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Stability Analysis of a Run-of-River Diversion Hydropower Plant with Surge Tank and Spillway in the Head Pond

机译:带潮流罐和溢流道的河流导流水电站稳定性分析

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Run-of-river hydropower plants usually lack significant storage capacity; therefore, the more adequate control strategy would consist of keeping a constant water level at the intake pond in order to harness the maximum amount of energy from the river flow or to reduce the surface flooded in the head pond. In this paper, a standard PI control system of a run-of-river diversion hydropower plant with surge tank and a spillway in the head pond that evacuates part of the river flow plant is studied. A stability analysis based on the Routh-Hurwitz criterion is carried out and a practical criterion for tuning the gains of the PI controller is proposed. Conclusions about the head pond and surge tank areas are drawn from the stability analysis. Finally, this criterion is applied to a real hydropower plant in design state; the importance of considering the spillway dimensions and turbine characteristic curves for adequate tuning of the controller gains is highlighted.
机译:河流水电站通常缺乏显着的储存能力;因此,更具足够的控制策略将包括在进气池保持恒定的水位,以利用河流流动的最大能量或减少头部池塘中淹没的表面。本文研究了河流导流水电站的标准PI控制系统,采用浪涌罐和溢出河流的溢洪道,疏散河流流量厂的一部分。提出了一种基于Routh-Hurwitz标准的稳定性分析,提出了用于调整PI控制器的增益的实际标准。关于头部池塘和浪涌罐区域的结论是从稳定性分析中提取的。最后,该标准应用于设计状态的真正水电站;考虑溢洪道尺寸和涡轮机特性曲线的重要性,突出了控制器增益的足够调谐。

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