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Frequency Stability of Isolated Hydropower Plant with Surge Tank Under Different Turbine Control Modes

机译:不同汽轮机控制模式下带调压井的隔离水电厂的频率稳定性。

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Currently, the Thoma criterion is often violated to diminish the cross-section of the surge tank; therefore, the surge fluctuation is aggravated and the frequency stability becomes more deteriorative. The focus of this article is on stabilizing the low-frequency oscillation of an isolated hydropower plant caused by surge fluctuation. From a new perspective of hydropower plant operation mode, frequency stability under power control is investigated and compared with frequency control by adopting the Hurwitz criterion and numerical simulation. In a theoretical derivation, the governor equations of frequency control and power control are introduced to the mathematical model. For numerical simulation, a governor model with a control mode switch-over function is built. The frequency oscillations under frequency control, power control, and control mode switch-over are simulated and investigated, respectively, with different governor parameters and operation cases. The result shows that the power control has a better performance on frequency stability at the expense of rapidity compared with the frequency control. Other recommendations regarding worst operation cases and choice of control modes are also developed.
机译:当前,经常违反Thoma标准以减小调压罐的横截面。因此,电涌波动加剧,频率稳定性变差。本文的重点是稳定由浪涌波动引起的隔离水电站的低频振荡。从水电厂运行方式的新视角,研究了功率控制下的频率稳定性,并采用Hurwitz准则和数值模拟方法将其与频率控制进行了比较。在理论推导中,将频率控制和功率控制的调节器方程式引入数学模型。为了进行数值模拟,建立了具有控制模式切换功能的调速器模型。在不同的调速器参数和工作情况下,分别对频率控制,功率控制和控制模式切换下的频率振荡进行了仿真和研究。结果表明,与频率控制相比,功率控制在频率稳定性方面具有更好的性能,但速度却很快。还提出了有关最坏运行情况和控制模式选择的其他建议。

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