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Phase-Selection Control Rectifier Technology of Multi-phase Synchronous Generator for Wide Speed Range Operation

机译:宽速度范围内运行的多相同步发电机的选相控制整流技术

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This paper proposes a phase-selection control rectification technology to regulate AC-DC rectifier voltage ratio and output a constant DC voltage for multi-phase synchronous wind generator operating in a wide speed range. A novel rectifying bridge topology consisting of six diodes and six thyristors is presented when taking a six-phase shift of 60°generator as an example. By selectively turning on and off the thyristors, four kinds of AC-DC rectifier voltage ratios can be obtained. On the one hand, four constant terminal voltages of six-phase generator are output by regulating the excitation with PID control at different wind speeds, on the other hand, the appropriate rectifier voltage ratio between AC side and DC side is realized by means of phase-selection control. Finally, the DC voltage could be maintained stably in a wide speed range. The simulation verified that the phase-selection control rectification technology can maintain the stability of the DC voltage when wind turbine operates in a wide speed range.
机译:本文提出了一种选相控制整流技术,用于调节AC-DC整流器的电压比并输出恒定的DC电压,以在宽速范围内运行的多相同步风力发电机。以60°发电机的六相移为例,提出了一种由六个二极管和六个晶闸管组成的新型整流桥拓扑结构。通过有选择地导通和关断晶闸管,可以获得四种AC-DC整流器的电压比。一方面,通过在不同风速下通过PID控制调节励磁来输出六相发电机的四个恒定端电压,另一方面,通过相位实现交流侧和直流侧之间适当的整流器电压比选择控制。最后,DC电压可以稳定地维持在较宽的速度范围内。仿真结果表明,当风力发电机在较宽的转速范围内运行时,选相控制整流技术可以保持直流电压的稳定性。

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