1990Journal of King Saud University - Engineering SciencesOpen access

Influence of Superconducting Generators on Steady-State Stability of Multi-Machine Power Systems

M.A.A.S. Alyan, Y.H.A. Rahim, S. M. Osheba

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Abstract

This paper deals mainly with how steady state-stability of interconnected power systems is influenced by introducing a superconducting alternator unit. A linearized model for a multi-machine system containing four generating units, one of whih is superconducting, is obtained. Results are presented which bring out the significant influences of a superconducting alternator on the steady-state stability of power systems. These indicate the directions in which improved performance may be achieved. A quantitative comparison between the influence of the superconducing generator and its conventional counterpart on the stability of multi-machine systems is also provided.

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What this paper is about

This paper deals mainly with how steady state-stability of interconnected power systems is influenced by introducing a superconducting alternator unit. A linearized model for a multi-machine system containing four generating units, one of whih is superconducting, is obtained. Results are presented which bring out the significant influences of a superconducting alternator on the steady-state stability of power systems. These indicate the directions in which improved performance may be achieved. A quantitative comparison between the influence of the superconducing generator and its conventional counterpart on the stability of multi-machine systems is also provided.

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Available abstract

This paper deals mainly with how steady state-stability of interconnected power systems is influenced by introducing a superconducting alternator unit. A linearized model for a multi-machine system containing four generating units, one of whih is superconducting, is obtained. Results are presented which bring out the significant influences of a superconducting alternator on the steady-state stability of power systems. These indicate the directions in which improved performance may be achieved. A quantitative comparison between the influence of the superconducing generator and its conventional counterpart on the stability of multi-machine systems is also provided.

Key concepts: Alternator, Steady state (chemistry), Superconducting electric machine, Stability (learning theory), Electric power system, Control theory (sociology), Generator (circuit theory), Superconductivity

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