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Design and implementation of an AC voltage regulator based on series power semiconductor array

机译:基于串联功率半导体阵列的交流稳压器的设计与实现

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摘要

This thesis describes the use of an array of power semiconductors (series transistor array) and a buck-boost transformer in the design and implementation of a single phase AC voltage regulator. The power semiconductor array was used to act as variable impedance across the bridge points of a rectifier. The input point of the bridge rectifier was also connected directly to the primary winding of the buck-boost transformer. A closed loop circuit was designed using an RMS/DC converter chip, with complete electrical isolation between the low voltage control circuits and the power circuits. The major advantages of this technique are: fast response to RMS voltage fluctuation; waveform fidelity; light weight; and reduced size compared to that of a servo-driven AC voltage regulator such as the PS10 Smart Power Station, which was used in this project as a benchmark for the AC voltage regulator using the power semiconductor array. The device used for testing the performances of both AC voltage regulators was the NoiseKen VDS-2002 Voltage Dip and Swell Simulator. This simulator was used to perform voltage dip, swell, interruption, and variation tests in a manner fully compliant with IEC 61000 – 4 – 11.
机译:本文描述了功率半导体阵列(串联晶体管阵列)和降压-升压变压器在单相交流稳压器的设计和实现中的使用。功率半导体阵列被用作跨整流器桥点的可变阻抗。桥式整流器的输入点也直接连接到降压-升压变压器的初级绕组。使用RMS / DC转换器芯片设计了闭环电路,低压控制电路和电源电路之间具有完全的电气隔离。该技术的主要优点是:快速响应RMS电压波动;波形保真度重量轻;与伺服驱动的交流电压调节器(例如PS10智能电站)相比,尺寸减小了,该项目在本项目中将其用作使用功率半导体阵列的交流电压调节器的基准。用于测试两个交流稳压器性能的设备是NoiseKen VDS-2002电压骤降和骤升模拟器。该仿真器用于完全符合IEC 61000 – 4 – 11的电压骤降,骤升,中断和变化测试。

著录项

  • 作者

    Vandy Francis;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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