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Holomorphic Embedding Based Continuation Method for Identifying Multiple Power Flow Solutions

delete2019-01-01
delete19
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OA
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D
Dan Wu
王彬 (Bin Wang) *
DOI:10.1109/ACCESS.2019.2925384delete
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Abstract

Abstract

En 中文
In this paper, we propose an efficient continuation method for locating multiple power flow solutions. We adopt the holomorphic embedding technique to represent solution curves as holomorphic functions in the complex plane. The holomorphicity, which provides global information of the curve at any regular point, enables large step sizes in the path-following procedure such that non-singular curve segments can be traversed with very few steps. When approaching singular points, we switch to the traditional predictor-corrector routine to pass through them and switch back afterward to the holomorphic embedding routine. We also propose a warm starter when switching to the predictor-corrector routine, i.e., a large initial step size based on the poles of the Pade approximation of the derived holomorphic function, since these poles reveal the locations of singularities on the curve. The numerical analysis and experiments on many standard IEEE test cases are presented, along with the comparison to the full predictor-corrector routine, confirming the efficiency of the method.
Keywords:
Power flow problem
holomorphic embedding
continuation
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IEEE Access cover
IEEE Access
IF:
3.6
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Texas A&M University System
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Citations: 4.0K