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Transient stability augmentation of hybrid power system based on synthetic inertia control of DFIG

机译:基于DFIG综合惯性控制的混合动力系统暂态稳定性增强。

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Integration of large scale renewable energy sources (RESs), such as: wind power and photovoltaic (PV) plants, into the power system decreases the dependence on fossil fuel. Therefore, the total system inertia will be reduced because of gradual replacement of the conventional synchronous generators (SGs). This paper proposes a new method to enhance the transient stability of the power system with RESs introduced, in which variable speed wind turbine with doubly fed induction generator (VSWT-DFIG) supplies its kinetic energy (KE) during generation outage to stabilize conventional SGs. A suitable fuzzy logic based synthetic inertia controller is proposed to supply the KE effectively during transient period. This fuzzy logic controller (FLC) can continuously adjust the synthetic inertia controller gain depending upon the incoming wind speed. The effectiveness of the proposed synthetic inertia control method has been verified through simulation analyses on a hybrid power system model composed of DFIG, PV plant and SGs.
机译:将大型可再生能源(RES)(例如:风能和光伏(PV)电厂)集成到电力系统中可减少对化石燃料的依赖。因此,由于逐渐替换了传统的同步发电机(SGs),总的系统惯量将减小。本文提出了一种通过引入RES来增强电力系统暂态稳定性的新方法,该方法中,带有双馈感应发电机的变速风力涡轮机(VSWT-DFIG)在发电中断期间提供其动能(KE),以稳定常规SG。提出了一种基于模糊逻辑的合成惯性控制器,以在瞬态期间有效地提供KE。该模糊逻辑控制器(FLC)可以根据传入的风速连续调节合成惯性控制器的增益。通过对DFIG,PV工厂和SGs组成的混合电力系统模型进行仿真分析,验证了所提出的合成惯性控制方法的有效性。

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