仿真结果表明,所提出的方法能够正确地辨识核动力蒸汽发生器的水位特性,且具有较高的辨识精度。
The proposed method that can identify the characteristic of NSG water level correctly and has enough precision of identification is demonstrated by computer simulation.
本文针对传统的核动力蒸汽发生器水位PID控制方法存在的缺点,将神经网络方法与PID控制的结构结合起来,提出了核动力蒸汽发生器水位神经自适应PID控制方法。
The method of adaptive neural-PID control that combines neural network and PID control is put forward in allusion to shortcoming of conventional PID control for nuclear steam generator water level.
报道了某核动力系统蒸汽发生器,因管束的应力腐蚀破裂而发生严重泄漏事故的原因和规律。
The reasons and regularity of pipe stress corrosion cracking of some nuclear-powered steam generator was summarized, which caused serious leaking accident.
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