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首页> 外文期刊>IEEE journal on electromagnetic compatibility practice and applications >FPGA-Based Active Cancellation of the EMI of a Boost Power Factor Correction (PFC) by Injecting Modulated Sine Waves
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FPGA-Based Active Cancellation of the EMI of a Boost Power Factor Correction (PFC) by Injecting Modulated Sine Waves

机译:fpga主动取消的EMI提高功率因数校正(PFC)注射调制正弦波

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摘要

Boost power factor corrections tend to be considerable sources of electromagnetic disturbances. To ensure the proper functionality of susceptible systems in the vicinity, the emissions must be reduced. Passive filters, as a conventional solution to reduce conducted emissions, usually suffer from their high volume, weight and costs. Active filters can help to mitigate this problem, but the known solutions are systematically limited by inherent time constants and signal propagation delays since they derive the cancellation signal directly from a measured quantity by a feedforward and/or feedback approach. To resolve this issue, each harmonic can be individually suppressed by an artificially synthesized sine wave that is synchronized to the disturbances. By adjusting the amplitudes and phases of the suppressing sine waves, bothersome time constants and delay times can be compensated. In this work, it is shown that the switching harmonics of a power factor correction can be interpreted as modulated sine waves. By modulating the suppressing sine waves simultaneously, a very high performance can be achieved for the active cancellation system. The hardware and the algorithm are described, optimum parameters for the algorithm are identified and an FPGA implementation is applied to a real PFC.
机译:提高功率因数修正往往相当大的电磁源干扰。受到系统在附近,必须减少排放。传统的解决方案来减少排放,通常受到他们的高容量,重量和成本。缓解这个问题,但已知的解决方案这是系统固有的限制时间吗常量和信号传播延迟他们直接从取消信号由一个前馈和/或被测量反馈的方法。可以单独抑制谐波人工合成正弦波同步干扰。抑制正弦的振幅和相位波,麻烦的时间常数和延迟时间可以补偿。的开关谐波功率因数可以解释为调制正弦校正波。同时,一个非常高的性能实现主动注销系统。硬件和算法描述,最佳参数识别和算法一个FPGA实现应用于一个真正的PFC。

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