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首页> 外文期刊>Annals of nuclear energy >Data-driven-based methodology to improve performance of reactor power regulation system in small pressurized water reactor
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Data-driven-based methodology to improve performance of reactor power regulation system in small pressurized water reactor

机译:基于数据驱动的方法,提高小加压水反应器中电抗器功率调节系统的性能

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摘要

Frequent and wide-range load changes in small pressurized water reactors applied for nuclear-powered devices are necessary under complex and harsh conditions. However, the traditional power regulation method does not consider the stroke of the control rod, which seriously affects the service life of the control rod drive mechanism. This paper proposes a data-driven reactor power regulation system (RPRS) based on the hybrid feedforward and feedback control theory. Different adjustment regions are set in the controller to adjust the proportion of the feedforward and feedback signals dynamically. The polynomial fitting method and particle swarm algorithm are applied to optimize the size of the different adjustment regions. Typical load change conditions are applied to test and verify that the data-driven RPRS can efficiently shorten the overshoot of the control rod position and improve the performance of the power regulation system. The robustness of the data-driven RPRS is also demonstrated by simulation. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在复杂和恶劣的条件下,适用于核动力装置的小加压水反应器中的频繁和广泛的负荷变化是必要的。然而,传统的功率调节方法不考虑控制杆的行程,这严重影响了控制杆驱动机构的使用寿命。本文提出了一种基于混合馈送和反馈控制理论的数据驱动的反应堆功率调节系统(RPRS)。在控制器中设置不同的调整区域以动态调整前馈和反馈信号的比例。应用多项式拟合方法和粒子群算法来优化不同调整区域的大小。应用典型的负载变化条件来测试和验证数据驱动的RPRS可以有效地缩短控制杆位置的过冲,提高功率调节系统的性能。通过模拟还证明了数据驱动RPRS的稳健性。 (c)2021 elestvier有限公司保留所有权利。

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