Novel method for tracking time-varying power harmonic distortions without frequency spillover
Carlos A. Duque, Paulo Márcio da Silveira, T. Baldwin, Paulo F. Ribeiro
Abstract
Carlos A. Duque, Paulo Márcio da Silveira, T. Baldwin, Paulo F. Ribeiro
Abstract
Although it is well known that Fourier analysis is in reality only accurately applicable to steady state waveforms, it is a widely used tool to study and monitor time-varying signals, which are commonplace in electrical power systems. The disadvantages of Fourier analysis, such as frequency spillover or problems due to sampling (data window) truncation can often be minimized by various windowing techniques, but they nevertheless exist. This paper demonstrates that it is possible to track and visualize amplitude and time-varying power systems harmonics, without frequency spillover caused by time-frequency techniques. This new tool allows for a clear visualization of time-varying harmonics which can lead to better ways to track harmonic distortion and understand time-dependent power quality parameters. It also has the potential to assist with control and protection applications.
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Although it is well known that Fourier analysis is in reality only accurately applicable to steady state waveforms, it is a widely used tool to study and monitor time-varying signals, which are commonplace in electrical power systems. The disadvantages of Fourier analysis, such as frequency spillover or problems due to sampling (data window) truncation can often be minimized by various windowing techniques, but they nevertheless exist. This paper demonstrates that it is possible to track and visualize amplitude and time-varying power systems harmonics, without frequency spillover caused by time-frequency techniques. This new tool allows for a clear visualization of time-varying harmonics which can lead to better ways to track harmonic distortion and understand time-dependent power quality parameters. It also has the potential to assist with control and protection applications.
Key concepts: Harmonics, Computer science, Total harmonic distortion, Harmonic, Harmonic analysis, Time–frequency analysis, Waveform, Power (physics)