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首页> 外文期刊>IEEE Transactions on Nuclear Science >Adaptive neurofuzzy controller to regulate UTSG water level in nuclear power plants
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Adaptive neurofuzzy controller to regulate UTSG water level in nuclear power plants

机译:自适应神经模糊控制器,用于调节核电站的UTSG水位

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摘要

A data-driven adaptive neurofuzzy controller is presented for the water-level control of U-tube steam generators in nuclear power plants. This neurofuzzy controller is capable of learning the control action principles from the data obtained using other methods of automatic or manual control. There are four inputs in the neurofuzzy system, yet only eighty fuzzy rules involved. Therefore, the fuzzy system is versatile and moderately compact. The versatility is due to the higher input space dimension that helps to learn more control principles. The compactness is due to the number of rules being not too many. A 10-h evaluation trial of the trained fuzzy controller demonstrated its capability in regulating the water level under random disturbances and reference level changes.
机译:提出了一种数据驱动的自适应神经模糊控制器,用于核电站U型管蒸汽发生器的水位控制。这种神经模糊控制器能够从使用其他自动或手动控制方法获得的数据中学习控制动作原理。神经模糊系统中有四个输入,但仅涉及80条模糊规则。因此,模糊系统是通用的并且具有适度的紧凑性。多功能性归因于较高的输入空间尺寸,有助于学习更多的控制原理。紧凑性是由于规则的数量不太多。训练有素的模糊控制器的10小时评估试验证明了其在随机干扰和参考水位变化下调节水位的能力。

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