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Towards a method for assessing resilience of complex dynamical systems

机译:朝着评估复杂动态系统的恢复性的方法

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System survivability is one of the key requirements for the conceptual design of an Integrated Reconfigurable Intelligent (IRIS) system. Current approaches in survivability engineering may not effectively address the challenges in designing revolutionary, large scale complex and multi-capable systems. The main objective of this study is to investigate the concept of resilience in the context of system safety and survivability and suggest a technique for assessing resilience in systems engineering. Resilience is expected to be the enabler for integrating safety and survivability in the early conceptual design. For this purpose, a small scale cooling network system architecture has been utilized to demonstrate the technique, both for a 32-valve baseline, as well as for six other configurations. The application of the technique allowed for the comparative assessment and tradeoff investigation of resilience function capacities, as well for the identification of solution feasibility, under adaptability and robustness constraints.
机译:系统生存性是集成可重新配置智能(IRIS)系统的概念设计的关键要求之一。生存能力工程中的目前的方法可能没有有效地解决设计革命性,大规模复杂和多功能多种系统的挑战。本研究的主要目标是调查系统安全性和生存能力背景下的恢复力的概念,并提出了一种评估系统工程恢复力的技术。预计弹性将成为在早期概念设计中整合安全性和生存能力的推动者。为此目的,已经利用了小型冷却网络系统架构来展示用于32瓣基线的技术,以及六个其他配置。该技术的应用允许对比较评估和权衡调查恢复力函数能力,以及识别解决方案可行性,适应性和鲁棒性约束。

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