This paper presents a harmonics extraction algorithm using artificial neural network methods. The neural network algorithm was used due to the simpler calculation process compared with conventional method such as fast Fourier transform (FFT). Two types of neural network, i.e., multi-layer perceptron (MLP) and radial basis function (RBF) were employed to extract harmonics current component from its distorted wave current. Further, the extracted harmonics current was used as reference current for shunt active power filter (APF) control. This paper compared the performance of MLP and RBF for harmonics extraction. The advantages of RBF are simpler shape of the network and faster learning speed. Unfortunately, the RBF need to be trained...
This paper aims to present the reviews of the application of neural network in shunt active power fi...
The shunt active power filter (SAPF) is a widely used tool for compensation of disturbances in three...
Active Power Filters (APFs) are today the most widely used systems to eliminate harmonics compensate...
This paper presents a harmonics extraction algorithm using artificial neural network methods. The n...
Proliferation of nonlinear loads /devices in power systems generates a major concern to power system...
The growing use of nonlinear devices is introducing harmonics in the power system networks that resu...
The growing use of nonlinear devices is introducing harmonics in the power system networks that resu...
The growing use of nonlinear devices is introducing harmonics in the power system networks that resu...
The growing use of nonlinear devices is introducing harmonics in the power system networks that resu...
The growing use of nonlinear devices is introducing harmonics in the power system networks that resu...
This paper presents a single-phase shunt active power filter with artificial intelligence based algo...
Shunt active power filter is known as powerful tool to compensate current harmonics. Previous develo...
A collaborative work between Northumbria University and University of Peradeniya (Sri Lanka). It pre...
This study proposes several high precision selective harmonics compensation schemes for an active po...
Harmonic estimation is the foundation of every active noise canceling method in low-voltage power sy...
This paper aims to present the reviews of the application of neural network in shunt active power fi...
The shunt active power filter (SAPF) is a widely used tool for compensation of disturbances in three...
Active Power Filters (APFs) are today the most widely used systems to eliminate harmonics compensate...
This paper presents a harmonics extraction algorithm using artificial neural network methods. The n...
Proliferation of nonlinear loads /devices in power systems generates a major concern to power system...
The growing use of nonlinear devices is introducing harmonics in the power system networks that resu...
The growing use of nonlinear devices is introducing harmonics in the power system networks that resu...
The growing use of nonlinear devices is introducing harmonics in the power system networks that resu...
The growing use of nonlinear devices is introducing harmonics in the power system networks that resu...
The growing use of nonlinear devices is introducing harmonics in the power system networks that resu...
This paper presents a single-phase shunt active power filter with artificial intelligence based algo...
Shunt active power filter is known as powerful tool to compensate current harmonics. Previous develo...
A collaborative work between Northumbria University and University of Peradeniya (Sri Lanka). It pre...
This study proposes several high precision selective harmonics compensation schemes for an active po...
Harmonic estimation is the foundation of every active noise canceling method in low-voltage power sy...
This paper aims to present the reviews of the application of neural network in shunt active power fi...
The shunt active power filter (SAPF) is a widely used tool for compensation of disturbances in three...
Active Power Filters (APFs) are today the most widely used systems to eliminate harmonics compensate...