Title :
A dead-time compensation method for parabolic current control with improved current tracking precision
Author :
Lanhua Zhang ; Bin Gu ; Dominic, Jason ; Jih-sheng Lai
Author_Institution :
Future Energy Electron. Center, Virginia Tech, Blacksburg, VA, USA
Abstract :
Hysteresis current control is an attractive nonlinear current control method for voltage source inverters when a fast system response is required. A well-known disadvantage of hysteresis current control is that the system has to operate over a wide switching frequency range. This causes an increase in the switching losses of the system and increases the difficulty in designing the output filter. The recently proposed parabolic current control solves this problem by employing a pair of parabolic carriers as the control band. Through the use of parabolic current control, constant switching frequency can be achieved. In the implementation of parabolic current control, dead-time is employed to prevent shoot-through of the inverter leg. The employment of dead-time impacts the current tracking precision of the parabolic current control method. In this paper, the effects of dead-time on parabolic current control are analyzed and a compensation method is proposed for voltage source inverters that use parabolic current control. As a result the current error can be well controlled and the effects of dead-time can be eliminated. The effectiveness of the proposed dead-time compensation method is experimentally verified by the use of a full-bridge voltage source inverter.
Keywords :
electric current control; invertors; nonlinear control systems; power filters; switching convertors; constant switching frequency; current tracking precision; dead time compensation; full-bridge voltage source inverter; hysteresis current control; inverter leg; nonlinear current control; output filter; parabolic carriers; parabolic current control; switching loss; wide switching frequency range; Current control; Hysteresis; Inverters; Steady-state; Switches; Switching frequency;
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2014 IEEE
Conference_Location :
Pittsburgh, PA
DOI :
10.1109/ECCE.2014.6953394