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Selective Harmonic Controlling for Three-Level High Power Active Front End Converter with Low Switching Frequency

机译:具有低开关频率的三电平大功率有源前端转换器的选择性谐波控制

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Controlling of a specific harmonic by a switching converter with switching frequency lower than 1 kHz was originally implemented by two-level Optimal Pulse pattern with Unsymmetrical Switching angles [10], namely by OPUS-technique. That means, given a desired fundamental and one or more specific harmonics, the problem is to find the switching times (angles) that produce the fundamental while generating specifically all chosen harmonics. Based on the OPUS-technique a three-level optimal pulse pattern is proposed for high power level applications with low switching frequency. The transcendental mathematical equations are developed. Using the prior results of all complete solutions of selective harmonic elimination (SHE) the solutions of the new equations can be found by Newton iteration method. In particularly, the modulation performance of OPUS-technique for three-level Optimal Pulse pattern with Unsymmetrical Switching angles is demonstrated by the trajectory of the converter voltage space vector integral. Finally, the control range of a specific harmonic is given by OPUS-technique.
机译:开关频率低于1 kHz的开关转换器对特定谐波的控制最初是通过具有非对称开关角的两级最佳脉冲模式[10]来实现的,即由OPUS技术实现的。这意味着,在给定所需的基波和一个或多个特定谐波的情况下,问题在于找到产生基波同时产生特定所有选定谐波的开关时间(角度)。基于OPUS技术,针对低开关频率的高功率电平应用,提出了三电平最佳脉冲模式。开发了先验数学方程式。使用选择性谐波消除(SHE)的所有完整解的先前结果,可以通过牛顿迭代法找到新方程的解。尤其是,通过转换器电压空间矢量积分的轨迹证明了OPUS技术对具有非对称转换角的三电平最佳脉冲模式的调制性能。最后,特定谐波的控制范围由OPUS技术给出。

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