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An optimization based output power regulation in small modular reactors

机译:小型模块化反应堆中基于优化的输出功率调节

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Efficient controller tuning for novel designs of nuclear reactors is an ongoing research issue. An offline optimal PI regulator tuning has been accordingly addressed herein for the power control of a sodium-cooled small modular reactor. A dynamic model has been developed employing a 1-Fuel/2-Coolant (1F/2C) layout for the core and a permanent magnet dc motor as the control rod governor. A state space representation is characterized and the pertaining stability region is delineated in the (k(P), k(I)) plane for the plant linearized at the nominal operating point. Upon selection of an appropriate search scope within this zone, Differential Evolution (DE) and Firefly optimization algorithms are conducted in parallel to minimize certain error-based performance measures for the closed loop system. The step response for the closed loop nonlinear plant is resorted in this regard which would yield optimal PI pairs for each performance index. The two optimization schemes are thus compared in terms of convergence behavior and it can be figured out that the DE approach outperforms the Firefly scheme in this work. A less rippled convergence regime steadily stabilized at the optimal point is inspected in the former strategy. The latter method though quickly situates at the proximity of the optimal location, experiences persistent fluctuations therein which calls for a deeper search space comprising more samples.
机译:对于核反应堆新颖设计的有效控制器调整是一个持续的研究问题。因此,本文已解决了离线优化PI调节器调整的问题,以控制钠冷小型模块化反应堆的功率。已经开发出一种动态模型,该模型采用1-燃料/ 2冷却液(1F / 2C)布局作为磁芯,并使用永磁直流电动机作为控制杆调速器。对状态空间表示进行了表征,并在(k(P),k(I))平面中描绘了在标称工作点处线性化的工厂的相关稳定区域。在此区域内选择合适的搜索范围后,将并行执行差分进化(DE)和Firefly优化算法,以使闭环系统的某些基于错误的性能度量最小化。在这方面,采用了闭环非线性设备的阶跃响应,它将为每个性能指标提供最佳的PI对。因此,比较了两种优化方案在收敛性能方面的优势,可以看出在这项工作中DE方法的性能优于Firefly方案。在前一种策略中,检查了稳定在最佳点的波动较小的收敛机制。后一种方法虽然很快位于最佳位置附近,但在其中经历了持续的波动,这要求包含更多样本的更深的搜索空间。

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