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Non linear Dynamic Inversion based controller design for load following operations in Pressurized Water Reactors with bounded Xenon oscillations

机译:基于非线性动态反转的控制器设计,用于氙约束振荡的压水堆中的负荷跟随操作

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Nuclear Power Plants mostly act as base-load stations mainly because of constraints on rate of reactivity addition. In order that such plants operate as commercially viable entities, it is necessary that they are capable of operating as load following stations. The inherently self-regulating nature of a Pressurized Water Reactor (PWR) makes it a natural choice for load followers. However, this entails an associated problem of periodic variation in spatial concentrations of the burnable neutron poison Xenon which alters the spatial flux profile substantially within the reactor core, and this phenomenon is known as Xenon oscillation. This paper proposes a nonlinear controller design methodology based on Nonlinear Dynamic Inversion (NDI) which is coupled with constrained optimization to develop a tracking controller that achieves load following operation of a PWR over a wide range of reactor power with no Xenon oscillations and satisfies the operational constraints of the reactor imposed by reactivity worth of the control devices and allowable fuel and coolant temperatures.
机译:核电厂主要充当基本负荷站,主要是因为增加了反应活性。为了使这类工厂作为商业上可行的实体运行,有必要使其能够作为负荷跟踪站运行。压水堆(PWR)固有的自我调节特性使其成为负载跟随器的自然选择。但是,这带来了一个相关的问题,即可燃中子氙气的空间浓度发生周期性变化,从而实质上改变了反应堆堆芯内的空间通量分布,这种现象被称为氙振荡。本文提出了一种基于非线性动态反演(NDI)的非线性控制器设计方法,该方法与约束优化相结合,开发出一种跟踪控制器,该跟踪控制器可在无氙气振荡的情况下,在较大的反应堆功率范围内实现PWR的负载跟踪操作,并满足操作要求控制设备的反应性以及允许的燃料和冷却剂温度对反应堆的限制。

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