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  5. Synchronizing Torque Impacts on Rotor Speed in Power Systems
 
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Synchronizing Torque Impacts on Rotor Speed in Power Systems

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Author(s)
Bakhtvar, Mostafa 
Vittal, Eknath 
Zheng, Kuan 
Keane, Andrew 
Uri
http://hdl.handle.net/10197/7987
Date Issued
2016
Date Available
23T16:16:27Z September 2016
Abstract
Renewables are increasingly replacing power from conventional generators. Renewable power injected through power electronic converters lacks the fundamental electric torque components. Electric torque components have an important role in determining the behavior of conventional machines in the network. The influence of this factor becomes more notable in power systems with reduced inertia. Hence, questions arise on, how can synchronizing torque basically contribute to the rotor speed deviation and eventually the system frequency and if there is a potential for using the steady state synchronizing torque coefficient (STC) to achieve acceptable frequency operating points. This paper calculates the steady state STC matrix by using the multi-machine Heffron-Philips model in conjunction with the network admitance matrix. Accordingly, it investigates the impact of the generator location and reactive power output on the STC matrix. It demonstrates how this impact manifests in the generator rotor speed deviation. Eventually, the significance of the STC from the system frequency perspective is assessed.
Sponsorship
Science Foundation Ireland
Type of Material
Journal Article
Publisher
IEEE
Journal
IEEE Transactions on Power Systems
Volume
32
Issue
3
Start Page
1927
End Page
1935
Copyright (Published Version)
2016 IEEE
Keywords
  • Operation

  • Frequency

  • Reactive power

  • Synchronizing torque

  • Wind generation

  • Rate of change of fre...

DOI
10.1109/TPWRS.2016.2600478
Language
English
Status of Item
Peer reviewed
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
Owning collection
Electrical and Electronic Engineering Research Collection
Scopus© citations
10
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Feb 6, 2023
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