最大功率点跟踪
低压穿越
光伏系统
逆变器
控制理论(社会学)
断层(地质)
光伏并网发电系统
计算机科学
电压
网格
交流电源
电气工程
工程类
控制(管理)
数学
地质学
人工智能
地震学
几何学
作者
Muhammad Talha,Siti Rohani Sheikh Raihan,Nasrudin Abd Rahim,Muhammad Naveed Akhtar,Osama Majeed Butt,Muhammad Majid Hussain
出处
期刊:IEEE Access
[Institute of Electrical and Electronics Engineers]
日期:2022-01-01
卷期号:10: 29567-29588
被引量:22
标识
DOI:10.1109/access.2022.3158983
摘要
Renewable photovoltaic (PV) energy is a primary contributor to sustainable power generation in microgrids. However, PV grid-tied generators remain functional as long as the grid voltage and the input PV source remain normal. Abnormal conditions like transient grid sags or solar irradiation flickering can make the grid-tied inverter go offline. Simultaneous shut down of PV generators residing in the distribution grid may lead to an overall grid instability or outage. Therefore, PV generators must be equipped with fault-ride-through mechanisms in order to remain connected and operational during faults. This paper presents a PV-inverter with low-voltage-ride-through (LVRT) and low-irradiation (LR) compensation to avoid grid flickers. The single-phase inverter rides through the voltage sags while injecting reactive power into the grid. The proposed control strategy ensures a steady DC-link voltage and remains connected to the grid during AC-side low voltage and DC-side low-irradiation faults. Unlike other PV inverters, the controller maintains the maximum-power-point-tracking (MPPT) in all conditions. LVRT, constant power output, and robust MPPT are the noticeable features of the proposed system. Frequency analysis, simulations, and a laboratory prototype validate the proposed control strategy.
科研通智能强力驱动
Strongly Powered by AbleSci AI