Title of article
Optimizing Performance Through Retrofitting: Strategies for Effectiveness, Defence, and Resiliency to Enhance Safety and Reliability
Author/Authors
Moghimi Esfandabadi ، Mohammad hossein Department of Mechanical and Aerospace Engineering - Faculty of Engineering - Ferdowsi University of Mashhad , Esmaeili ، Ali Department of Mechanical and Aerospace Engineering - Faculty of Engineering - Ferdowsi University of Mashhad , Karbasishargh ، Kamyab Department of Mechanical and Aerospace Engineering - Faculty of Engineering - Ferdowsi University of Mashhad
From page
83
To page
92
Abstract
This paper explores strategies to enhance safety, reliability, and performance in military-dependent industries, focusing on five key dimensions. Diversity is highlighted as crucial for effective defence, enhancing system resilience and safety by integrating various capabilities. Technological innovation in AI and robotics empowers military domains against threats, reducing performance risks. The impact of advanced technologies on effectiveness is analyzed. Military infrastructure is emphasized for mission success, with strong, flexible infrastructure vital for safety and reliability. The review examines the role of robust infrastructure in risk reduction. Human resources are crucial, with targeted training programs empowering specialized forces. The importance of investing in human resources is underscored. Communication and coordination among military systems are essential for success, with effective collaboration being complex but necessary. The review provides a roadmap for optimizing system performance in the military field, addressing the dynamic and evolving nature of military applications. This comprehensive approach ensures that military systems are robust, reliable, and capable of meeting contemporary challenges.
Keywords
Retrofitting , Effectiveness , Defence , Resiliency , Safety Reliability
Journal title
International Journal of Reliability, Risk and Safety: Theory and Application
Journal title
International Journal of Reliability, Risk and Safety: Theory and Application
Record number
2781277
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