase its resilience by covering the weakness in the resilience indexes of the system.Design/methodology/approachIn this article, a suitable approach to estimating resilience in complex engineering systems management in the field of mining has been presented. Accordingly, indexes of reliability, maintainability, supportability, efficiency index of prognostics and health management of the system, and ultimately the organization resilience index, have been used to evaluate the system resilience.FindingsThe results of applying this approach indicate the value of 80% resilience if the risk factor is considered and 98% if the mentioned factors are ignored. Also, the value of 58% resilience of this organization’s management group indicates the weakness of situational awareness and weakness in the vulnerable points of the organization.Originality/valueTo evaluate the resilience in this article, five indicators of reliability, maintainability, and supportability are used as performance indicators. Also, organization resilience and the prognostic and health management of the system (PHM) are used as management indicators. To achieve more favorable results, the environmental and operational variables governing the system have been used in performance indicators, and expert experts' opinions have been used in management indicators.

Publisher

Emerald

Reference41 articles.

1. Evaluation of transportation system resilience in the presence of connected and automated vehicles;Transportation Research Record,2019

2. An assessment of organizational resilience potential in SMEs of the process industry, a fuzzy approach;Journal of Loss Prevention in the Process Industries,2013

3. Maintainability management of production facilities in complex and challenging operating conditions,2015

4. Post-disaster infrastructure recovery: prediction of recovery rate using historical data;Reliability Engineering and System Safety,2018

5. A methodology for throughput capacity analysis of a production facility considering environment condition;Reliability Engineering and System Safety,2011

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