A novel triple-arm switching power amplifier based on SVPWM theory is proposed to solve the problem that the traditional AMB(active magnetic bearing)that is controlled by two H-bridge switching power amplifiers have some shortcomings such as bulky size
high power consumption. The amplifier bases on the theory of SVPWM and the advantage of three-level control. Both symmetrical and asymmetrical SVPWM theories are applied for different carriers. Two different methods of SVPWM switching power amplifiers are established in the Matlab/Simulink environment and a novel three-leg switching power amplifier circuit system is realized by dSPACE. Both the theoretical results and experiment results show that the symmetrical SVPWM control algorithm improves the current response speed effectively
doubles the ripple current frequency and decreases its amplitude significantly. When the frequency is 1 750 rad/s
the system gain is only -3 dB. Thus the method meets the requirements of low ripple current and good dynamic
and improves the reliability of AMB system performance.
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