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首页> 外文期刊>Journal of Dynamic Systems, Measurement, and Control >Pelton Turbine Needle Control Model Development, Validation, and Governor Designs
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Pelton Turbine Needle Control Model Development, Validation, and Governor Designs

机译:Pelton涡轮机针控制模型的开发,验证和调速器设计

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摘要

Underspeed needle control of two Pelton turbine hydro units operating in a small power system has caused many incidents of partial system blackouts. Among the causes are conservative governor designs with regard to small signal stability limits, nonminimum phase power characteristics, and long tunnel-penstock traveling wave effects. A needle control model is developed from "water to wires" and validated for hydro-turbine dynamics using turbine test data. Model parameters are tuned using a trajectory sensitivity method. In the governor design proposed here the needle regulation gains are distributed into the power and frequency governor loops with a multi-timescale approach. Elements of speed loop gain scheduling and a new inner-loop pressure stabilization circuit are devised to improve the frequency regulation and to damp the traveling wave effects. Simulation studies show the improvements of the proposed control designs.
机译:在小型电力系统中运行的两个Pelton涡轮水力机组的低速针控制导致了许多系统局部停电的事件。原因之一是保守的调速器设计,涉及小信号稳定性限制,非最小相位功率特性以及长隧道-管道行波效应。从“水到电线”开发了一个针控制模型,并使用涡轮测试数据对水轮机动力学进行了验证。使用轨迹灵敏度方法调整模型参数。在这里提出的调速器设计中,针调节增益通过多时标方法分配到功率和频率调速器环路中。设计了速度环增益调度的元素和新的内环压力稳定电路,以改善频率调节并抑制行波效应。仿真研究表明了所提出的控制设计的改进。

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