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Wind Energy System With Integrated Functions of Active Power Transfer, Reactive Power Compensation, and Voltage Conversion

机译:集成了有功功率传输,无功补偿和电压转换功能的风能系统

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摘要

As the power of wind energy system increases, the control of their active and reactive power becomes increasingly more important from a system standpoint given that these are typical frequency and voltage control parameters. In this paper, a family of wind energy systems with integrated functions of active power transfer, reactive power compensation, and voltage conversion is proposed. The proposed wind energy systems using solid-state transformer (SST) can effectively suppress the voltage fluctuation caused by the transient nature of wind energy without additional reactive power compensator and, as such, may enable the large penetration of wind farm (WF) into the power grid. To this end, a simulation study for WF driven by squirrel-cage induction generators is presented to verify the effectiveness of the proposed system. In addition, a modular-type high-voltage and high-power three-phase SST topology is presented for the proposed system, and its basic building block, which is a single-phase SST, is analyzed. The functions of SST in the presented wind energy system are verified in a single-phase laboratory prototype with scaled-down experiments. Lastly, cost issue of the proposed technology is analyzed with comparison to the traditional one.
机译:随着风能系统功率的增加,鉴于系统是典型的频率和电压控制参数,从系统角度来看,对其有功功率和无功功率的控制变得越来越重要。本文提出了具有集成的有功功率传输,无功功率补偿和电压转换功能的风能系统系列。提出的使用固态变压器(SST)的风能系统可以有效地抑制由风能的瞬态特性引起的电压波动,而无需额外的无功功率补偿器,因此可以使风电场(WF)大量渗透到风电场中。电网。为此,提出了由鼠笼式感应发电机驱动的WF的仿真研究,以验证所提出系统的有效性。此外,针对所提出的系统,提出了一种模块化的高压大功率三相SST拓扑,并分析了其基本构建模块,即单相SST。 SST在提出的风能系统中的功能已在按比例缩小实验的单相实验室原型中得到验证。最后,与传统技术相比,分析了所提出技术的成本问题。

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