Title | ||
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Analysis of measured power-quality results of a PV system connected to Peng-Hu power system |
Abstract | ||
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This paper presents the power-quality measurement results of a photovoltaic (PV) system connected to the distribution system of Peng-Hu Power System, Taiwan. The studied PV system with capacity of 70.38 kW is connected to the distribution system of 380 V through thirteen DC/AC inverters that are located at the top floor of one of the buildings of National Peng-Hu University of Science and Technology, Peng-Hu. The measured data were recorded from September 25th to October 1st, 2013 for total 7 days. The recorded results include three-phase voltages, currents, active power, reactive power, power factor, frequency, current harmonics, voltage flickers, and voltage variations. It can be clearly observed from the measured results that the power quality of the studied PV system can meet the grid code of Taiwan Power Company during the measurement period. |
Year | DOI | Venue |
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2014 | 10.1109/IAS.2014.6978484 | IAS Annual Meeting |
Keywords | Field | DocType |
invertors,photovoltaic power systems,power grids,power supply quality,national peng-hu university of science and technology,pv system,peng-hu power system,taiwan power company,active power,current harmonics,dc-ac inverters,distribution system,grid code,photovoltaic system,power 70.38 kw,power factor,power-quality analysis,power-quality measurement,reactive power,three-phase currents,three-phase voltages,time 7 day,voltage 380 v,voltage flickers,voltage variations,power quality,harmonics,measurement | Grid-connected photovoltaic power system,Power engineering,Stand-alone power system,Power-flow study,Maximum power point tracking,Electric power system,Power factor,Engineering,Electrical engineering,Switched-mode power supply | Conference |
Citations | PageRank | References |
5 | 0.95 | 3 |
Authors | ||
5 |
Name | Order | Citations | PageRank |
---|---|---|---|
Sheng-Yen Lu | 1 | 8 | 2.31 |
Li Wang | 2 | 53 | 14.82 |
Shun-Chin Ke | 3 | 7 | 1.53 |
Che-Hao Chang | 4 | 7 | 2.21 |
Zhi-Hao Yang | 5 | 9 | 2.15 |