Security-Constrained Multi-Objective Optimal Power Flow for a Hybrid AC/VSC-MTDC System With Lasso-Based Contingency Filtering

In order to coordinate the economy and voltage quality of a meshed AC/VSC-MTDC system, a new corrective security-constrained multi-objective optimal power flow (SC-MOPF) method is presented in this paper. A parallel SC-MOPF model with N -1 security constraints is proposed for corrective control acti...

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Main Authors: Yahui Li, Yang Li
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8946631/
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spelling doaj-74684bcbefcc4cb5a3abbfab90e589472021-03-30T01:20:05ZengIEEEIEEE Access2169-35362020-01-0186801681110.1109/ACCESS.2019.29633728946631Security-Constrained Multi-Objective Optimal Power Flow for a Hybrid AC/VSC-MTDC System With Lasso-Based Contingency FilteringYahui Li0https://orcid.org/0000-0002-2376-7533Yang Li1https://orcid.org/0000-0002-6515-4567School of Electrical Engineering, Northeast Electric Power University, Jilin, ChinaSchool of Electrical Engineering, Northeast Electric Power University, Jilin, ChinaIn order to coordinate the economy and voltage quality of a meshed AC/VSC-MTDC system, a new corrective security-constrained multi-objective optimal power flow (SC-MOPF) method is presented in this paper. A parallel SC-MOPF model with N -1 security constraints is proposed for corrective control actions of the meshed AC/DC system, in which the minimization of the generation cost and voltage deviation are used as objective functions. To solve this model, a novel parallel bi-criterion evolution indicator based evolutionary algorithm (BCE-IBEA) algorithm is developed to seek multiple well-spread Pareto-optimal solutions through the introduction of parallel computation. In this process, a least absolute shrinkage and selection operator (Lasso)-based N -1 contingency filtering scheme with a composite security index is developed to efficiently screen out the most severe cases from all contingencies. And thereby, the best compromise solutions reflecting the preferences of different decision makers are automatically determined via an integrated decision making technique. Case studies in the modified IEEE 14- and 300-bus systems demonstrate that the presented approach manages to address this SC-MOPF problem with significantly improved computational efficiency.https://ieeexplore.ieee.org/document/8946631/AC/DC systemmulti-objective optimizationoptimal power flowVSC-HVDCdecision makingcontingency filtering
collection DOAJ
language English
format Article
sources DOAJ
author Yahui Li
Yang Li
spellingShingle Yahui Li
Yang Li
Security-Constrained Multi-Objective Optimal Power Flow for a Hybrid AC/VSC-MTDC System With Lasso-Based Contingency Filtering
IEEE Access
AC/DC system
multi-objective optimization
optimal power flow
VSC-HVDC
decision making
contingency filtering
author_facet Yahui Li
Yang Li
author_sort Yahui Li
title Security-Constrained Multi-Objective Optimal Power Flow for a Hybrid AC/VSC-MTDC System With Lasso-Based Contingency Filtering
title_short Security-Constrained Multi-Objective Optimal Power Flow for a Hybrid AC/VSC-MTDC System With Lasso-Based Contingency Filtering
title_full Security-Constrained Multi-Objective Optimal Power Flow for a Hybrid AC/VSC-MTDC System With Lasso-Based Contingency Filtering
title_fullStr Security-Constrained Multi-Objective Optimal Power Flow for a Hybrid AC/VSC-MTDC System With Lasso-Based Contingency Filtering
title_full_unstemmed Security-Constrained Multi-Objective Optimal Power Flow for a Hybrid AC/VSC-MTDC System With Lasso-Based Contingency Filtering
title_sort security-constrained multi-objective optimal power flow for a hybrid ac/vsc-mtdc system with lasso-based contingency filtering
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description In order to coordinate the economy and voltage quality of a meshed AC/VSC-MTDC system, a new corrective security-constrained multi-objective optimal power flow (SC-MOPF) method is presented in this paper. A parallel SC-MOPF model with N -1 security constraints is proposed for corrective control actions of the meshed AC/DC system, in which the minimization of the generation cost and voltage deviation are used as objective functions. To solve this model, a novel parallel bi-criterion evolution indicator based evolutionary algorithm (BCE-IBEA) algorithm is developed to seek multiple well-spread Pareto-optimal solutions through the introduction of parallel computation. In this process, a least absolute shrinkage and selection operator (Lasso)-based N -1 contingency filtering scheme with a composite security index is developed to efficiently screen out the most severe cases from all contingencies. And thereby, the best compromise solutions reflecting the preferences of different decision makers are automatically determined via an integrated decision making technique. Case studies in the modified IEEE 14- and 300-bus systems demonstrate that the presented approach manages to address this SC-MOPF problem with significantly improved computational efficiency.
topic AC/DC system
multi-objective optimization
optimal power flow
VSC-HVDC
decision making
contingency filtering
url https://ieeexplore.ieee.org/document/8946631/
work_keys_str_mv AT yahuili securityconstrainedmultiobjectiveoptimalpowerflowforahybridacvscmtdcsystemwithlassobasedcontingencyfiltering
AT yangli securityconstrainedmultiobjectiveoptimalpowerflowforahybridacvscmtdcsystemwithlassobasedcontingencyfiltering
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