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Analysis, Design, and Implementation of a Fast On-Load Tap Changing Regulator

机译:快速有载分接变换调节器的分析,设计和实现

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The on-load tap changing (OLTC) regulators have been widely used since the introduction of electric energy. They ensure a good regulation of the output voltage in presence of large variations of the input voltage with typical response time from 100 ms to several seconds. The continuous growth of power semiconductor devices, such as the insulated gate bipolar transistor, allows the development of fast OLTC regulators being able to fix other problems in the ac mains, like sags and flicker. This paper reports the analysis, design, and experimental implementation of a fast OLTC regulator, using a two-step commutation strategy and a demagnetizing auxiliary circuit. The control stage is DSP-based, ensuring flexibility in programming the control algorithms. The experimental results demonstrate that the fast OLTC is able to correct several disturbances of the ac mains besides the long duration variation in a time much lower than the one corresponding to the traditional regulators
机译:自引入电能以来,有载分接变换(OLTC)调节器已被广泛使用。在输入电压变化较大的情况下,它们可确保对输出电压进行良好的调节,典型响应时间为100 ms至几秒钟。诸如绝缘栅双极晶体管之类的功率半导体器件的不断增长,使快速OLTC稳压器的发展成为可能,该稳压器能够解决交流电源中的其他问题,例如下垂和闪烁。本文报告了使用两步换向策略和去磁辅助电路的快速OLTC稳压器的分析,设计和实验实现。控制阶段基于DSP,从而确保了对控制算法进行编程的灵活性。实验结果表明,快速OLTC能够校正交流电源的几种干扰,除了持续时间的长变化之外,其时间远低于传统稳压器所对应的干扰时间。

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