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首页> 外文期刊>IEEE Transactions on Industrial Electronics >A Flexible Selective Harmonic Mitigation Technique to Meet Grid Codes in Three-Level PWM Converters
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A Flexible Selective Harmonic Mitigation Technique to Meet Grid Codes in Three-Level PWM Converters

机译:灵活的选择性谐波抑制技术,可满足三电平PWM转换器中的电网代码

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摘要

Due to the development of new grid codes, power converters'' output signal harmonic control is currently becoming extremely important in medium- and high-power applications. By taking this new scenario into account, a new method to generate switching three-level pulsewidth-modulation (PWM) patterns to meet specific grid codes is presented. The proposed method, which is named selective harmonic mitigation PWM , generates switching three-level PWM patterns with high quality from the point of view of harmonic content, avoiding the elimination of some specific harmonics and studying all harmonics and the total harmonic distortion as a global problem by using a general-purpose random-search heuristic algorithm. This fact leads to a drastic reduction or even avoidance of the bulky and costly grid connection tuned filters of power systems. Any harmonic shaping can be considered due to the flexibility of the method. Power devices switching constraints are considered to obtain directly applicable results. As a practical example, limits from one actual grid code have been used to get the experimental results by means of a 150-kVA three-level diode-clamped converter test bench. Comparisons between the proposed technique, optimized PWM and Selective Harmonic Elimination methods have been carried out. The results obtained with this new method greatly improve previous ones.
机译:由于新的电网规范的发展,功率转换器的输出信号谐波控制目前在中高功率应用中变得极为重要。通过考虑这种新情况,提出了一种生成开关三级脉宽调制(PWM)模式以满足特定电网代码的新方法。所提出的方法称为选择性谐波抑制PWM,从谐波含量的观点出发,可以生成高质量的开关三级PWM模式,避免了消除某些特定谐波,并且将所有谐波和总谐波失真作为一个整体来研究。通过使用通用随机搜索启发式算法解决问题。这一事实导致了电力系统中笨重而昂贵的电网连接调谐滤波器的减少甚至避免。由于该方法的灵活性,可以考虑任何谐波整形。功率器件的开关约束被认为可直接获得适用的结果。举一个实际的例子,通过一个150 kVA的三电平二极管钳位转换器测试台,使用了一个实际电网代码的限制来获得实验结果。比较了所提出的技术,优化的PWM和选择性谐波消除方法。用这种新方法获得的结果大大改善了以前的结果。

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