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Dynamical assessment of a PTGS with time delay

机译:具有时间延迟的PTGS的动态评估

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摘要

As power systems grow reliant on large-scale integration of renewable energy sources, pumped-storage power stations are being called on to provide greater adjustment capabilities. This study focuses on the stability and fast-slow dynamics of a pump-turbine governing system (PTGS). First, the time delay tau is considered into the PTGS since a lag in time exists between the signal and response in the hydraulic servo system. Second, six analytical expressions for the transfer coefficients of the guide vane opening in the process of wide-ranging load decrease are obtained utilising the complete characteristic curve of pump turbines. The effects of the time delay tau on system stability for the transient process are explored. Furthermore, considering the dynamic transfer coefficient e is a variable during the operation, the authors introduce the intermediate variable e as a periodic excitation into the PTGS. From the perspective of non-linear dynamics, the bursting oscillation behaviours of the multi-scale coupling system are analysed in detail. On the basis of practise engineering, the stability of the PTGS is studied in depth. All of the above methods and results supply the theoretical basis for maintaining a stable operation of pumped-storage power stations.
机译:随着电力系统越来越依赖于可再生能源的大规模整合,人们呼吁抽水蓄能电站提供更大的调节能力。这项研究的重点是水泵水轮机调节系统(PTGS)的稳定性和快慢动力学。首先,由于液压伺服系统中信号与响应之间存在时间滞后,因此将PTau视为时间延迟tau。其次,利用水泵水轮机的完整特性曲线,得出了在宽范围负荷减小过程中导叶开口传递系数的六个解析表达式。探索了时间tau对瞬态过程系统稳定性的影响。此外,考虑到动态传递系数e是运行期间的变量,作者将中间变量e作为周期性激励引入PTGS。从非线性动力学的角度,详细分析了多尺度耦合系统的爆发振荡行为。在实践工程的基础上,深入研究了PTGS的稳定性。以上所有方法和结果为维持抽水蓄能电站的稳定运行提供了理论基础。

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