谐波
光伏系统
脉冲宽度调制
逆变器
谐波
最大功率点跟踪
电力电子
网格
电子工程
控制理论(社会学)
计算机科学
电气工程
工程类
电压
物理
声学
控制(管理)
数学
几何学
人工智能
作者
Ling Yang,Lisheng Liu,Pengbo Shan,Yu Huang,Shidong Zhang,Min Huang,Wenbin Liu,Xinhong You,Pengping Zhang,Yichuang Sun,Kaiqi Sun,Yahui Li
摘要
Under the current trend of power electronics in energy systems, a high percentage of renewable energy transports clean energy to the grid through grid-connected inverters. The pulse-width modulation (PWM) technique brings high-order harmonics near to the switching frequency, and LCL filters with low-pass characteristics become the common choice for grid-connected inverters. However, the low-order harmonics caused by nonideal switching characteristics are difficult to filter out, and the new resonance point introduced by the LCL filter causes a security problem for the energy systems. Firstly, the generation mechanism of the 6 k ± 1 order harmonic and high-frequency resonance from a PV grid-connected inverter is analyzed. Then, a virtual resistor is constructed by the active damping method to absorb the resonant component. Meanwhile, this paper also presents an adaptive modulation voltage compensation method to decrease the low-order harmonics. Finally, the actual measured data of user photovoltaic (PV) and multiple comparative simulations verify these theories. Simulation results show that the proposed coordinated control algorithm reduces the peak of the resonance point, and the rate of low-order harmonics mitigation is more than 50%. The proposed method is suitable for various operating conditions.
科研通智能强力驱动
Strongly Powered by AbleSci AI