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Design of integrated synergetic controller for the excitation and governing system of hydraulic generator unit

机译:水轮发电机组励磁调节系统集成协同控制器的设计

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Synergetic control theory is introduced into hydraulic generator excitation system (HGES) and hydraulic generator governing system (HGRS) in this paper. Synergetic excitation controller (SEC), synergetic governing controller (SGC) of HGU have been designed. In order to enhance the terminal voltage control and mechanical power tracking performances simultaneously, the integrated synergetic controller (ISC) is also proposed. ISC implements synergetic control of terminal voltage, rotor speed, mechanical input power and guide vane opening. Namely, the ISC is considering both of the excitation system and governing system of hydraulic generator unit (HGU), which can provide control function instead of SEC and SGC. In addition, the control rules of the aforementioned three controllers are deduced from the nonlinear mathematical analytic model of hydroelectric generator unit. At the end of this paper, comparative case studies between the proposed SGC, SEC, ISC and classic PID controller are presented. The results show that the proposed ISC improves the nonlinear HGU system performance with a more accurate precision and shorter settling time in different operating conditions.
机译:本文将协同控制理论引入到水轮发电机励磁系统(HGES)和水轮发电机调节系统(HGRS)中。设计了HGU的协同励磁控制器(SEC),协同控制控制器(SGC)。为了同时提高端子电压控制和机械功率跟踪性能,还提出了集成协同控制器(ISC)。 ISC对端子电压,转子速度,机械输入功率和导叶打开进行协同控制。即,ISC正在考虑水力发电机组(HGU)的励磁系统和调节系统,它们可以提供控制功能,而不是SEC和SGC。另外,从水力发电机组的非线性数学分析模型推导了上述三个控制器的控制规则。在本文的最后,给出了建议的SGC,SEC,ISC和经典PID控制器之间的比较案例研究。结果表明,提出的ISC在不同的工作条件下以更高的精度和较短的建立时间改善了非线性HGU系统的性能。

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