This paper proposes a fully digital control scheme for the
closed-loop regulation of a single-phase PWM inverter used to synthesize
a sinusoidal waveform even under large load variation. An accurate
sampled-data model of the PWM inverter considering the sensor dynamics
has been derived. The optimal state feedback gains of the proposed
digital controller are determined by fitting a specified step response
through the steepest descent method. The gating signals of the switching
devices are computed at every sampling instant by instantaneous feedback
of the inductor current and output voltage. The design procedure of the
proposed digital controller and its software realization have been
described in detail. Moreover, a DSP-based (TMS320C14) fully digitally
controlled PWM inverter has been constructed to verify the proposed
control scheme. The simulation and experimental results show that
satisfactory results can still be obtained even at low sampling
frequency
详细资料
文献种类: Conference
会议: 1994 Power Electronics Specialist Conference - PESC'94