The scheme of wind-storage combined system capacity configuration based on random fuzzy chance constrained bi-level programming

A random fuzzy chance constrained bilevel programming scheme for distributed wind-storage combined system is proposed. The random fuzzy simulation is used to describe the uncertainty of distributed wind power output. The reliability of randomness and ambiguity is taken as the index to evaluate the c...

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Main Authors: OU Mingyong, WU Zhenyu, YU Haifeng, JIANG Xing, LI Yinyi, LU Wenlin
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201823204060
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spelling doaj-35d71edfbd034cd0b0bc706655c56c6e2021-02-02T04:25:35ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012320406010.1051/matecconf/201823204060matecconf_eitce2018_04060The scheme of wind-storage combined system capacity configuration based on random fuzzy chance constrained bi-level programmingOU Mingyong0WU Zhenyu1YU Haifeng2JIANG Xing3LI Yinyi4LU Wenlin5State Grid Hunan Electric Power Company Economic and Technological Research InstituteChangsha University of Science and TechnologyState Grid Hunan Electric Power Company Economic and Technological Research InstituteState Grid Hunan Electric Power Company Economic and Technological Research InstituteChangsha University of Science and TechnologyState Grid Hunan Electric Power Company Economic and Technological Research InstituteA random fuzzy chance constrained bilevel programming scheme for distributed wind-storage combined system is proposed. The random fuzzy simulation is used to describe the uncertainty of distributed wind power output. The reliability of randomness and ambiguity is taken as the index to evaluate the capacity allocation scheme of the distributed wind-storage combined system. Considering system power balance, opportunity measurement constraint of static security index and active management (AM) measures, the random fuzzy expectation value of maximum annual profit is set as the upper optimization goal, and the minimum random fuzzy expectation value of the distributed wind power active reduction is set as the lower optimization target. The scheme is constructed by judging whether the static security index of the upper goal satisfies the confidence level of the random fuzzy chance constraint and the coordination of the upper and lower goals. Finally, the random fuzzy simulation, the forward pushback power flow calculation and the genetic algorithm (GA) are applied to solve the model. The simulation result of IEEE 14-bus example shows the effectiveness and superiority of the model and scheme.https://doi.org/10.1051/matecconf/201823204060
collection DOAJ
language English
format Article
sources DOAJ
author OU Mingyong
WU Zhenyu
YU Haifeng
JIANG Xing
LI Yinyi
LU Wenlin
spellingShingle OU Mingyong
WU Zhenyu
YU Haifeng
JIANG Xing
LI Yinyi
LU Wenlin
The scheme of wind-storage combined system capacity configuration based on random fuzzy chance constrained bi-level programming
MATEC Web of Conferences
author_facet OU Mingyong
WU Zhenyu
YU Haifeng
JIANG Xing
LI Yinyi
LU Wenlin
author_sort OU Mingyong
title The scheme of wind-storage combined system capacity configuration based on random fuzzy chance constrained bi-level programming
title_short The scheme of wind-storage combined system capacity configuration based on random fuzzy chance constrained bi-level programming
title_full The scheme of wind-storage combined system capacity configuration based on random fuzzy chance constrained bi-level programming
title_fullStr The scheme of wind-storage combined system capacity configuration based on random fuzzy chance constrained bi-level programming
title_full_unstemmed The scheme of wind-storage combined system capacity configuration based on random fuzzy chance constrained bi-level programming
title_sort scheme of wind-storage combined system capacity configuration based on random fuzzy chance constrained bi-level programming
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description A random fuzzy chance constrained bilevel programming scheme for distributed wind-storage combined system is proposed. The random fuzzy simulation is used to describe the uncertainty of distributed wind power output. The reliability of randomness and ambiguity is taken as the index to evaluate the capacity allocation scheme of the distributed wind-storage combined system. Considering system power balance, opportunity measurement constraint of static security index and active management (AM) measures, the random fuzzy expectation value of maximum annual profit is set as the upper optimization goal, and the minimum random fuzzy expectation value of the distributed wind power active reduction is set as the lower optimization target. The scheme is constructed by judging whether the static security index of the upper goal satisfies the confidence level of the random fuzzy chance constraint and the coordination of the upper and lower goals. Finally, the random fuzzy simulation, the forward pushback power flow calculation and the genetic algorithm (GA) are applied to solve the model. The simulation result of IEEE 14-bus example shows the effectiveness and superiority of the model and scheme.
url https://doi.org/10.1051/matecconf/201823204060
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