DocumentCode :
1373325
Title :
Generalized Frequency Domain Formulation of the Switching Frequency for Hysteresis Current Controlled VSI Used for Load Compensation
Author :
Gupta, Rajesh
Author_Institution :
Dept. of Electr. Eng., Motilal Nehru Nat. Inst. of Technol., Allahabad, India
Volume :
27
Issue :
5
fYear :
2012
fDate :
5/1/2012 12:00:00 AM
Firstpage :
2526
Lastpage :
2535
Abstract :
In this paper, a generalized frequency domain method is proposed to obtain the switching frequency formulation for hysteresis current controlled voltage source inverter (VSI)-based shunt compensator. The formulation obtained from the high-frequency model based on the Tsypkin´s method explicitly shows the relation between the maximum switching frequency with the system and design parameters. The shunt compensator has been used for the load compensation in a distribution system for both weak and strong feeder supplying a nonlinear load. The maximum switching frequency has been shown related with hysteresis bandwidth and parameters of the VSI, feeder, and load of the distribution system. It is shown that the feeder and load reactance has a significant effect in determining the maximum switching frequency for the weak feeder distribution systems. However, the maximum switching frequency is mainly dependent upon the shunt compensator parameters for strong feeder distribution systems. The minimum switching frequency in general depends upon the modulation depth of the VSI. The results are verified using as power systems CAD (PSCAD) simulation studies for single-phase load compensation. A laboratory model distribution system has been used for the experimental verification.
Keywords :
compensation; frequency-domain analysis; invertors; power distribution lines; static VAr compensators; PSCAD simulation; Tsypkin method; generalized frequency domain method; high-frequency model; hysteresis bandwidth; hysteresis current controlled VSI; hysteresis current controlled voltage source inverter; laboratory model distribution system; load reactance; nonlinear load; power systems CAD; shunt compensator; single-phase load compensation; switching frequency; weak feeder distribution systems; Hysteresis; Load management; Load modeling; Modulation; Switches; Switching frequency; Hysteresis current control; Tsypkin’s method; modulation depth; nonlinear load; switching frequency;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2011.2175750
Filename :
6075261
Link To Document :
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