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An Energy-efficient Switching Scheme with Reduced Switching Transients for a Wind-driven Induction Generator

机译:一种用于风力感应发电机的具有降低的开关瞬变的节能开关方案

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This article presents a scheme for improving the power output of grid-connected induction generator commonly used in wind energy conversion systems. Generally, the stator of the induction generator is connected in a star with a line voltage of √3 times the rated winding voltage to reduce the line current and, hence, conductor size. To extend the generating operation over a wider speed range, delta-star switchable stator windings are also in vogue. In such cases, the stator is star connected in the lower speed range and switched to a delta connection above a threshold speed. In this study, a new switching scheme is proposed wherein the stator coils are always connected in a star, while the stator is connected to different voltages in low- and high-speed conditions. At low wind speeds, nominal winding voltage is applied to the stator, whereas at higher speeds, the stator applied voltage is √3 times higher than the rated winding voltage. The efficacy of the scheme is demonstrated experimentally with a suitable microcontroller-based switching arrangement. Typical results indicate an increase in output with reduced switching transients. A case study on a 3-Φ, 50-kW induction generator is presented to emphasize the performance improvement with the proposed scheme.
机译:本文提出了一种用于改善风能转换系统中常用的并网感应发电机的功率输出的方案。通常,感应发电机的定子以星形线连接,线电压为额定绕组电压的√3倍,以减小线电流,从而减小导体尺寸。为了将发电操作扩展到更宽的速度范围,三角星形可切换定子绕组也正在流行。在这种情况下,定子在较低速度范围内呈星形连接,并切换到高于阈值速度的三角形连接。在这项研究中,提出了一种新的开关方案,其中定子线圈始终以星形连接,而定子在低速和高速条件下连接到不同的电压。在低风速下,向定子施加额定绕组电压,而在高风速下,定子施加的电压比额定绕组电压高√3倍。该方案的有效性通过合适的基于微控制器的开关装置通过实验证明。典型结果表明输出增加而开关瞬变减少。提出了一个3Φ50 kW感应发电机的案例研究,以强调所提出方案的性能改进。

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