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Switching Harmonics in a Three-Phase PWM Inverter

机译:三相PWM逆变器中的开关谐波

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This paper provides a simple but accurate method for calculating switching harmonics generated by the pulse width modulation (PWM). This method can be used to design filter for converters and to evaluate EMI impacts. Three-phase PWM inverters have been wildly used as major power stages for three-phase dc-ac power conversions for many years. The maturation of techniques on this type of inverter has expanded its applications from the general industry to the aerospace. One of the side effects of this type of inverters is the switching harmonics generated by the pulse-width modulation (PWM). Many papers were published regarding the harmonics analysis. However, most of them were focusing on the output ac voltages only. In addition, complex mathematics used in the analysis prevents the practical engineers from understanding and using them in the inverter design. This paper uses a simple mathematical method for calculating switching harmonics in the output voltage, as well as the switching harmonics in the dc link. The paper will introduce the relationship between the harmonic spectrum and the mathematic equation associated with individual harmonic components. The distribution of individual switching harmonic on the harmonic spectrum is illustrated. The close form equations for calculating each individual harmonics are provided. With this method, the power electronics designer can calculate the harmonics before the converters are built and tested. The proper filters can be designed based the harmonics calculation and the EMI effects can also be addressed at the same time. The method is verified by simulation using different simulation tools. It is also validated by practical measurement in a high-power converter application to be appreciated for use in the inverter design.
机译:本文提供了一种简单但准确的方法,用于计算由脉冲宽度调制(PWM)产生的切换谐波。该方法可用于为转换器设计过滤器并评估EMI影响。三相PWM逆变器已被野蛮地用作三相直流电源转换的主要功率级多年。这种逆变器技术的成熟已经将其应用从一般行业扩展到航空航天。这种类型的逆变器的副作用之一是由脉冲宽度调制(PWM)产生的开关谐波。有关谐波分析的许多论文发表。但是,大多数都专注于输出交流电压。此外,分析中使用的复杂数学可防止实用工程师在变频器设计中以理解和使用它们。本文采用简单的数学方法来计算输出电压中的开关谐波,以及直流链路中的开关谐波。本文将介绍谐波频谱与各个谐波分量相关的数学方程之间的关系。说明了各个切换谐波对谐波频谱的分布。提供用于计算每个单独谐波的闭合形式方程。通过这种方法,电源电子设计器可以在构建和测试之前计算谐波。可以基于谐波计算的适当滤波器,并且也可以同时寻址EMI效果。使用不同的仿真工具仿真验证该方法。通过在高功率转换器应用中的实际测量也被验证,以便在逆变器设计中使用。

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