Neural network-based voltage regulator for an isolated asynchronous generator supplying three-phase four-wire loads

Singh, Bhim ; Kasal, Gaurav Kumar (2008) Neural network-based voltage regulator for an isolated asynchronous generator supplying three-phase four-wire loads Electric Power Systems Research, 78 (6). pp. 985-994. ISSN 0378-7796

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Official URL: http://www.sciencedirect.com/science/article/pii/S...

Related URL: http://dx.doi.org/10.1016/j.epsr.2007.07.005

Abstract

This paper deals with a neural network-based solid state voltage controller for an isolated asynchronous generator (IAG) driven by constant speed prime mover like diesel engine, bio-gas or gasoline engine and supplying three-phase four-wire loads. The proposed control scheme uses an indirect current control and a fast adaptive linear element (adaline) based neural network reference current extractor, which extracts the real positive sequence current component without any phase shift. The neutral current of the source is also compensated by using three single-phase bridge configuration of IGBT (insulated gate bipolar junction transistor) based voltage source converter (VSC) along-with single-phase transformer having self-supported dc bus. The proposed controller provides the functions as a voltage regulator, a harmonic eliminator, a neutral current compensator, and a load balancer. The proposed isolated electrical system with its controller is modeled and simulated in MATLAB along with Simulink and PSB (Power System Block set) toolboxes. The simulated results are presented to demonstrate the capability of an isolated asynchronous generating system driven by a constant speed prime mover for feeding three-phase four-wire loads.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:Isolated Asynchronous Generator; Three-Phase Four-Wire System; Voltage Controller; Harmonic Elimination; Load Balancing; Neural Network
ID Code:106510
Deposited On:07 Aug 2017 12:17
Last Modified:07 Aug 2017 12:17

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