Maximum Active Power Transmission Efficiency and Apparent Power Definition with Arbitrary Waveforms

H. Tacca
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Abstract

A proof of the theorem giving the maximum available active power with constant transmission losses (i.e., maximum efficiency) valid for arbitrary waveforms, is proposed. This makes it possible to rigorously generalize the definitions of power factor based on the definition of apparent power as the maximum power available to apply them to systems with non-symmetric, non-sinusoidal, and eventually time-varying (i.e., non-periodic) waveforms or DC grids, thus extending its application to hybrid multi-wire systems with asymmetrical phases, with different voltages, frequencies or waveforms (i.e., non-sinusoidal waves, such as rectangular or PWM) and even DC, which can be combined eventually sharing the neutral conductor. Finally, an example of application to a hybrid system composed of DC and unbalanced load inverter-based non-sinusoidal AC subsystems is included.
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任意波形下的最大有功功率传输效率和视在功率定义
给出了对任意波形有效的具有恒定传输损耗(即最大效率)的最大可用有功功率定理的证明。这使得根据视在功率的定义严格推广功率因数的定义成为可能,视在功率是可用的最大功率,将其应用于具有非对称、非正弦和最终时变(即非周期)波形或直流电网的系统,从而将其应用扩展到具有不对称相位的混合多线系统,具有不同的电压、频率或波形(即非正弦波,如矩形或PWM),甚至直流。它们可以结合在一起,最终共用中性导体。最后,给出了一个应用于由直流和不平衡负载逆变器组成的非正弦交流子系统的混合系统的实例。
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