Saber Simulation for PWM Rectifier Hystersis Control
Guohong Zeng
Abstract
Guohong Zeng
Abstract
Traction converter is the major part of AC-DC-AC system, it includes single phase voltage pulse rectifier and inverter. Single phase voltage pulse rectifier is an important part of the traction system. The article simply introduces pulse rectifier's principle, and compiles control program of rectifier. Adopting the control strategy of hystersis control to produce PWM signal for controling rectifier. According to source voltage and middle DC voltage command, the parameters of the rectifier are chosen and optimized. Simulation indicates that the hystersis arithmetic is simple, DC side voltage ripple is small, AC side current phase is according to the source voltage, power factor is close to 1.
A significance statement is not available in the OpenAlex record.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Traction converter is the major part of AC-DC-AC system, it includes single phase voltage pulse rectifier and inverter. Single phase voltage pulse rectifier is an important part of the traction system. The article simply introduces pulse rectifier's principle, and compiles control program of rectifier. Adopting the control strategy of hystersis control to produce PWM signal for controling rectifier. According to source voltage and middle DC voltage command, the parameters of the rectifier are chosen and optimized. Simulation indicates that the hystersis arithmetic is simple, DC side voltage ripple is small, AC side current phase is according to the source voltage, power factor is close to 1.
Key concepts: Peak inverse voltage, Precision rectifier, PWM rectifier, Rectifier (neural networks), Ripple, Pulse-width modulation, Voltage, Control theory (sociology)