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Investigation of modified multilevel inverter topology for PV system

机译:光伏系统的改进多电平逆变器拓扑研究

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Multilevel inverters become an alternative for high power and medium voltage applications in recent years. Multilevel inverters(MLI) are basically classified as Diode Clamped Multilevel inverter, Flying Capacitor Multilevel inverter, Cascaded H Bridge Multilevel Inverter (CHBMLI). The CHBMLI topology which consists of a series of H bridge unit with separate dc sources is mostly prefered to generate higher voltage levels, as it requires fewer components compared to the other topologies. As the level increases, the switching device requirement will be more and the circuit becomes large with this topology. To overcome this and to produce high quality output, reduced switch count topologies are the main focus in recent research. The reduced switch count structures are based on bidirectional switches, modified form of the structures, polarity and level generation based structure, reduced switch structures and hybrid topology structure. This paper proposes a three phase Modified Multilevel Inverter (MMLI) topology with reduced switch count for nine level and the topology is analyzed using different Pulse Width Modulation (PWM) technique. The proposed MLI structure consists of an H bridge unit with voltage conversion cell for each phase. It requires 24 switches for a 30 nine level inverter with eight switches per phase compared to 48 switches in CHBMLI. The Total Harmonic Distortion (THD) level of this topology is examined with the PWM techniques for symmetric and asymmetric DC voltage sources. THD results of the proposed MLI are compared with other reduced switch topology structure. The comparison result indicates that the proposed topology shows better harmonic level and reduced switches compared to that structure. A prototype of the proposed topology is built and is tested to validate with the simulation results. Simulation and experimental results show that the proposed topology produces a minimum harmonic level with fewer components. (C) 2019 Elsevier B.V. All rights reserved.
机译:近年来,多电平逆变器已成为高功率和中压应用的替代方案。多电平逆变器(MLI)基本上分为二极管钳位多电平逆变器,飞跨电容器多电平逆变器,级联H桥多电平逆变器(CHBMLI)。 CHBMLI拓扑结构由一系列带有单独的直流电源的H桥单元组成,因此,与其他拓扑结构相比,它需要的组件更少,因此更倾向于产生更高的电压电平。随着级别的增加,采用这种拓扑结构的开关设备需求将越来越多,电路也将变得更大。为了克服这个问题并产生高质量的输出,减少开关数量的拓扑是最近研究的主要重点。减少的开关数量结构基于双向开关,结构的修改形式,基于极性和电平生成的结构,减少的开关结构和混合拓扑结构。本文提出了一种三相改进型多电平逆变器(MMLI)拓扑,其开关数量减少了9级,并使用不同的脉宽调制(PWM)技术对该拓扑进行了分析。提出的MLI结构由一个H桥单元和每个相的电压转换单元组成。对于30个九电平逆变器,每相需要八个开关,而CHBMLI中则需要48个开关,因此它需要24个开关。使用PWM技术针对对称和非对称DC电压源检查了此拓扑的总谐波失真(THD)级别。拟议的MLI的THD结果与其他简化的交换机拓扑结构进行了比较。比较结果表明,与该结构相比,所提出的拓扑结构显示出更好的谐波水平和更少的开关。构建了所提出拓扑的原型,并对其进行了测试,以通过仿真结果进行验证。仿真和实验结果表明,所提出的拓扑结构产生的谐波次数最少,组件更少。 (C)2019 Elsevier B.V.保留所有权利。

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