DocumentCode :
997436
Title :
Torsional Resonance Risk Management in Islanded Industrial Power Systems Supplying Large VFDs
Author :
Smith, Kenneth S. ; Ran, Li
Author_Institution :
Transm. & Distrib. Div., Mott MacDonald, Glasgow
Volume :
44
Issue :
6
fYear :
2008
Firstpage :
1841
Lastpage :
1850
Abstract :
This paper describes a design study for the power system for an industrial plant with islanded gas turbine generators (GTGs) and large variable-frequency drives (VFDs). Examples discussed are based on the authors´ experience of liquefied natural gas plants where VFDs are used as compressor drivers. The shaft of a GTG has mechanical torsional resonant modes which may be excited by the interharmonic currents produced by the VFDs. At the power levels considered, up to 90 MW for each compressor, the VFD converters should be arranged to give suitable harmonic and interharmonic characteristics. This paper describes real case studies and compares three load-commutated-inverter VFD arrangements. Their advantages and limitations are analyzed; this highlights features that are different for each design for both the ldquonormalrdquo harmonics as well as the interharmonics. It is shown that, in islanded operation, the GTGs cannot provide any electrical damping to the torsional vibration which implies that strict interharmonic limits should be applied in the design. PSCAD-EMTDC time domain simulation results are used to confirm the analysis and justify the considerations that are important in the design exercise.
Keywords :
distributed power generation; gas turbine power stations; industrial power systems; power system harmonics; risk management; variable speed drives; PSCAD-EMTDC time domain simulation; electrical damping; gas turbine generators; interharmonic currents; islanded industrial power systems; liquefied natural gas plants; three load-commutated-inverter VFD; torsional resonance risk management; torsional vibration; variable-frequency drives; Industrial plants; Industrial power systems; Liquefied natural gas; PSCAD; Power generation; Power system harmonics; Resonance; Risk management; Shafts; Turbines; Current; damping; gas turbine; harmonics; industrial power system; interharmonics; synchronous generator; torque; torsional resonance;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2008.2006294
Filename :
4681951
Link To Document :
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