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A Novel Step-Up Multilevel Inverter Based On Switched-Capacitor Technique For Renewable Energy Conversion System

机译:基于开关电容技术的可再生能源转换系统新型升压多电平逆变器

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In this paper, a novel step-up multilevel inverter structure has been proposed. The structure uses switched-capacitor technique to boost the output voltage at the desired voltage level from small power supplies such as solar PV arrays. The structure can produce 13 output voltage level by using 10 unidirectional switches, 1 bidirectional switch, 2 capacitors, 2 diodes and 2 symmetric non-isolated power supplies $(V_{dc},~V_{dc})$. The capacitors utilized in the structure can be charged to $V_{dc}$ and $3V_{dc}$ voltage levels by using simple switching strategy. The structure does not require any balancing circuit or complex control algorithm to balance the capacitor voltages. Hence, the structure has self-voltage boosting capability and self-capacitor voltage balancing ability. The detailed operating principle of the structure is discussed in this paper. Further, two modulation strategies namely low switching frequency and high switching frequency modulation strategies have been used for switching the proposed structure. An extensive comparison study between the proposed structure and the recently developed switched capacitor multilevel inverter structures shows that the proposed structure requires lower components to achieve the specified output voltage level. Further, the cost per voltage level for all the topologies has been compared using a cost function. It has been observed that the proposed structure is more cost effective as compared to other structures. The effectiveness and merits of the proposed 13-level inverter have been verified by an extensive simulation study of the proposed structure in MATLAB/Simulink platform.
机译:本文提出了一种新型的升压多电平逆变器结构。该结构使用开关电容器技术将小型电源(例如太阳能光伏阵列)的输出电压提升到所需的电压水平。通过使用10个单向开关,1个双向开关,2个电容器,2个二极管和2个对称非隔离电源$(V_ {dc},〜V_ {dc})$,该结构可以产生13个输出电压电平。通过使用简单的开关策略,可以将结构中使用的电容器充电到$ V_ {dc} $和$ 3V_ {dc} $电压电平。该结构不需要任何平衡电路或复杂的控制算法即可平衡电容器电压。因此,该结构具有自升压能力和自电容电压平衡能力。本文讨论了该结构的详细工作原理。此外,已经使用了两种调制策略,即低切换频率和高切换频率调制策略来切换所提出的结构。所建议的结构与最近开发的开关电容器多电平逆变器结构之间的广泛比较研究表明,所建议的结构需要较低的元件才能达到规定的输出电压水平。此外,已使用成本函数比较了所有拓扑的每电压电平成本。已经观察到,与其他结构相比,提出的结构更具成本效益。通过在MATLAB / Simulink平台中对所提出的结构进行广泛的仿真研究,已验证了所提出的13级逆变器的有效性和优点。

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