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Genetic algorithm based risk-cost analysis of Neutron Flux Monitoring System for Prototype Fast Breeder Reactor

机译:基于遗传算法的原型快繁反应堆中子通量监测系统风险成本分析

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The risk-cost analysis for safety critical systems of nuclear power plants (NPPs) are very useful in safe, economical and effective design and operation of such plants. The issue of risk effectiveness versus associated costs is an optimization problem where two separate cases can be considered. First one is the cost minimization while the performance or unavailability is constrained to be at a given level. The second case is the maximization of availability or performance for the given cost level. In this study a maintenance risk-cost model is established for a safety critical system i.e. triplicated neutronic channels of a 500 MWe fast breeder nuclear reactor and a genetic algorithm (GA) is applied to solve the model to get the global optimized maintenance strategy. The results obtained are validated with the reference study results.
机译:核电厂安全关键系统的风险成本分析对于此类电厂的安全,经济和有效设计和运营非常有用。风险有效性与相关成本的关系是一个优化问题,可以考虑两个单独的案例。第一个是成本最小化,而性能或不可用性则被限制在给定的水平上。第二种情况是给定成本水平下的可用性或性能最大化。在这项研究中,建立了一个安全关键系统的维护风险成本模型,即500 MWe快速增殖核反应堆的三重中子通道,并应用了遗传算法(GA)对该模型进行求解以获得全局优化的维护策略。获得的结果与参考研究结果进行了验证。

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