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Axial offset control of PWR nuclear reactor core using intelligent techniques

机译:利用智能技术控制压水堆核反应堆堆芯的轴向偏移

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Improved load following capability is one of the main technical performances of advanced PWR (APWR). Controlling the nuclear reactor core during load following operation encounters some difficulties. These difficulties mainly arise from nuclear reactor core limitations in local power peaking, while the core is subject to large and sharp variation of local power density during transients. Axial offset (AO) is the parameter usually used to represent of core power peaking, in form of a practical parameter. This paper, proposes a new intelligent approach to AO control of PWR nuclear reactors core during load following operation. This method uses a neural network model of the core to predict the dynamic behavior of the core and a fuzzy critic based on the operator knowledge and experience for the purpose of decision-making during load following operations. Simulation results show that this method can use optimum control rod groups maneuver with variable overlapping and may improve the reactor load following capability.
机译:改进的负载跟随能力是高级PWR(APWR)的主要技术性能之一。在负荷跟踪操作期间控制核反应堆堆芯遇到一些困难。这些困难主要是由核反应堆堆芯在局部功率峰值中的局限性引起的,而堆芯在瞬态过程中会受到局部功率密度大而急剧的变化的影响。轴向偏移(AO)是通常以实际参数的形式表示核心功率峰值的参数。本文提出了一种新的智能方法,在负荷跟踪运行过程中,对压水堆核反应堆堆芯进行AO控制。该方法使用堆芯的神经网络模型来预测堆芯的动态行为,并基于操作员的知识和经验来进行模糊评判,以便在负荷跟踪操作期间进行决策。仿真结果表明,该方法可以采用最优的控制杆群机动,且具有可变的重叠度,可以提高反应堆负荷跟随能力。

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