首页> 外文会议>International conference on electrical machines and systems (ICEMS2007) >Maximum Power Point Tracking Control and Voltage Regulation of a DC Grid-Tied Wind Energy Conversion System based on a Novel Permanent Magnet Reluctance Generator
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Maximum Power Point Tracking Control and Voltage Regulation of a DC Grid-Tied Wind Energy Conversion System based on a Novel Permanent Magnet Reluctance Generator

机译:基于新型永磁磁阻发电机的直流并网风能转换系统的最大功率点跟踪控制和电压调节

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This research paper aims to employ a new permanent magnet reluctance generator in a variable speed wind energy conversion system (WECS) of a grid-tied distributed generation application. The grid integration of WECS is achieved through cascaded dc-dc converters ensuring maximum power extraction from the wind energy while maintaining a constant output voltage at the grid side. The surplus power is stored in a capacitor bank that is located in between the cascaded converters. The implemented maximum power point tracking (MPPT) control is a hill climb searching (HCS) algorithm that does not require the knowledge of turbine or generator characteristics. However this paper proposes a simple modification in the conventional perturb and observe (P&O) type HCS control and that is to use a 2-valued perturbation step instead of the constant one. A larger perturbation step is used when the operating point is away from the optimal and therefore a faster convergence to the MPP is achieved. On the other hand a small perturbation step is adopted at the end of convergence in order to have the minimum possible oscillations about MPP. A Simplorer-Simulink interface is developed to simulate and verify the proposed control scheme. The results confirm the maximum power trackability and robust voltage regulation of the control system under varying wind conditions and load disturbances.
机译:本研究论文旨在在并网分布式发电应用的变速风能转换系统(WECS)中采用新型永磁磁阻发电机。 WECS的电网集成是通过级联的DC-DC转换器实现的,可确保从风能中提取最大功率,同时在电网侧保持恒定的输出电压。多余的功率存储在位于级联转换器之间的电容器组中。实施的最大功率点跟踪(MPPT)控制是爬山搜索(HCS)算法,不需要了解涡轮机或发电机的特性。但是,本文提出了对常规扰动和观测(P&O)类型的HCS控制的简单修改,即使用2值扰动步长而不是恒定步长。当工作点偏离最佳点时,将使用较大的扰动步骤,因此可以更快地收敛到MPP。另一方面,在收敛结束时采取了一个小的扰动步骤,以使关于MPP的振荡最小。开发了一个Simplorer-Simulink接口来模拟和验证所提出的控制方案。结果证实了在变化的风况和负载扰动下控制系统的最大功率可追踪性和稳健的电压调节能力。

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