一种用于可再生能源集成的对称多级级联h桥逆变器

S. Muthukaruppasamy, K. Sarada, Priya R. Patil, R. Dharmaprakash
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摘要

本文描述的先进的多级级联h桥逆变器系统是新颖的,旨在有效地整合可再生能源。在所提出的五电平拓扑结构中采用了相移脉冲宽度调制(PD-PWM)控制,以产生质量更好的输出电压。该系统结合了熟练的滤波方法,具有低总谐波失真(THD)期望的结果。该逆变器系统在50 Hz时可稳定输出230 V,容量为2.3 kW,符合IEEE 519电能质量标准。利用MATLAB/Simulink对整个系统进行仿真和建模,在谐波抑制和网格顺应性方面表现出优越的性能。创新的设计为整合可再生能源提供了可靠的响应,确保平稳和高质量的电力注入电网。
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A Symmetric Multi-Level Cascaded H-Bridge Inverter for Renewable Energy Integration
The advanced multi-level cascaded H-Bridge inverter system described in this paper is novel and intended for effective integration of renewable energy sources. Phase-displacement pulse width modulation (PD-PWM) control has been employed in the proposed five-level topology to produce output voltage with better quality. The system incorporates proficient filtering methods with a low total harmonic distortion (THD) desired outcome. With a stable output of 230 V at 50 Hz and a 2.3 kW capacity, the inverter system has been satisfied the exacting IEEE 519 standards for power quality. The MATLAB/Simulink is implemented to simulate and model the entire system, exhibiting its superior performance in terms of harmonic reduction and grid compliance. The innovative design offers a dependable respond to for integrating renewable energy, ensuring smooth and high-quality power injection into the grid.
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