Title :
Optimal Variable Switching Frequency Scheme for Reducing Switching Loss in Single-Phase Inverters Based on Time-Domain Ripple Analysis
Author :
Mao, Xiaolin ; Ayyanar, Rajapandian ; Krishnamurthy, Harish K.
Author_Institution :
Arizona State Univ., Tempe, AZ
fDate :
4/1/2009 12:00:00 AM
Abstract :
The choice of switching frequency for pulsewidth modulation single-phase inverters, such as those used in grid-connected photovoltaic application, is usually a tradeoff between reducing the total harmonic distortion (THD) and reducing the switching loss. This paper discusses an approach to minimize the switching loss while meeting a given THD requirement using variable switching frequency schemes (switching schemes with the switching frequency varying within a fundamental period). An optimal switching scheme is proposed based on time-domain current ripple analysis and the calculus of variations. The analysis shows that, to meet the same THD requirement, the optimal scheme has a significant saving on switching loss, compared to the fixed switching frequency scheme and the hysteresis control scheme, in addition to other benefits such as reduced peak switching loss and a spread spectrum of the current harmonics. The optimal scheme has been implemented in a prototype and the experimental results have verified the theoretical analysis. Also, a straightforward design method for designing filter inductors for single-phase converters is provided based on the time-domain current ripple analysis.
Keywords :
PWM invertors; photovoltaic power systems; switching convertors; time-domain analysis; PWM single-phase inverters; optimal variable switching frequency scheme; photovoltaic application; pulsewidth modulation inverters; switching loss reduction; time-domain ripple analysis; total harmonic distortion; Calculus of variations; photovoltaic (PV); pulsewidth modulation (PWM); single-phase converter; switching loss; variable switching frequency;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2008.2009635