scholarly journals IMICV fault analysis method with multiple PV grid-connected inverters for distribution systems

2015 ◽  
Vol 119 ◽  
pp. 119-125 ◽  
Author(s):  
Ailson P. Moura ◽  
J.A. Peças Lopes ◽  
Adriano A.F. de Moura ◽  
Jean Sumaili ◽  
C.L. Moreira
2021 ◽  
Author(s):  
J. Deng ◽  
S. Liang ◽  
L. Z. Zhu ◽  
L. Yao ◽  
F. Duan ◽  
...  

Author(s):  
Xuecen Zhang ◽  
Qiang Liu ◽  
Yi Tang ◽  
Guofeng Liu ◽  
Xin Ning ◽  
...  

2018 ◽  
Vol 7 (2.12) ◽  
pp. 198
Author(s):  
Neeraj Priyadarshi ◽  
Amarjeet Kr. Sharma ◽  
Akash Kr. Bhoi ◽  
S N. Ahmad ◽  
Farooque Azam ◽  
...  

This paper mainly presents the fault analysis of Photovoltaic (PV) grid power system. The fuzzy logic controller (FLC) based intelligent maximum power point tracking (MPPT) algorithm has been employed in this work. Moreover, the hysteresis controller has been implemented for inverter control. Simulation results based on MATLAB/SIMULINK justify the effectiveness of the proposed PV power system under different fault operating conditions. 


2018 ◽  
Vol 101 (5) ◽  
pp. 3-11
Author(s):  
YUSUKE NOZAKI ◽  
YOSHIYA IKEZAKI ◽  
MASAYA YOSHIKAWA

Author(s):  
Simone Negri ◽  
Enrico Tironi ◽  
Gabrio Superti-Furga ◽  
Giovanni Ubezio

Author(s):  
Hongbo Sun ◽  
Daniel Nikovski ◽  
Tomihiro Takano ◽  
Yasuhiro Kojima ◽  
Tetsufumi Ohno

Author(s):  
Duong Minh Bui

Abstract Fault currents inside a grid-connected AC microgrid are significantly varied because fault current contributions of the main grid and DG units are different from each other due to various fault locations, fault types, and high penetration of inverter-based distributed generators (IBDGs) and rotating-based distributed generators (RBDGs). A traditional fault-analysis method cannot be sufficiently applicable for AC microgrids with the presence of both rotating-based distributed generators and inverter-based distributed generators. From the above viewpoint, this paper proposes a simplified and automated fault-current calculation approach for grid-connected AC microgrids to quickly and accurately calculate fault-current contributions from IBDGs and RBDGs as well as the grid fault-current contribution to any faulted microgrid sections. The simplified and automated fault-current calculation approach is mainly focused on grid-connected and small-sized low-voltage AC microgrids with the support of communication system. Under the grid-connected microgrid operation mode, fault-tripping current-thresholds of adaptive overcurrent relays are properly adjusted thanks to the proposed fault analysis method. Relying on fault-current distribution-coefficients of IBDGs, RBDGs, and the utility grid, the setting values of adaptive overcurrent relays in a low-voltage AC microgrid are effectively self-adjusted according to various microgrid configurations and the operation status of DG units during the grid-connected mode.


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