A spectral decomposition-based approach is proposed to estimate the light flicker caused by electrical arc furnaces (EAFs) where the system frequency deviates significantly due to the EAF operation. Analytical expressions of the instantaneous light flicker sensation are obtained beginning from a voltage waveform and these expressions are used to obtain a flicker estimation method based on the IEC flickermeter. In the proposed method, the leakage effect of the FFT algorithm due to fundamental frequency variation is reduced by employing a spectral amplitude correction around the fundamental frequency. The eye-brain weighting curve is realised comparing the voltage spectrum with the tabulated normalised IEC flickermeter responses for sinusoida...
Abstract – Modeling of the three phase electric arc furnace and its voltage flicker mitigation are t...
In this paper, a new flicker contribution tracing method has been proposed to determine the individu...
M.Ing. (Electrical and Electronic Engineering)Please refer to full text to view abstract
In this paper, an improved method for detecting light-flicker from multiple flicker sources which ha...
In this research work, two new flickermeters are proposed to estimate the light flicker caused by el...
Due to the dynamic nature of load changes, arc devices are receivers that generate disturbances to t...
A simplified Voltage Peak Detection (VPD)-based flickermeter based on spectral decomposition is prop...
In this study, a Kalman filtering based approach is proposed to measure the light flicker of the ele...
M.Ing.\Vith electrical power networks expanding beyond their original design limits and the various ...
International audienceElectric Arc Furnaces (EAFs), widely used for steel production industries, are...
A simplified Voltage Peak Detection (VPD)-based flickermeter based on spectral decomposition is prop...
[[abstract]]The reactive power variation due to the heavy load change in the process of arc welding,...
The random load variation, as in case of the arc furnaces, determines random voltage variations at t...
The paper presents the impact of work on the electric arc furnace. Arc equipment is one of the large...
The major power quality issue of voltage flicker has resulted as a serious concern for the customers...
Abstract – Modeling of the three phase electric arc furnace and its voltage flicker mitigation are t...
In this paper, a new flicker contribution tracing method has been proposed to determine the individu...
M.Ing. (Electrical and Electronic Engineering)Please refer to full text to view abstract
In this paper, an improved method for detecting light-flicker from multiple flicker sources which ha...
In this research work, two new flickermeters are proposed to estimate the light flicker caused by el...
Due to the dynamic nature of load changes, arc devices are receivers that generate disturbances to t...
A simplified Voltage Peak Detection (VPD)-based flickermeter based on spectral decomposition is prop...
In this study, a Kalman filtering based approach is proposed to measure the light flicker of the ele...
M.Ing.\Vith electrical power networks expanding beyond their original design limits and the various ...
International audienceElectric Arc Furnaces (EAFs), widely used for steel production industries, are...
A simplified Voltage Peak Detection (VPD)-based flickermeter based on spectral decomposition is prop...
[[abstract]]The reactive power variation due to the heavy load change in the process of arc welding,...
The random load variation, as in case of the arc furnaces, determines random voltage variations at t...
The paper presents the impact of work on the electric arc furnace. Arc equipment is one of the large...
The major power quality issue of voltage flicker has resulted as a serious concern for the customers...
Abstract – Modeling of the three phase electric arc furnace and its voltage flicker mitigation are t...
In this paper, a new flicker contribution tracing method has been proposed to determine the individu...
M.Ing. (Electrical and Electronic Engineering)Please refer to full text to view abstract