Monday 9 February 2009

Wseas Transactions

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Transactions: WSEAS TRANSACTIONS ON POWER SYSTEMS
Transactions ID Number: 28-844
Full Name: Kanwarjit singh Sandhu
Position: Professor
Age: ON
Sex: Male
Address: electrical engineering department, national institute of technology kurukshetra
Country: INDIA
Tel: +91-1744-238001
Tel prefix:
Fax: +91-1744-238050
E-mail address: sandhukjs@rediffmail.com
Other E-mails: kjssandhu@yahoo.com
Title of the Paper: Steady Sate Analysis of Self-Excited Induction Generator using Phasor-Diagram Based Iterative Model
Authors as they appear in the Paper: Kanwarjit Singh Sandhu & Dheeraj Joshi
Email addresses of all the authors: sandhukjs@rediffmail.com, dheeraj_joshi@rediffmail.com
Number of paper pages: 10
Abstract: Induction generators in self excited mode are found to be suitable for remote and windy locations. Prior to installation there is a need to predict the behaviour of machine under all possible operating conditions. This is possible through steady state modeling of such generators. Steady state analysis of self excited induction generator (SEIG) needs an estimation of generated frequency and magnetizing reactance under all possible operating conditions. So far most of the researchers have used loop impedance, nodal admittance or iterative techniques to determine the steady state performance of such machines. In this paper a new model based upon phasor diagram of induction generator has been proposed to analyze the behaviour of self excited induction generator. Modeling results in a third order equation in generated frequency and a simple expression for magnetizing reactance. Complete mathematical analysis to derive the different expressions is presented here. Compu!
ted results have been compared with experimental results on test machines. Closeness between the two proves the validity of proposed modeling.
Keywords: Non-conventional sources, Renewable energy, Steady state analysis, Self-excited induction generator (SEIG), Wind energy.
EXTENSION of the file: .pdf
Special (Invited) Session: Phasor Diagram Based Analysis of Self-Excited Induction Generator
Organizer of the Session: 603-406
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