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Impact of distributed synchronous and doubly-fed induction generators on small-signal stability of a distribution network

机译:分布式同步和双馈感应发电机对配电网小信号稳定性的影响

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The increase in the demand for electric energy, the technological developments, and the environmental problems have led to a strong trend for the use of distributed generation (DG) in power systems. This kind of generation presents many advantages over the conventional centralized generation (as for example, low environmental impact and reduction of the transmission losses). However, the distributed generation units (DGUs) may affect the power system dynamics in a meaningful way. In the context of small-signal stability, this work investigates electromechanical oscillations caused by DGUs connected to distribution networks. The carried out study takes into account two kinds of DGUs widely employed nowadays: synchronous generator (SG) and wind energy conversion system based on doubly-fed induction generator (DFIG). The main factors affecting the electromechanical oscillations of DGUs based on SG and DFIG are discussed and evaluated. The possible interactions between SG and DFIG, operating simultaneously in a distribution system, are also evaluated.
机译:电能需求的增长,技术的发展以及环境问题已导致在电力系统中使用分布式发电(DG)的强烈趋势。与常规的集中式发电相比,这种发电具有许多优势(例如,对环境的影响小和传输损耗的降低)。但是,分布式发电单元(DGU)可能以有意义的方式影响电力系统的动态。在小信号稳定性的背景下,这项工作研究了由连接到配电网的DGU引起的机电振荡。进行的研究考虑了当今广泛使用的两种DGU:同步发电机(SG)和基于双馈感应发电机(DFIG)的风能转换系统。讨论并评估了影响基于SG和DFIG的DGU机电振荡的主要因素。还评估了在分配系统中同时运行的SG和DFIG之间可能的交互作用。

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