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Design and control of a single-phase D-STATCOM inverter for wind applications

机译:用于风应用的单相D-Statcom逆变器的设计与控制

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Application of renewable energy systems has become very popular. Since most utilities do not track the end points of their distribution lines carefully, where most of the wind turbines are connected to the grid, increasing the application of renewable energies in utilities can result in problems for the whole system dynamics. This paper presents the design and control of a D-STATCOM inverter for small to mid-sized wind turbines (10kW–20kW) to solve the problem of power factor correction of the grid. The proposed D-STATCOM Inverter can control the VARs on each single feeder line while the output of the renewable energy source, especially wind, is varying. Active power is controlled by shifting the phase angle while reactive power control is achieved by modulation index control. Also, the inverter is able to eliminate a large amount of harmonics using the optimized harmonic stepped waveform (OHSW) technique. The proposed inverter utilizes the hybrid-clamped topology. All simulations were done in MATLAB/Simulink environment.
机译:可再生能源系统的应用变得非常受欢迎。由于大多数公用事业公司不仔细跟踪其分销线的终点,其中大多数风力涡轮机连接到电网,因此增加了可再生能源在公用事业中的应用可能导致整个系统动态的问题。本文介绍了D-Statcom逆变器的设计和控制,用于小于中型风力涡轮机(10kW-20kW),以解决电网的功率因数校正问题。所提出的D-Statcom逆变器可以控制每个馈线线上的变量,同时可再生能源,尤其是风的输出变化。通过转移相位角来控制电力,而通过调制指数控制实现无功功率控制。而且,逆变器能够使用优化的谐波阶梯波形(OHSW)技术来消除大量的谐波。所提出的逆变器利用混合夹紧的拓扑。所有模拟都在Matlab / Simulink环境中完成。

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