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Sensitivity analysis of load-damping, generator inertia and governor speed characteristics in hydraulic power system frequency regulation

机译:水力发电系统调频中负载阻尼,发电机惯量和调速器转速特性的灵敏度分析

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Maintaining the balance of generation and load is the most important factor in a power system for frequency regulation. Recently, controllable load and renewable energy are integrated increasingly in power grid. In practice, this may have substantial impact on system frequency response (SFR). This paper investigates the effect of load-damping, generator inertia and governor speed characteristics on system frequency using typical SFR model with hydraulic generation. Theoretic analysis based on transfer functions shows that the frequency deviation under variable load-damping, generator inertia and governor speed coefficients is relatively small and bounded when the power system is essentially stable; while the frequency deviation can be accelerated when a power system is unstable after disturbance. Multiple-machine cases are also included in the analysis with verifications by simulation studies. The conclusion can be useful for system operators for decision-making of frequency regulation or load control.
机译:保持发电和负载的平衡是电力系统中进行频率调节的最重要因素。最近,可控负载和可再生能源越来越多地集成到电网中。实际上,这可能会对系统频率响应(SFR)产生重大影响。本文使用带水力发电的典型SFR模型,研究了负载阻尼,发电机惯性和调速器转速特性对系统频率的影响。基于传递函数的理论分析表明,在电力系统基本稳定的情况下,可变负荷阻尼,发电机惯量和调速器速度系数下的频率偏差相对较小,有界。当电力系统受到干扰后变得不稳定时,可以加快频率偏差。分析中还包括多机案例,并通过模拟研究进行了验证。该结论对于系统运营商进行频率调节或负载控制的决策很有用。

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