Expansion Planning Method of Offshore Multiplatform Power System With Wind Power Considering Cable Size Selection

With the expansion of the scale of subsea oil and gas resource exploitation, the offshore multiplatform interconnected power systems have become the main form of offshore platform group energy supply. The offshore multiplatform interconnected power system with wind power can effectively reduce the s...

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Main Authors: Zhicheng Jiang, Qingguang Yu, Le Li, Yuming Liu
Format: Article
Language:English
Published: IEEE 2021-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9541199/
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author Zhicheng Jiang
Qingguang Yu
Le Li
Yuming Liu
author_facet Zhicheng Jiang
Qingguang Yu
Le Li
Yuming Liu
author_sort Zhicheng Jiang
collection DOAJ
description With the expansion of the scale of subsea oil and gas resource exploitation, the offshore multiplatform interconnected power systems have become the main form of offshore platform group energy supply. The offshore multiplatform interconnected power system with wind power can effectively reduce the system fuel consumption and carbon emission, which has become an important direction for the development of future offshore multiplatform interconnected power systems. In this paper, the scenario method is adopted to portray the wind power output. System evaluation indicators considering the economy, reliability and environmental benefits of the system are proposed. Considering the nonnegligible impact of the cable size selection problem on the system economic cost, this paper introduces cable size selection variables in the expansion planning model of the offshore multiplatform interconnected power system with wind power to achieve accurate optimization of the system planning scheme but also greatly increases the difficulty of solving the model. A model linearization method is applied to linearize the nonlinear part of the model, so that the optimized model is a mixed-integer linear programming model under the determined system topology, and thus can be solved using commercial planning software. In addition, an improved genetic algorithm is proposed to optimize the system topology, which improves the efficiency of the model solution. The cases of different scale verify the validity of the model and the solution algorithm and show the impact of the maximum penetration rate of wind power on the total system cost.
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spelling doaj.art-09c5670f63404bd5a41fa4c8afc1c4e82022-12-21T22:53:34ZengIEEEIEEE Access2169-35362021-01-01912979612980910.1109/ACCESS.2021.31139449541199Expansion Planning Method of Offshore Multiplatform Power System With Wind Power Considering Cable Size SelectionZhicheng Jiang0https://orcid.org/0000-0001-5957-7283Qingguang Yu1Le Li2Yuming Liu3Department of Electrical Engineering, State Key Laboratory of Power System, Tsinghua University, Beijing, ChinaDepartment of Electrical Engineering, State Key Laboratory of Power System, Tsinghua University, Beijing, ChinaDepartment of Electrical Engineering, State Key Laboratory of Power System, Tsinghua University, Beijing, ChinaDepartment of Electrical Engineering, State Key Laboratory of Power System, Tsinghua University, Beijing, ChinaWith the expansion of the scale of subsea oil and gas resource exploitation, the offshore multiplatform interconnected power systems have become the main form of offshore platform group energy supply. The offshore multiplatform interconnected power system with wind power can effectively reduce the system fuel consumption and carbon emission, which has become an important direction for the development of future offshore multiplatform interconnected power systems. In this paper, the scenario method is adopted to portray the wind power output. System evaluation indicators considering the economy, reliability and environmental benefits of the system are proposed. Considering the nonnegligible impact of the cable size selection problem on the system economic cost, this paper introduces cable size selection variables in the expansion planning model of the offshore multiplatform interconnected power system with wind power to achieve accurate optimization of the system planning scheme but also greatly increases the difficulty of solving the model. A model linearization method is applied to linearize the nonlinear part of the model, so that the optimized model is a mixed-integer linear programming model under the determined system topology, and thus can be solved using commercial planning software. In addition, an improved genetic algorithm is proposed to optimize the system topology, which improves the efficiency of the model solution. The cases of different scale verify the validity of the model and the solution algorithm and show the impact of the maximum penetration rate of wind power on the total system cost.https://ieeexplore.ieee.org/document/9541199/Wind power generationoptimizationpower system planningpower system reliability
spellingShingle Zhicheng Jiang
Qingguang Yu
Le Li
Yuming Liu
Expansion Planning Method of Offshore Multiplatform Power System With Wind Power Considering Cable Size Selection
IEEE Access
Wind power generation
optimization
power system planning
power system reliability
title Expansion Planning Method of Offshore Multiplatform Power System With Wind Power Considering Cable Size Selection
title_full Expansion Planning Method of Offshore Multiplatform Power System With Wind Power Considering Cable Size Selection
title_fullStr Expansion Planning Method of Offshore Multiplatform Power System With Wind Power Considering Cable Size Selection
title_full_unstemmed Expansion Planning Method of Offshore Multiplatform Power System With Wind Power Considering Cable Size Selection
title_short Expansion Planning Method of Offshore Multiplatform Power System With Wind Power Considering Cable Size Selection
title_sort expansion planning method of offshore multiplatform power system with wind power considering cable size selection
topic Wind power generation
optimization
power system planning
power system reliability
url https://ieeexplore.ieee.org/document/9541199/
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AT qingguangyu expansionplanningmethodofoffshoremultiplatformpowersystemwithwindpowerconsideringcablesizeselection
AT leli expansionplanningmethodofoffshoremultiplatformpowersystemwithwindpowerconsideringcablesizeselection
AT yumingliu expansionplanningmethodofoffshoremultiplatformpowersystemwithwindpowerconsideringcablesizeselection