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Harmonics in Power Systems

机译:电力系统谐波

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摘要

The appearance of nonlinear currents and voltages in power distribution systems has accelerated in recent times due to the availability of economical and reliable adjustable speed drives. The most popular generator of harmonic currents and voltages appear to be three phase SCR six pulse converters and three phase six pulse diode bridges, generally used with DC and AC drives. A more recent development in power electronics for AC to DC conversion is the Voltage Source Converter (VSC). This is a transistor converter that can be controlled to produce low distortion line currents and unity input power factors. The most popular and easily understandable method to analyze the nonlinear currents and voltages is to use the Fourier transform to calculate the amplitudes of sinusoidal functions with discrete frequencies. These amplitudes may be used to calculate other phenomena within the power system or component. This paper will show how complex waveforms are captured and then resolved into Fourier amplitude spectra that can used as a design aid.
机译:由于经济和可靠的可调速驱动器的可用性,配电系统中非线性电流和电压的出现近来有所加速。谐波电流和电压最流行的发电机似乎是三相SCR六脉冲转换器和三相六脉冲二极管电桥,通常与DC和AC驱动器一起使用。用于交流到直流转换的电力电子技术的最新发展是电压源转换器(VSC)。这是一个可以控制以产生低失真线路电流和统一输入功率因数的晶体管转换器。分析非线性电流和电压的最流行且易于理解的方法是使用傅立叶变换来计算具有离散频率的正弦函数的幅度。这些幅度可用于计算电力系统或组件内的其他现象。本文将展示如何捕获复杂的波形,然后将其分解为可以用作设计辅助的傅立叶振幅谱。

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