scholarly journals IEEE Access Special Section Editorial: Power Quality and Harmonics Issues of Future and Smart Grids

IEEE Access ◽  
2019 ◽  
Vol 7 ◽  
pp. 132803-132805
Author(s):  
Firuz Zare ◽  
Frede Blaabjerg ◽  
Pooya Davari ◽  
Gary W. Chang ◽  
Jafar Adabi
Author(s):  
Patricio G. Donato ◽  
Alvaro Hernandez ◽  
Marcos A. Funes ◽  
Ignacio Carugati ◽  
Ruben Nieto ◽  
...  

2013 ◽  
Vol 9 (3) ◽  
pp. 1380-1383 ◽  
Author(s):  
Carlo Cecati ◽  
Gerhard Hancke ◽  
Peter Palensky ◽  
Pierluigi Siano ◽  
Xinghuo Yu

Energetika ◽  
2018 ◽  
Vol 63 (4) ◽  
Author(s):  
Serhii Yu. Shevchenko ◽  
Vitalii V. Volokhin ◽  
Illia M. Diahovchenko

Problems of power quality and electric energy accounting often occur in networks with large pervasion of photovoltaic (PV) elements on rooftops of household and office buildings. In smart grids, including PV arrays electricity, which is sold back to the distribution network, requires approval of its parameters and quality control. Distributed power inverters generate higher harmonics which affect relay protection, automation systems, smart meters and power system’s reliability. In this article the influence of photovoltaic elements on the accuracy of electric energy metering and power quality questions are analysed.


Author(s):  
Yahia M. Esmail ◽  
Ali H. Kasem Alaboudy ◽  
M. S. Hassan ◽  
Gamal M. Dousoky

Power quality (PQ) assurance is a vital part of electrical distribution networks. There are many advantages and benefits of improving PQ, especially in the modern/smart grid. Smart grid (SG) has a lot of complicated and sensitive electrical components (non-linear loads) in addition to renewable energy systems (wind-solar) that may also be a source of PQ disturbances. PQ problems harm personal life and national production. Static synchronous compensator (STATCOM) and unified power quality conditioner (UPQC) are among the fastest response flexible alternating current transmission systems (FACTS) installed in smart grids to mitigate power quality disturbances such as voltage fluctuations, sag, swell, and harmonics. In this research, STATCOM and UPQC are designed and simulated in MATLAB/Simulink to overcome PQ-related disruptions in smart grids. Accordingly, the differences between the proposed two solutions are highlighted across this research and renewable energy sources' reliability during faults. Therefore, the reader will be able to choose the appropriate FACTS devices. This study emphasizes the extent of the smart grid need for the FACTS. As per the given results of this study, STATCOM and UPQC have shown exemplary performance in the PQ improvement investigations conducted in the context of smart/modern grids.


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