首页> 外文会议>International conference on nuclear engineering;ICONE-16 >ROADMAP FOR RESEARCH, DEVELOPMENT, AND DEMONSTRATION OF INSTRUMENTATION, CONTROLS, AND HUMAN-MACHINE INTERFACE TECHNOLOGIES
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ROADMAP FOR RESEARCH, DEVELOPMENT, AND DEMONSTRATION OF INSTRUMENTATION, CONTROLS, AND HUMAN-MACHINE INTERFACE TECHNOLOGIES

机译:仪器,控制和人机界面技术的研究,开发和演示路线图

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Instrumentation, controls, and human-machine interfaces are essential enabling technologies that strongly influence nuclear power plant performance and operational costs. The nuclear power industry is currently engaged in a transition from traditional analog-based instrumentation, controls, and human-machine interface (ICHMI) systems to implementations employing digital technologies. This transition has primarily occurred in an ad hoc fashion through individual system upgrades at existing plants and has been constrained by a number of concerns. Although international implementation of evolutionary nuclear power plants and the progression toward new plants in the United States have spurred design of morefully digital plantwide ICHMI systems, the experience base in the nuclear power application domain is limited. Additionally, design and development programs by the U.S. Department of Energy (DOE) for advanced reactor concepts, such as the Generation IV Program and Next Generation Nuclear Plant (NGNP), introduce different plant conditions and unique plant configurations that increase the need for enhanced ICHMI capabilities to fully achieve programmatic goals related to economic competitiveness, safety and reliability, sustainability, and proliferation resistance and physical protection. As a result, there are challenges that need to be addressed to enable the nuclear power industry to effectively and efficiently complete the transition to safe and comprehensive use of digital technology.
机译:仪表,控制和人机界面是必不可少的使能技术,它们会严重影响核电厂的性能和运营成本。核电行业目前正在从传统的基于模拟的仪器,控制和人机界面(ICHMI)系统过渡到采用数字技术的实现方式。这种过渡主要是通过现有工厂的个别系统升级以临时方式进行的,并且受到许多关注的约束。尽管国际上逐步发展了进化核电厂以及在美国向新核电厂的发展刺激了更多核电厂的设计。 全厂范围的全数字ICHMI系统,在核电应用领域的经验基础有限。此外,美国能源部(DOE)针对先进反应堆概念的设计和开发计划,例如第四代计划和下一代核电站(NGNP),引入了不同的工厂条件和独特的工厂配置,从而增加了对增强ICHMI的需求完全实现与经济竞争力,安全性和可靠性,可持续性以及抗扩散和实物保护有关的计划目标的能力。结果,需要解决一些挑战,以使核电行业能够有效地完成向安全和全面使用数字技术的过渡。

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