Title :
Performance Comparison of VSC-Based Shunt and Series Compensators Used for Load Voltage Control in Distribution Systems
Author :
Gupta, Rajesh ; Ghosh, Arindam ; Joshi, Avinash
Author_Institution :
Dept. of Electr. Eng., M.N. Nat. Inst. of Technol., Allahabad, India
Abstract :
In this paper, the performance of voltage-source converter-based shunt and series compensators used for load voltage control in electrical power distribution systems has been analyzed and compared, when a nonlinear load is connected across the load bus. The comparison has been made based on the closed-loop frequency response characteristics of the compensated distribution system. A distribution static compensator (DSTATCOM) as a shunt device and a dynamic voltage restorer (DVR) as a series device are considered in the voltage-control mode for the comparison. The power-quality problems which these compensator address include voltage sags/swells, load voltage harmonic distortions, and unbalancing. The effect of various system parameters on the control performance of the compensator can be studied using the proposed analysis. In particular, the performance of the two compensators are compared with the strong ac supply (stiff source) and weak ac-supply (non-stiff source) distribution system. The experimental verification of the analytical results derived has been obtained using a laboratory model of the single-phase DSTATCOM and DVR. A generalized converter topology using a cascaded multilevel inverter has been proposed for the medium-voltage distribution system. Simulation studies have been performed in the PSCAD/EMTDC software to verify the results in the three-phase system.
Keywords :
EMTP; harmonic distortion; load flow control; power conversion harmonics; power supply quality; power system CAD; static VAr compensators; voltage control; DSTATCOM; PSCAD/EMTDC software; cascaded multilevel inverter; closed-loop frequency response; distribution static compensator; dynamic voltage restorer; electrical power distribution systems; generalized converter topology; load voltage control; load voltage harmonic distortions; medium voltage distribution system; power quality problems; series compensators; shunt compensators; voltage control mode; voltage sags; voltage source converter; voltage swells; Frequency response; Modulation; Power conversion; Switching frequency; Transfer functions; Voltage control; Distribution static compensator (DSTATCOM); dynamic voltage restorer (DVR); frequency-response characteristic; load voltage control; multilevel inverter; nonlinear load;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2010.2076341