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2009

Journal Article

Investigation of shaft voltage in wind turbine systems with induction generators

Adabi, J. Afaradabi and Zare, Firuzf (2009). Investigation of shaft voltage in wind turbine systems with induction generators. IEEJ Transactions on Industry Applications, 129 (11), 1092-1100. doi: 10.1541/ieejias.129.1092

Investigation of shaft voltage in wind turbine systems with induction generators

2009

Journal Article

Load sharing and power quality enhanced operation of a distributed microgrid

Majumder, R., Ghosh, A., Ledwich, G. and Zare, F. (2009). Load sharing and power quality enhanced operation of a distributed microgrid. IET Renewable Power Generation, 3 (2), 109-119. doi: 10.1049/iet-rpg:20080001

Load sharing and power quality enhanced operation of a distributed microgrid

2009

Journal Article

Analysis of shaft voltage in a doubly-fed induction generator

Adabi, Jafar, Zare, Firuz, Ghosh, Arindam and Lorenz, Robert D. (2009). Analysis of shaft voltage in a doubly-fed induction generator. Renewable Energy and Power Quality Journal, 1 (7) 206, 8-12. doi: 10.24084/repqj07.206

Analysis of shaft voltage in a doubly-fed induction generator

2009

Journal Article

Analysis, calculation and reduction of shaft voltage in induction generators

Adabi, Jafar and Zare, Firuz (2009). Analysis, calculation and reduction of shaft voltage in induction generators. Renewable Energy and Power Quality Journal, 1 (7) 207, 13-18. doi: 10.24084/repqj07.207

Analysis, calculation and reduction of shaft voltage in induction generators

2009

Journal Article

A novel configuration for voltage sharing in DC-DC converters

Nami, A., Boora, A. A., Zare, F., Ghosh, A. and Blaabjerg, F. (2009). A novel configuration for voltage sharing in DC-DC converters. Renewable Energy and Power Quality Journal, 1 (7) 208, 19-23. doi: 10.24084/repqj07.208

A novel configuration for voltage sharing in DC-DC converters

2009

Journal Article

Utilising robustness of positive buck-boost converter against input voltage and load current disturbances

Boora, A. A., Zare, F., Ghosh, A. and Ledwich, G. (2009). Utilising robustness of positive buck-boost converter against input voltage and load current disturbances. Australian Journal of Electrical and Electronics Engineering, 6 (2), 165-178. doi: 10.1080/1448837X.2009.11464235

Utilising robustness of positive buck-boost converter against input voltage and load current disturbances

2009

Journal Article

Effects of switching time on output voltages of a multilevel inverter used in high frequency applications

Soltani, H., Adabi, J. and Zare, F. (2009). Effects of switching time on output voltages of a multilevel inverter used in high frequency applications. Australian Journal of Electrical and Electronics Engineering, 5 (2), 149-159. doi: 10.1080/1448837X.2009.11464208

Effects of switching time on output voltages of a multilevel inverter used in high frequency applications

2008

Journal Article

A new random current control technique for a single-phase inverter with bipolar and unipolar modulations

Nami, Alireza and Zare, Firuz (2008). A new random current control technique for a single-phase inverter with bipolar and unipolar modulations. IEEJ Transactions on Industry Applications, 128 (4), 402-410. doi: 10.1541/ieejias.128.402

A new random current control technique for a single-phase inverter with bipolar and unipolar modulations

2008

Journal Article

A comparison between random hysteresis current control technique with bipolar and unipolar modulations

Nami, A. and Zare, F. (2008). A comparison between random hysteresis current control technique with bipolar and unipolar modulations. Australian Journal of Electrical and Electronics Engineering, 4 (1), 1-7.

A comparison between random hysteresis current control technique with bipolar and unipolar modulations

2008

Journal Article

A new predictive current control technique for multilevel converters

Zare, F. and Ledwich, G. (2008). A new predictive current control technique for multilevel converters. Australian Journal of Electrical and Electronics Engineering, 4 (1), 25-34. doi: 10.1080/1448837x.2008.11464169

A new predictive current control technique for multilevel converters

2008

Journal Article

A new adaptive hysteresis current control with unipolar PWM used in active power filters

Zabihi, S. and Zare, F. (2008). A new adaptive hysteresis current control with unipolar PWM used in active power filters. Australian Journal of Electrical and Electronics Engineering, 4 (1), 9-15. doi: 10.1080/1448837x.2008.11464167

A new adaptive hysteresis current control with unipolar PWM used in active power filters

2008

Journal Article

Controlling common-mode voltages in multilevel inverters

Ghoreishy, H., Zare, F. and Hassanpour, H. (2008). Controlling common-mode voltages in multilevel inverters. International Journal of Engineering, Transactions A: Basics, 21 (3), 243-254.

Controlling common-mode voltages in multilevel inverters

2008

Journal Article

High frequency model of an electric motor based on measurement results

Zare, F. (2008). High frequency model of an electric motor based on measurement results. Australian Journal of Electrical and Electronics Engineering, 4 (1), 17-24. doi: 10.1080/1448837X.2008.11464168

High frequency model of an electric motor based on measurement results

2002

Journal Article

A hysteresis current control for single-phase multilevel voltage source inverters: PLD implementation

Zare, Firuz and Ledwich, Gerard (2002). A hysteresis current control for single-phase multilevel voltage source inverters: PLD implementation. IEEE Transactions On Power Electronics, 17 (5), 731-738. doi: 10.1109/TPEL.2002.802192

A hysteresis current control for single-phase multilevel voltage source inverters: PLD implementation

2002

Journal Article

Reduced layer planar busbar for voltage source inverters

Zare, Firuz and Ledwich, Gerard F. (2002). Reduced layer planar busbar for voltage source inverters. IEEE Transactions On Power Electronics, 17 (4), 508-516. doi: 10.1109/TPEL.2002.800990

Reduced layer planar busbar for voltage source inverters