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Systems of systems engineering for particle accelerator based research facilities: A case study on engineering machine protection

机译:基于粒子加速器的研究设施的系统工程系统 - 以工程机保护为例

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This paper explores the applicability of Systems of Systems (SoS) Engineering in the development of large-scale particle accelerator research facilities. Modern particle accelerator facilities, realised by complex constellations of interacting systems, serve a variety of users as research enablers. While the constituent systems exhibit a significant degree of technical and operational independence and distinct life cycles, the performance required to conduct research still needs to emerge from their integration into one overall system, the research facility. This renders a Systems of Systems oriented approach to engineering useful. Furthermore, accelerator based research facilities face increasing availability expectations. Achieving those expectations can be supported through a tailored application of functional safety standards as engineering methodology guideline on an SoS level, as explained in this paper. An SoS-Engineering approach utilising functional safety standards (IEC 61511, IEC 61508) in this way is concretised in a case study on the development of a Machine Protection Systems of Systems in the world-leading neutron science laboratory European Spallation Source ERIC (ESS).
机译:本文探讨了系统(SOS)工程系统在大规模粒子加速器研究设施开发中的适用性。现代粒子加速器设施,由复杂的互动系统实现,提供各种用户作为研究推动者。虽然组成系统具有显着程度的技术和运营独立性和不同的生命周期,但行为研究所需的表现仍然需要从他们的整合到一个整体系统,研究设施。这使得系统导向方法的工程方法有用。此外,基于加速器的研究设施面临着增加的可用性期望。如本文所解释的,可以通过量身定制的功能安全标准作为工程方​​法准则来支持这些期望。利用这种方式利用功能安全标准(IEC 61511,IEC 61508)的SOS - 工程方法是在世界领先的中子科学实验室欧洲偏离源Eric(ESS)中系统机器保护系统的发展中的案例研究。

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