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Control Strategy of Combined PWM Rectifier/Inverter for a High Speed Generator Power System

机译:高速发电机电力系统PWM整流器/逆变器组合的控制策略

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Recently more attention has been paid to the distributed power systems due to their high flexibility and reliability. The high speed permanent magnet (PM) generator driven by micro-turbine has been widely investigated since it has small size, high efficiency and power density. The output high frequency AC power of the high speed PM generator needs to be converted into the AC power with constant frequency and voltage using AC/DC/AC converter. The normal AC/DC conversion through diode rectifier will generate harmonic currents in the generator winding which will cause additional losses and increase temperature rise of the generator. To reduce the current harmonics of high speed generator, the structure and control strategy of a combined PWM rectifier/inverter are introduced in this paper. The converter is first utilized as a PWM inverter to drive the generator for the micro-turbine starting, and then operates as a PWM rectifier during the normal power conversion. The double closed loops (current loop and voltage loop) are adopted. The simulation and experimental results show the feasibility of the proposed design structure and control strategy.
机译:由于其具有高度的灵活性和可靠性,最近,最近的注意力已经支付给分布式电力系统。由微型涡轮机驱动的高速永磁体(PM)发电机已被广泛研究,因为它具有较小的尺寸,高效率和功率密度。高速PM发生器的输出高频交流电源需要使用AC / DC / AC转换器具有恒定的频率和电压转换为交流电源。通过二极管整流器的正常AC / DC转换将在发电机绕组中产生谐波电流,这将导致发电机的额外损耗和增加温度升高。为减少高速发生器的电流谐波,本文介绍了组合的PWM整流器/逆变器的结构和控制策略。转换器首先用作PWM逆变器以驱动发电机的微型涡轮机启动,然后在正常功率转换期间作为PWM整流器操作。采用双闭环(电流回路和电压环)。模拟和实验结果表明,建议的设计结构和控制策略的可行性。

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