Department of Electrical Engineering, University of Engineering and Technology, Lahore, Punjab, Pakistan.
PLoS One. 2022 Jun 22;17(6):e0269714. doi: 10.1371/journal.pone.0269714. eCollection 2022.
The technology of modern power systems is revolutionizing as renewable energy sources are being integrated with electric power grids. In the form of inverters, power electronic converters are becoming an integral part of power systems due to their massive demand for grid integration of photovoltaic (PV) systems. Existing multilevel inverter topologies either require an output filter to get a sinusoidal voltage or generate a higher number of output voltage levels at the expense of many hardware resources. This paper presents a new single-phase 81-level inverter configuration with the name given as 'Modified W-Type Multilevel Inverter'. The proposed inverter configuration uses only eighteen power switches and four DC voltage sources to generate an 81-level output voltage approaching a sinusoidal waveform without an output filter. The general design equations are developed to calculate the number of switches, the number of voltage levels, and the number of DC sources for the proposed configuration. Loss and efficiency analysis is carried out that verifies a good practical efficiency of the proposed inverter configuration during the dynamic operation. A comparative analysis with the existing MLI topologies is also carried out that validates the effectiveness and novelty in reducing parts count and higher number of voltage levels. The proposed topology offers 1.04% total harmonic distortion of the output voltage which is within the benchmarks specified for grid integration without any filter requirements. The proposed inverter configuration is simulated in MATLAB/Simulink, and the results are validated by the design and development of a hardware prototype.
随着可再生能源与电网的融合,现代电力系统技术正在发生变革。由于对光伏 (PV) 系统电网集成的大量需求,电力电子换流器以逆变器的形式成为电力系统的一个组成部分。现有的多电平逆变器拓扑结构要么需要输出滤波器才能获得正弦电压,要么需要牺牲许多硬件资源来产生更高数量的输出电压电平。本文提出了一种新的单相 81 电平逆变器结构,名为“改进 W 型多电平逆变器”。所提出的逆变器结构仅使用十八个功率开关和四个直流电压源来产生接近正弦波的 81 电平输出电压,而无需输出滤波器。提出了一种通用设计方程,用于计算所提出配置的开关数量、电压电平数量和直流源数量。进行了损耗和效率分析,验证了在动态运行期间提出的逆变器配置具有良好的实际效率。还进行了与现有 MLI 拓扑结构的比较分析,验证了在减少部件数量和提高电压电平数量方面的有效性和新颖性。所提出的拓扑结构提供了输出电压总谐波失真为 1.04%,在没有任何滤波器要求的情况下,符合电网集成的基准要求。在所提出的逆变器结构在 MATLAB/Simulink 中进行了仿真,并通过硬件原型的设计和开发验证了结果。