用全局优化方法确定控制棒位置

Zhang Qian, Zhihong Liu, Jing Zhao
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引用次数: 0

摘要

提出了利用中子探测器显示的通量值求控制棒隐式位置的方法。利用三维岩心物理分析程序CPACT,可以计算出一组预测杆位的探测器响应。对于双重决斗问题,可以建立函数来描述预测与目标之间的差异。在反问题的框架下,运用组合优化方法,通过迭代将杆位预测更新为收敛的结果。通过这种方法,在充分验证了正演计算软件模拟真实情况的情况下,保证了计算结果与物理场和热场的自一致,同时达到稳定收敛。同时,需要适当的计算成本,并且可以根据时间公差进行调整。因此,我们比较了几种全局搜索算法(遗传算法、粒子群算法和特征统计算法)的性能。我们还可以得出隐藏特征和中间计算结果对提高搜索效率很重要的结论。然而,探测器对一些远杆的响应不明显,不容易确定。所有方法都在一个压水堆的数值计算实例上进行了验证。
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Determination of Control Rod Position by Global Optimization Methods
The method is developed to find the implicit position of the control rod using the flux value shown by the neutron detectors. When using the 3D core physics analysis code CPACT, the detector response of a set of predicted rod positions can be calculated. On a double duel problem, functions can be built to describe the difference between the prediction and the target. Under the frame of the inverse problem, combinatorial optimization methods are operated to renew the prediction of rod positions by iteration to a result with convergence. By such a method, the results are guaranteed to achieve the self-consistent with the physical and thermal field while reaching stable convergence when the forward calculation software has been fully verified to simulate the real case. In the meanwhile, the appropriate computational cost is needed and can be adjusted with time tolerance. So, we have compared several global search algorithms (Genetic Algorithm, Particle Swarm Optimization, and Characteristic Statistic Algorithm) with their performance. We can also get the conclusion that hidden features and intermediate calculation results are important to improve the search efficiency. However, the responses of the detectors to some remote rods are not obvious, which are not easy to determine. All the methods were tested on the numerical calculation examples of a pressurized water reactor case.
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