Excitation method in starting process for three-stage brushless synchronous machine
Ma Pen
Abstract
Ma Pen
Abstract
Considering the excitation switch problems in the starting process of three-stage brushless synchronous machine,characteristics of the excitation current of the main generator vs speed were analyzed when AC excitation mode and DC excitation mode applied in the exciter respectively. Based on the Matlab simulation results and the experiment data,an exciter control strategy in the starting process of motor was given. In order to realize the AC and DC switching method in this control strategy,the switch- status of the inverter circuit and the resultant method of output voltage vectors were analyzed. An integrated single phase AC / DC excitation modulation algorithm was proposed to realize the smooth switch between AC excitation mode and DC excitation mode. Experiment results verify the validity of the proposed excitation control strategy and modulation algorithm.
OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.
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.
Considering the excitation switch problems in the starting process of three-stage brushless synchronous machine,characteristics of the excitation current of the main generator vs speed were analyzed when AC excitation mode and DC excitation mode applied in the exciter respectively. Based on the Matlab simulation results and the experiment data,an exciter control strategy in the starting process of motor was given. In order to realize the AC and DC switching method in this control strategy,the switch- status of the inverter circuit and the resultant method of output voltage vectors were analyzed. An integrated single phase AC / DC excitation modulation algorithm was proposed to realize the smooth switch between AC excitation mode and DC excitation mode. Experiment results verify the validity of the proposed excitation control strategy and modulation algorithm.
Key concepts: Exciter, Excitation, Control theory (sociology), MATLAB, Process (computing), Voltage, Modulation (music), Generator (circuit theory)