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Dynamic Performance Improving Sliding-Mode Control-Based Feedback Linearization for PV System Under LVRT Condition

delete2020-11-01
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AI
张亚静 (Yajing Zhang) *
J
Jing Wang
洪利 (Hong Li)
T
Trillion Q. Zheng
J
Jih‐Sheng Lai
J
Jianguo Li
J
Jiuhe Wang
Q
Qian Chen
DOI:10.1109/TPEL.2020.2983315delete
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Abstract

Abstract

En 中文
The low-voltage ride through condition (LVRT) attracts wider attention with the increased power of central grid-connected photovoltaic (PV) systems. The conventional double-loop-based control strategy designed for the nominal voltage is slow and potentially unstable under the LVRT operation. In this article, a novel sliding-mode control-based feedback linearization is proposed to improve response speed of the PV system under LVRT condition. To increase the robustness of the control to parameter variations, sliding-mode control is combined with the feedback linearization in this article. Further, the complete linearization of the PV system can be achieved over the whole operating range. Moreover, the dc-link voltage operating point of the PV panel can be dynamically adjusted based on the drop depth of the grid voltage, which will reduce the load changes during the LVRT and subsequently ensure the ac current levels to stay within the design limits in any fault situation and enhance the LVRT capability of the central grid-connected PV system. Finally, a 100-kW PV inverter is built to validate the feasibility and effectiveness of the proposed strategy for LVRT.
Keywords:
Feedback linearization
Voltage control
Inverters
Voltage fluctuations
Power system stability
Power generation
Integrated circuit modeling
Solar energy
photovoltaic power systems
pulse width modulated inverters
nonlinear systems
optimization methods
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Journal

IEEE Transactions on Power Electronics cover
IEEE Transactions on Power Electronics
IF:
6.5
Papers:
1.7W
Citations:
8.3W

Organization

C
China Southern Power Grid
Scholars:
3.4K
Papers: 2.4K
Citations: 8
B
Beijing Jiaotong University
Scholars:
2.2W
Papers: 1.7W
Citations: 1.2W