Dynamic performance improvement of a hybrid multimachine system using a flywheel energy storage system

Author:

Ahsan Hailiya1ORCID,Mufti Mairaj-ud-Din1

Affiliation:

1. Department of Electrical Engineering, National Institute of Technology Srinagar, Srinagar, India

Abstract

This article presents a detailed, yet simple control scheme based on a flywheel energy storage system for dynamic performance enhancement. A permanent magnet machine-based 70 MW flywheel energy storage system is incorporated in a wind-integrated Western System Coordinating Council multimachine system. An elaborate mathematical modelling of the flywheel energy storage system as an effective current source is provided along with the wind-embedded multimachine system to investigate the transient stability profile of the said system. Generator speed and voltage are continuously monitored by the flywheel energy storage system plant controllers, and subsequent real and reactive reference power commands are generated. Two first-order lag blocks are employed to emulate the grid side and machine side converters’ dynamics. The developed non-linear model is tested against three-phase faults in a variable wind condition, and the effectiveness of the control scheme is confirmed by the enormous damping and extension in the stability margin of the system.

Publisher

SAGE Publications

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference25 articles.

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2. Applying flywheel energy storage system to integrated power system for power quality and stability enhancement

3. Overview of medium scale energy storage systems

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