静止时钟系统自适应电磁干扰抵消策略的发展

A. Bendicks, Tobias Dorlemann, Stephan Frei, Norbert Hees, Marc Wiegand
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引用次数: 11

摘要

消除干扰信号是电磁兼容中的一种常用策略。在这项工作中,开发了一种特殊的策略来消除固定时钟系统的干扰谐波。该策略通过一种自适应方法进行改进,方便地找到最优的消去信号。作为这种方法的一个特点,所有麻烦的影响,如延迟或衰减,可以很容易地得到补偿。从基本理论出发,推导出两种实现形式:连续适应谐波抵消(CAHC)和前适应谐波抵消(PAHC)。CAHC是在fpga系统上实现的。对所使用的FPGA及其外设的硬件、编程和性能进行了透明的讨论。以电力电子dc- dc变换器为例,验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of an Adaptive EMI Cancellation Strategy for Stationary Clocked Systems
Cancellation of disturbing signals is a common strategy in EMC. In this work, a specialized strategy is developed to cancel the disturbing harmonics of stationary clocked systems. This strategy is refined by an adaptive approach to conveniently find the optimum signals for cancellation. As a special feature of this method, all troublesome effects, like delays or attenuations, can easily be compensated. From a basic theory, two implementation variants are derived: 1) Continuously Adapted Harmonics Cancellation (CAHC) and 2) Previously Adapted Harmonics Cancellation (PAHC). CAHC is implemented on an FPGA-system. The hardware, programming and performance of the utilized FPGA and its peripherals are transparently discussed. The effectivity of the method is demonstrated for a power electronic dc-to-dc converter.
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