首页> 外文期刊>Electromagnetic Compatibility Magazine, IEEE >Active cancellation of periodic EMI at all terminals of a DC-to-DC converter by injecting multiple artificially synthesized signals
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Active cancellation of periodic EMI at all terminals of a DC-to-DC converter by injecting multiple artificially synthesized signals

机译:通过注入多个人工合成信号,在DC-DC转换器的所有端子处激活定期EMI

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摘要

Active cancellation of disturbances of power electronic systems is an aspiring method in EMC to reduce passive filter sizes. Most publications on this topic deal with the cancellation of either common- or differential-mode disturbances at either the input or the output terminals. In most practical systems, all disturbance modes of all terminals must be suppressed simultaneously. This is no trivial task since the different injectors for the cancellation signals can affect each other. Therefore, a cancellation signal for the input terminals can worsen the disturbances at the output terminals, or vice versa. Additionally, due to mode conversion, common- and differential-mode EMI can also interfere. In this work, synthesized cancellation signals are utilized that have already shown a promising performance in the suppression of periodic disturbances since complex transfer functions and delay times can easily be compensated. Here, a multi-port canceller is applied that injects synthesized cancellation signals to reduce the disturbances at multiple terminals simultaneously. The fundamental problem of mutually coupled injectors is discussed and a mathematical description is formulated. From this description, the cancellation signals are calculated and requirements for the system are derived. This method is applied to a GaN-based 48 V/12 V DC-to-DC converter with a switching frequency of 1 MHz in a measurement setup for conducted emissions according to the automotive EMC standard CISPR 25. The coupling and decoupling are practically discussed. The effectivity of the method is shown by measurements at artificial networks. The total power of the generated cancellation signals is estimated.
机译:积极取消电力电子系统的扰动是EMC中的一种有吸引力的方法,以减少被动滤波器尺寸。大多数出版物关于此主题的讨论处理输入或输出端子的共同或微分模式干扰。在大多数实际系统中,必须同时抑制所有端子的所有扰动模式。这不是琐碎的任务,因为取消信号的不同喷射器可以相互影响。因此,输入端子的取消信号可以使输出端子处的干扰恶化,反之亦然。另外,由于模式转换,共同和差分模式EMI也可以干扰。在这项工作中,利用合成消除信号已经在抑制周期性干扰时已经示出了有希望的性能,因为可以容易地补偿复杂的传递函数和延迟时间。这里,应用多端口消除器,其注入合成的消除信号以同时减少多个终端处的干扰。讨论了相互耦合的注射器的基本问题,并配制了数学描述。根据该描述,计算取消信号并导出系统的要求。该方法应用于基于GaN的48 V / 12 V DC-TO-DC转换器,其在根据汽车EMC标准CISPR 25的测量设置中的开关频率为1 MHz。实际讨论耦合和去耦。通过人造网络测量示出了该方法的有效性。估计生成的取消信号的总功率。

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