Some subjects of load flow calculation in shipboard integrated power systems

Modern shipboard integrated power systems require efficient and fast load flow solution methods. Classical load flow methods can't be applied directly because of the typical characters such as high R/X ratios, mixed AC and DC regions and ungrounded connection types. This paper illustrates some...

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Published in2011 International Conference on Electrical Machines and Systems pp. 1 - 5
Main Authors Kang Jun, Fu Lijun, Ma Fan, Wang Gang, Ye Zhihao, Fan Xuexin
Format Conference Proceeding
LanguageEnglish
Published IEEE 01.08.2011
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Abstract Modern shipboard integrated power systems require efficient and fast load flow solution methods. Classical load flow methods can't be applied directly because of the typical characters such as high R/X ratios, mixed AC and DC regions and ungrounded connection types. This paper illustrates some subjects of load flow calculation for shipboard power systems. Factors affecting the convergence of load flow equations are analyzed in details, which provide the precondition for solving load flow equations. Improvements on load flow methods for ungrounded distribution power systems are proposed due to the lost of ground reference in shipboard power systems. Especially, integrated AC/DC systems load flow approaches including three-phase converter models are also presented. Numerical examples demonstrate the validity and effectiveness of the proposed method.
AbstractList Modern shipboard integrated power systems require efficient and fast load flow solution methods. Classical load flow methods can't be applied directly because of the typical characters such as high R/X ratios, mixed AC and DC regions and ungrounded connection types. This paper illustrates some subjects of load flow calculation for shipboard power systems. Factors affecting the convergence of load flow equations are analyzed in details, which provide the precondition for solving load flow equations. Improvements on load flow methods for ungrounded distribution power systems are proposed due to the lost of ground reference in shipboard power systems. Especially, integrated AC/DC systems load flow approaches including three-phase converter models are also presented. Numerical examples demonstrate the validity and effectiveness of the proposed method.
Author Ye Zhihao
Wang Gang
Fu Lijun
Fan Xuexin
Ma Fan
Kang Jun
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  organization: Res. Inst. of Power Electron. Tech., Naval Univ. of Eng., Wuhan, China
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  surname: Fu Lijun
  fullname: Fu Lijun
  organization: Res. Inst. of Power Electron. Tech., Naval Univ. of Eng., Wuhan, China
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  surname: Ma Fan
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  organization: Res. Inst. of Power Electron. Tech., Naval Univ. of Eng., Wuhan, China
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  surname: Wang Gang
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  organization: Res. Inst. of Power Electron. Tech., Naval Univ. of Eng., Wuhan, China
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  surname: Ye Zhihao
  fullname: Ye Zhihao
  organization: Res. Inst. of Power Electron. Tech., Naval Univ. of Eng., Wuhan, China
– sequence: 6
  surname: Fan Xuexin
  fullname: Fan Xuexin
  organization: Res. Inst. of Power Electron. Tech., Naval Univ. of Eng., Wuhan, China
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Snippet Modern shipboard integrated power systems require efficient and fast load flow solution methods. Classical load flow methods can't be applied directly because...
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SubjectTerms Admittance
Convergence
Impedance
Load flow
Load modeling
Mathematical model
Title Some subjects of load flow calculation in shipboard integrated power systems
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