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Maximum power extraction under different vector-control schemes and grid-synchronization strategy of a wind-driven Brushless Doubly-Fed Reluctance Generator

机译:不同载体控制方案下的最大功率提取和风力无刷双馈磁阻发生器的网格同步策略

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This paper proposes an advanced strategy to synchronize the wind-driven Brushless Doubly-Fed Reluctance Generator (BDFRG) to the grid-side terminals. The proposed strategy depends mainly upon determining the electrical angle of the grid voltage, theta(v), and using the same transformation matrix of both the power winding and grid sides to ensure that the generated power-winding voltage has the same phase-sequence of the grid-side voltage. On the other hand, the paper proposes a vector-control (power winding flux orientation) technique for maximum wind-power extraction under two schemes summarized as; unity power-factor operation and minimum converter-current. Moreover, a soft-starting method is suggested to avoid the employed converter over-current. The first control scheme is achieved by adjusting the command power-winding reactive power at zero for a unity power-factor operation. However, the second scheme depends on setting the command d-axis control-winding current at zero to maximize the ratio of the generator electromagnetic-torque per the converter current. This enables the system to get a certain command torque under minimum converter current. A sample of the obtained simulation and experimental results is presented to check the effectiveness of the proposed control strategies. (C) 2017 ISA. Published by Elsevier Ltd. All rights reserved.
机译:本文提出了一种先进的策略,将风力无刷双馈磁阻发生器(BDFRG)与网格侧端子同步。所提出的策略主要取决于确定电网电压,θ(v)的电角度,以及使用电力绕组和电网侧的相同变换矩阵,以确保产生的电力绕组电压具有相同的相位序列电网侧电压。另一方面,本文提出了用于在总结为的两种方案下的最大风力提取的矢量控制(功率绕组磁通方向)技术; Unity Power-Factor操作和最小转换器电流。此外,提出了一种软启动方法以避免采用的转换器过电流。通过将命令功率绕组无功功率调节为零以进行单位功率因子操作来实现第一控制方案。然而,第二方案取决于将命令D轴控制绕组电流设置为零,以最大化每个转换器电流的发电机电磁扭矩的比率。这使得系统能够在最小转换器电流下获得某个命令扭矩。提出了所得仿真和实验结果的样本,以检查所提出的控制策略的有效性。 (c)2017 ISA。 elsevier有限公司出版。保留所有权利。

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