Title :
IRPT based control of a 50 kw grid interfaced solar photovoltaic power generating system with power quality improvement
Author :
Singh, Bawa ; Shahani, D.T. ; Verma, Anil Kumar
Author_Institution :
Electr. Eng. Dept., Indian Inst. of Technol. Delhi, New Delhi, India
Abstract :
This paper deals with a modified instantaneous reactive power theory (IRPT) based control of a grid interfaced solar photovoltaic (SPV) power generation which also mitigates power quality problems in three-phase four wire (3P4W) distribution system. This is a double stage SPV power generating system which accommodates wide varying input voltage. The proposed grid interfaced SPV generating system consists of a PV array, a DC-DC boost converter, a three leg VSC (Voltage Source Converter), an isolated Y-Δ transformer, a grid and connected linear/nonlinear loads. The DC bus voltage of a three-phase VSC is regulated using a PI (Proportional Integral) voltage controller. The SPV energy is injected in to the DC bus of VSC during sunshine hours. The proposed SPV power generating system provides the zero voltage regulation (ZVR) or power factor correction (PFC) along with harmonics elimination, load balancing and neutral current compensation in 3P4W distribution system. MATLAB/Simulink based simulation results are presented to validate the design and control of SPV power generating system for feeding 3P4W loads with improved power quality.
Keywords :
DC-DC power convertors; PI control; harmonics suppression; photovoltaic power systems; power generation control; power grids; power supply quality; solar cell arrays; solar power stations; voltage control; 3P4W distribution system; DC bus voltage; DC-DC boost converter; Matlab-Simulink-based simulation; PFC; PI voltage controller; PV array; SPV energy; ZVR; connected linear-nonlinear loads; double-stage SPV power generating system; grid-interfaced SPV power generation; grid-interfaced solar photovoltaic power generating system; harmonics elimination; isolated Y-Δ transformer; load balancing; modified IRPT-based control; modified instantaneous reactive power theory; neutral current compensation; power factor correction; power quality improvement; proportional integral voltage controller; three-leg VSC; three-phase VSC; three-phase four-wire distribution system; voltage source converter; zero voltage regulation; Arrays; Harmonic analysis; Power conversion; Power harmonic filters; Reactive power; Voltage control; Instantaneous Reactive Power Theory (IRPT); Neutral Current Elimination; Solar Photo Voltaic (SPV); Zero Voltage Regulation (ZVR) and Power Factor Correction (PFC);
Conference_Titel :
Power Electronics for Distributed Generation Systems (PEDG), 2013 4th IEEE International Symposium on
Conference_Location :
Rogers, AR
DOI :
10.1109/PEDG.2013.6785601