风电双馈感应发电机开关频率降低的预测直接转矩和磁链控制

Yongchang Zhang, Zhengxi Li, Tianshi Wang, Jiefeng Hu, Jianguo Zhu
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引用次数: 9

摘要

针对风力发电中的双馈感应发电机(DFIG),提出了一种基于模型的预测转矩和磁链控制方法。与传统的基于开关表的直接转矩控制(DTC)从开关表中选择输出矢量不同,所开发的PTFC通过预测转子磁链和转矩随时间的演变来选择最合适的矢量,使其误差最小。与相同采样频率的直接转矩控制相比,开关频率较低的PTFC转矩和磁链波纹明显减小,但两者的动态性能相似。此外,通过在PTFC中加入频率降低,可以在不影响其性能的情况下将平均开关频率降低38.76%。给出了PTFC在低于550 Hz的极低开关频率下工作的结果,验证了PTFC满足大功率风能应用的低开关频率要求的能力。仿真结果验证了所提出的PTFC的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Predictive direct torque and flux control of doubly fed induction generator with switching frequency reduction for wind energy applications
A model based predictive torque and flux control (PTFC) is proposed in this paper for doubly fed induction generator (DFIG) applied in wind energy applications. Different from the conventional switching-table-based direct torque control (DTC), which selects the output vector from a switching table, the developed PTFC selects the most suitable vector minimizing the errors of rotor flux and torque based on predictions of their evolutions versus time. Compared to DTC with the same sampling frequency, there are significant reductions in both torque and flux ripples for PTFC with lower switching frequency, while their dynamic performances are similar. Furthermore, by incorporating the frequency reduction in PTFC, the average switching frequency can be reduced up to 38.76% without affecting its performance. The results of PTFC operating at a very low switching frequency of below 550 Hz are presented, validating the capability of PTFC to satisfy the low switching frequency requirement of high power wind energy applications. Simulation results are presented to validate the effectiveness of the proposed PTFC.
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