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High-Pass Harmonic Filters: General Properties and Design Procedure

机译:高通谐波滤波器:一般特性和设计步骤

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Passive harmonic filters are a preferable solution to mitigate higher harmonics, generated by powerful non-linear loads. Generally, such filters contain narrow-band branches tuned to the frequencies of the characteristic harmonics in the spectrum of the load current. Separate branches create high-quality parallel resonant circuits with the supply system inductance. This may cause an amplification of non-characteristic harmonics generated by multiphase non-linear loads. High-pass filters, providing a simultaneous attenuation of several harmonics, are used for damping resonant modes. However, in most cases, traditional methods can be applied to design the second- and the third- order filters. Such filters have insufficient selectivity and characterized by a significant power loss in the damping resistor at the fundamental frequency. Increasing the order of the high-pass filter one can reduce losses in the damping resistor and get the required frequency response. The article describes a general design method for high-pass filters with the specified frequency characteristics of the input impedance. A high-pass filter design is considered as the problem of building a passive LC two-port realizing a specified frequency response. The proposed method is based on minimizing the objective function in space of the filter reactive elements values. Using the proposed method, the values of the different order high-pass filter elements are determined. The performance of the designed filters has been demonstrated. It is shown that the proposed high-pass filters offer significant technical and economic advantages over known solutions.
机译:无源谐波滤波器是减轻由强大的非线性负载产生的高次谐波的首选解决方案。通常,这样的滤波器包含调谐到负载电流频谱中特征谐波的频率的窄带分支。单独的分支产生具有供电系统电感的高质量并联谐振电路。这可能会导致由多相非线性负载产生的非特征谐波放大。高通滤波器可同时衰减多个谐波,用于阻尼谐振模式。但是,在大多数情况下,可以采用传统方法来设计二阶和三阶滤波器。这样的滤波器具有不足的选择性,并且其特征在于在基频处的阻尼电阻器中的功率损耗很大。增加高通滤波器的阶数可以减少阻尼电阻器中的损耗,并获得所需的频率响应。本文介绍了具有指定输入阻抗频率特性的高通滤波器的通用设计方法。高通滤波器设计被认为是构建实现指定频率响应的无源LC两端口的问题。所提出的方法基于最小化滤波器电抗元件值的空间中的目标函数。使用所提出的方法,确定了不同阶次的高通滤波器元件的值。已经证明了设计的滤波器的性能。结果表明,与已知解决方案相比,提出的高通滤波器具有明显的技术和经济优势。

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