Three-phase PWM rectifier based on multi-sliding-mode variable structure control
A sliding mode variable structure, rectifier technology, applied in the direction of AC power input to DC power output, output power conversion device, high-efficiency power electronic conversion, etc., can solve the dynamic response of oscillation, slow system start-up response, and output voltage fluctuations It can improve the starting speed, reduce the jitter, and reduce the harmonic content.
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[0014] specific implementation plan
[0015] figure 1 in, e a 、e b and e c Three-phase AC input power for the rectifier; R L is the output load resistance, and the voltage across it is the output voltage U of the rectifier dc ; L is the boost inductor; R is the equivalent resistance of the boost inductor. Assuming that the input voltage is a three-phase balanced voltage, the mathematical model of the three-phase PWM rectifier in the synchronously rotating dq coordinate system is
[0016]
[0017] In the formula, e d and e q are the phase voltage e a 、e b and e c Grid-side voltage in the dq coordinate system; i d and i q are the phase current i a i b and i c Grid side current in the dq coordinate system; s d and s q are the variables of the switch function in the dq coordinate system, respectively.
[0018] The main purpose of controlling the three-phase PWM rectifier is to achieve unity power factor operation and stabilize the output voltage of the DC side...
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