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An inclusive review on different multi-level inverter topologies, their modulation and control strategies for a grid connected photo-voltaic system

机译:并网评估不同级别的逆变器拓扑,并网光伏系统的调制和控制策略

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摘要

The popularity of multi-level inverters (MLIs) for high power and high voltage applications, is increasing day-by-day. These MLIs are being integrated with the grid for renewable energy extraction like solar photovoltaic (PV) system. The MLI produces a staircase output voltage with low harmonic content and may inject a sinusoidal grid current with improved power factor. Thus, the MLI based grid-tied PV system can operate at the lower switching frequency with reduced filter requirements. This paper presents the various MLIs, their modulation and control techniques for the grid connected applications. A detailed classification of different grid connected Multi-level inverters (GCMLIs) based on the number and arrangement of DC voltage sources is presented. Also, different control techniques and the modulation techniques have been discussed for different MLI based PV systems being interfaced with the utility grid. The thorough comparisons and discussion of different control techniques used in single-phase and three-phase grid-connected MLI is also incorporated in this paper for better understanding and effectiveness of the past-present and future PV system developments.
机译:用于高功率和高压应用的多电平逆变器(MLI)的普及程度正在逐日增加。这些MLI已与电网集成在一起,用于可再生能源的提取,例如太阳能光伏(PV)系统。 MLI产生具有低谐波含量的阶梯输出电压,并且可以注入功率因数提高的正弦波电网电流。因此,基于MLI的并网光伏系统可以在较低的开关频率下运行,同时降低了对滤波器的要求。本文介绍了适用于并网应用的各种MLI及其调制和控制技术。根据直流电压源的数量和布置,对不同的并网多电平逆变器(GCMLI)进行了详细分类。同样,针对与公用电网接口的不同的基于MLI的PV系统,已经讨论了不同的控制技术和调制技术。本文还对单相和三相并网MLI中使用的不同控制技术进行了全面的比较和讨论,以更好地理解过去和现在的光伏系统发展并提高其有效性。

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