提高并网双馈感应发电机无功能力

N. Ogbogu, A. Adeniyi D.
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引用次数: 1

摘要

由于风电在电力系统中的发电量不断增加,风电场的无功发电在稳态和故障工况下都是一个主要问题。首先,在考虑转子电压、转子电流和定子电流三个限制条件下,利用最大功率点跟踪(MPPT)算法,给出了双馈异步发电机(DFIG)在最优转子转速下的全运行范围内无功能力(RPC)曲线。确定了总无功发电量在低速时受转子电压限制,在高速时受转子电流限制。然而,在整个工作区域,总无功功耗受定子电流的限制。部分额定变流器额定值的选择在成本、效率、运行速度范围和无功能力方面至关重要。分析了变流器额定值对提高双馈感应发电RPC性能的影响。考虑电网侧变流器对无功容量的贡献,建立了不同定子电压下DFIG的完整容量曲线。
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Improving the Reactive Power Capability of Grid Connected Doubly Fed Induction Generator
Due to increasing wind power generation in the electric power system, the reactive power generation by the wind farms is a major concern during both steady state and faulty conditions. This work, first, presents the reactive power capability (RPC) curve of doubly-fed induction generator (DFIG) considering three limitations (rotor voltage, rotor current and stator current) for reactive power production/consumption, for the complete operating range which is obtained by optimal rotor speed employing maximum power point tracking (MPPT) algorithm. It is established that the total reactive power generation is limited by rotor voltage at low speeds and by rotor current at higher speed. However, the total reactive power consumption is limited by stator current, for entire operating region. Selection of partial rated converter rating is crucial in terms of cost, efficiency, operating speed range and reactive power capability. The effect of converters rating on the enhancement of RPC of doubly fed induction generation is analyzed. Complete capability curves of DFIG for different stator voltages are developed considering grid-side converter (GSC) contribution towards reactive power capability.
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