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자료유형
학술저널
저자정보
저널정보
한국원자력학회 Nuclear Engineering and Technology Nuclear Engineering and Technology 제49권 제5호
발행연도
2017.1
수록면
896 - 904 (9page)

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Several Generation IV nuclear reactor concepts have goals for optimizing investment recovery throughphased introduction of multiple units on a common site with shared facilities and/or reconfigurableenergy conversion systems. Additionally, small modular reactors are suitable for remote deployment tosupport highly localized microgrids in isolated, underdeveloped regions. The long-term economicviability of these advanced reactor plants depends on significant reductions in plant operations andmaintenance costs. To accomplish these goals, intelligent control and diagnostic capabilities are neededto provide nearly autonomous operations with anticipatory maintenance. A nearly autonomous controlsystem should enable automatic operation of a nuclear power plant while adapting to equipment faultsand other upsets. It needs to have many intelligent capabilities, such as diagnosis, simulation, analysis,planning, reconfigurability, self-validation, and decision. These capabilities have been the subject ofresearch for many years, but an autonomous control system for nuclear power generation remains as-yetan unrealized goal. This article describes a functional framework for intelligent, autonomous control thatcan facilitate the integration of control, diagnostic, and decision-making capabilities to satisfy theoperational and performance goals of power plants based on multimodular advanced reactors.

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