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Cascade multilevel inverters for utility applications

机译:用于公用事业的级联多电平逆变器

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Cascade multilevel inverters have been developed by the authors for utility applications. A cascade M-level inverter consists of (M-1)/2 H-bridges in which each bridge has its own separate DC source. The new inverter: (1) can generate almost sinusoidal waveform voltage while only switching one time per fundamental cycle, (2) can eliminate transformers of multipulse inverters used in conventional utility interfaces and static VAr compensators, and (3) makes possible direct parallel or series connection to medium- and high-voltage power systems without any transformers. In other words, the cascade inverter is much more efficient and suitable for utility applications than traditional multipulse and pulse width modulation (PWM) inverters. The authors have experimentally demonstrated the superiority of the new inverter for reactive power (VAr) and harmonic compensation. This paper summarizes features, feasibility, and control schemes of the cascade inverter for utility applications including utility interface of renewable energy, voltage regulation, VAr compensation, and harmonic filtering in power systems. Analytical, simulated, and experimental results demonstrate the superiority of the new inverters.
机译:级联多级逆变器已经由作者开发了公用事业应用。级联M级逆变器由(M-1)/ 2 H桥组成,每个桥都有自己的单独DC源。新的逆变器:(1)可以产生几乎正弦波的波形电压,同时仅在每个基本周期切换一次,(2)可以消除传统公用事业接口和静态VAR补偿器中使用的多集值逆变器的变压器,并且(3)可以直接平行或与中型和高压电源系统的串联连接,没有任何变压器。换句话说,级联逆变器比传统的多脉冲和脉冲宽度调制(PWM)逆变器更有效,适用于公用事业应用。作者已经通过实验证明了用于无功功率(VAR)和谐波补偿的新逆变器的优越性。本文总结了级联逆变器的功能,可行性和控制方案,用于公用事业应用,包括可再生能源,电压调节,VAL补偿和电力系统谐波滤波的实用界面。分析,模拟和实验结果表明了新逆变器的优越性。

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