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Smart Active Rectifier Fed by a Variable Voltage and Frequency Source

机译:由可变电压和频率源供给的智能活动整流器

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In an effort to increase the efficiency and power density of electric vehicles and aircraft, the automobile and aerospace industries are adopting variable-speed generators as part of the powertrain. Herein, the engine directly drives a permanent magnet synchronous machine, which generates a variable-frequency/amplitude output ac-voltage. More specifically, this unique ac-voltage profile serves as the input for an ac-dc power converter that energizes the main dc-bus of the powertrain. In this paper, a smart active rectifier for hybrid/all-electric powertrains is presented. A direct model reference adaptive control (MRAC) scheme is utilized to address the rapid changes in amplitude and frequency while regulating the dc-bus voltage at unity power factor. Moreover, the MRAC requires minimal tuning due to its capability of adjusting its gains adaptively with the input voltage variations. As a result, the MRAC exhibits seamless dynamics. The performance of the MRAC is verified experimentally under accelerating and decelerating variable-frequency/amplitude input voltage ramps using a laboratory-scale 2-kW 270-V SiC-MOSFET-based power converter supplied by a programmable grid emulator. Lastly, a classic proportional-integral (PI) control scheme is implemented experimentally with the same converter as a benchmark to highlight the merits of the proposed converter.
机译:为了提高电动汽车和飞机的效率和功率密度,汽车和航空航天行业正在采用可变速发电机作为动力总成的一部分。这里,发动机直接驱动永磁同步机,该机器产生可变频率/幅度输出交流电压。更具体地,这种独特的AC电压分布用作AC-DC功率转换器的输入,其激励动力系的主直流总线。在本文中,提出了一种用于混合/全电动电力的智能活动整流器。直接模型参考自适应控制(MRAC)方案用于在调节Unity功率因数时调节DC总线电压的同时解决幅度和频率的快速变化。此外,由于其在输入电压变化适应地调整其增益的能力,MRAC需要最小的调谐。结果,MRAC呈现无缝动态。使用由可编程网格仿真器提供的基于实验室标准的2-kW 270V SiC-MOSFET的功率转换器,通过通过可编程电网仿真器提供的实验室级2-kW 270-V SiC-MOSFET基功率转换器在实验上进行实验验证MRAC的性能。最后,经典的比例积分(PI)控制方案是通过与基准相同的转换器来实验地实现的,以突出所提出的转换器的优点。

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