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Steady State Performance Analysis of DFIG with Different Magnetizing Strategies in a Pitch-Regulated Variable Speed Wind Turbine

机译:具有不同磁化策略的DFIG在俯仰变速风力涡轮机中的DFIG稳态性能分析

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The integration of wind energy in the conventional grid is increasing day by day because of its abundant, affordable, and eco-friendly nature. With the advancements in wind technology, researchers develop adequate methods and algorithms to control and to make it an efficient and reliable source of energy. Their main goal is to tackle the limitations and issues of double fed induction generators (DFIG) by introducing robust controls. This research work presents a steady state model and detailed analysis of pitch-regulated variable speed DFIG based wind turbines. Two magnetizing strategies in stator flux-oriented vector control are discussed. Steady state performance of DFIG is achieved by magnetization of stator and rotor. Simulation results indicate that magnetization of DFIG through stator requires a higher stator current and a smaller rotor current than that required for rotor-based magnetization. Moreover, it is found that magnetization through stator implies better efficiency and lesser power loss as compared to the DFIG magnetized through the rotor.
机译:由于其丰富,价格实惠和生态的性质,在传统网格中的整合在传统网格中的整合正在增加。随着风技术的进步,研究人员开发了适当的方法和算法来控制,并使其成为一种有效且可靠的能量来源。它们的主要目标是通过引入强大的控制来解决双馈感应发电机(DFIG)的局限性和问题。本研究工作呈现稳态模型,并详细分析了基于俯仰的变速DFIG的风力涡轮机。讨论了定子磁通芯矢量控制中的两个磁化策略。通过定子和转子的磁化实现DFIG的稳态性能。模拟结果表明,DFIG通过定子的磁化需要更高的定子电流和比基于转子的磁化所需的转子电流较小的转子电流。此外,与通过转子磁化的DFIG相比,通过定子磁化通过定子磁化均匀效率和较小的功率损耗。

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