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Simultaneous One-Step Approximations of Real and Reactive Power Flow

Simultaneous One-Step Approximations of Real and Reactive Power Flow
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摘要 This paper presents two new non-iterative approximations of the power flow in a network. Real and reactive power are simultaneously modelled in complex equations. Also, resistances are not set to zero. This is a generalization of the DC approximation, where only real power is modelled with zero line resistance. Hence the proposed approximations are more accurate than the DC approximation. The voltage lag over a link in a short, low voltage, network link is ten times as accurate as with the DC approximation. In the Appendix a new mathematical constant is introduced. This paper presents two new non-iterative approximations of the power flow in a network. Real and reactive power are simultaneously modelled in complex equations. Also, resistances are not set to zero. This is a generalization of the DC approximation, where only real power is modelled with zero line resistance. Hence the proposed approximations are more accurate than the DC approximation. The voltage lag over a link in a short, low voltage, network link is ten times as accurate as with the DC approximation. In the Appendix a new mathematical constant is introduced.
作者 Arie Ten Cate
机构地区 Retired
出处 《Journal of Power and Energy Engineering》 2014年第10期28-33,共6页 电力能源(英文)
关键词 Power Flow MODELING Non-Iterative MODELING TAYLOR EXPANSION TAYLOR Approximation Power Flow Modeling Non-Iterative Modeling Taylor Expansion Taylor Approximation
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