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首页> 外文期刊>Annals of nuclear energy >Multimodel-based power-level control with state-feedback and observer for load-follow PWR core
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Multimodel-based power-level control with state-feedback and observer for load-follow PWR core

机译:具有状态反馈和观察器的基于多模型的功率级控制,用于负载跟踪PWR磁芯

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摘要

The purpose of this investigation is that a nonlinear Pressurized Water Reactor (PWR) core load following control system is designed and the global stability of the system is analyzed theoretically. On the basis of modeling a nonlinear PWR core and proposing the equilibrium manifold and the nonlinearity measure of the core to calculate the distribution situation of the core nonlinearity measure in the entire range of power level, linearized models of the core at five power levels are chosen as local models of the core and the set of local models is used to substitute the nonlinear core model. The full-state feedback control with a full-order observer is utilized to design a controller with robustness of every local model, which is treated as a local controller of the nonlinear core. The Kalman filter is contrived as an observer with robustness and the state feedback design with robustness is implemented via the robust pole assignment method. With the local models and local controllers, the flexibility partitioning of model and control is presented to design a decent flexibility controller of the nonlinear core at a random power level. A nonlinear core model and a flexibility controller at a random power level compose a core load following control subsystem. The combination of core load following control subsystems at all power levels is the core load following control system. Two global stability theorems are deduced to define that the core load following control system is globally asymptotically stable within the whole range of power level. Finally, the core load following control system is simulated and simulation results show that the control system is effective.
机译:本研究的目的是设计一种非线性压水堆堆芯负荷跟踪控制系统,并对系统的整体稳定性进行理论分析。在对非线性压水堆堆芯进行建模的基础上,提出平衡流形和堆芯的非线性度量,以计算堆芯非线性度量在整个功率水平范围内的分布情况,选择了五个功率等级的堆芯线性化模型。作为核心的局部模型,并且使用局部模型集来替代非线性核心模型。具有全阶观测器的全状态反馈控制被用于设计具有每个局部模型的鲁棒性的控制器,该控制器被视为非线性核的局部控制器。卡尔曼滤波器被设计为具有鲁棒性的观察者,并且通过鲁棒极点分配方法实现了具有鲁棒性的状态反馈设计。利用局部模型和局部控制器,提出了模型和控制的灵活性划分,以设计随机功率水平的非线性核的体面柔性控制器。非线性核心模型和随机功率级别的柔性控制器组成了跟随控制子系统的核心负载。在所有功率级别上,核心负荷跟随控制子系统的组合是核心负荷跟随控制系统。推导了两个全局稳定性定理,以定义控制系统中的核心负载在整个功率水平范围内是全局渐近稳定的。最后,对核心负荷跟随控制系统进行了仿真,仿真结果表明该控制系统是有效的。

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