Title :
Current-Sensing Resistor Design to Include Current Derivative in PWM H-Bridge Unipolar Switching Power Amplifiers for Magnetic Bearings
Author :
Ren, Yuan ; Fang, Jiancheng
Author_Institution :
Sci. & Technol. on Inertial Lab., Beihang Univ., Beijing, China
Abstract :
To effectively reject the influence of digital control delay on system bandwidth and stability in pulsewidth-modulation H-bridge unipolar switching power amplifiers for magnetic bearings and to overcome the disadvantages of the traditional linear predictive control, this paper presents a current-sensing resistor design to include current derivation. The proposed solution can realize predictive current control by the proportional-differential current-sensing resistor networks. The common problems associated with the digital control delay are successfully resolved by the proposed method. Moreover, compared to the traditional linear prediction, the proposed one not only shortens the calculation time of the digital signal processor but also increases the tracking precision and significantly reduces the current noise. Analysis, simulation, and experimental results are presented to demonstrate the effectiveness and superiority of the proposed method.
Keywords :
electric current control; magnetic bearings; power amplifiers; predictive control; resistors; PWM H-bridge unipolar switching power amplifiers; current derivation; current-sensing resistor design; digital control delay; digital signal processor; linear predictive control; magnetic bearings; pulsewidth-modulation H-bridge unipolar switching power amplifiers; realize predictive current control; Current distribution; Digital control; Power amplifiers; Predictive control; Pulse width modulation; Sensors; State-space methods; Current derivative; current-sensing resistor; digital control delay; predictive current control; state-space averaging method; switching power amplifier;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2011.2179277