Optimal Power Flow for Three-phase Unbalanced Active Distribution Networks with Delta Connections

被引:1
|
作者
Sepulveda, Simon [1 ]
Garces Ruiz, Alejandro [1 ]
Jose Mora-Florez, Juan [1 ]
机构
[1] Technol Univ Pereira, Dept Elect Engn, Pereira, Colombia
来源
2022 IEEE ANDESCON | 2022年
关键词
Wirtinger Calculus; Convex optimization; Linear Programming; Optimal Power Flow; Tertiary control; APPROXIMATION;
D O I
10.1109/ANDESCON56260.2022.9989969
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
This paper presents a linear-convex formulation for the optimal power flow (OPF) in three-phase unbalanced power distribution networks considering mixed wye and delta-connected loads. The present approach describes an optimization model based on Taylor's expansion of the power flow equations, using Wirtinger's Calculus; this expansion transforms the non-linear space into an affine set that uses convex optimization techniques, thus, the proposed model guarantees global optimum, uniqueness of the solution, and convergence of the interior point method. The power flow proposal is compared with the successive approximation, which is a generalization of the backward forward sweep (BFS) algorithm, demonstrating the efficiency of the approach, and being applicable for the OPF problem contrary to the BFS. Moreover, numerical results in several IEEE demonstrates that the linear approximation can efficiently solve the optimal power flow for different test systems in generic Medium Voltage grids.
引用
收藏
页码:529 / 534
页数:6
相关论文
共 50 条
  • [21] A hybrid optimal power flow model for transmission and distribution networks
    Nezhad, Ali Esmaeel
    Nardelli, Pedro H. J.
    Javadi, Mohammad Sadegh
    Jowkar, Saeid
    Sabour, Toktam Tavakkoli
    Ghanavati, Farideh
    ELECTRIC POWER SYSTEMS RESEARCH, 2025, 245
  • [22] Iteration-Based Linearized Distribution-Level Locational Marginal Price for Three-Phase Unbalanced Distribution Systems
    Cai, Mengmeng
    Yang, Rui
    Zhang, Yingchen
    IEEE TRANSACTIONS ON SMART GRID, 2021, 12 (06) : 4886 - 4896
  • [23] Three-Phase Optimal Power Flow for Market-Based Control and Optimization of Distributed Generations
    Meng, Fanjun
    Chowdhury, Badrul
    Chamana, Manohar
    IEEE TRANSACTIONS ON SMART GRID, 2018, 9 (04) : 3691 - 3700
  • [24] Three-phase optimal power flow for networked microgrids based on semidefinite programming convex relaxation
    Huang, Yan
    Ju, Yuntao
    Ma, Kang
    Short, Michael
    Chen, Tao
    Zhang, Ruosi
    Lin, Yi
    APPLIED ENERGY, 2022, 305
  • [25] Distributed multi-period three-phase optimal power flow using temporal neighbors
    Pinto, Rui
    Bessa, Ricardo J.
    Sumaili, Jean
    Matos, Manuel A.
    ELECTRIC POWER SYSTEMS RESEARCH, 2020, 182
  • [26] Using Optimal Power Flow for Management of Power Flows in Active Distribution Networks within Thermal constraints
    Dolan, M. J.
    Davidson, E. M.
    Ault, G. W.
    Coffele, F.
    Kockar, I.
    McDonald, J. R.
    UPEC: 2009 44TH INTERNATIONAL UNIVERSITIES POWER ENGINEERING CONFERENCE, 2009, : 86 - 90
  • [27] A probabilistic load flow for unbalanced three-phase islanded microgrids using Unscented Transformation
    Peres, Wesley
    INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2024, 155
  • [28] Optimal Power Flow based on Glow Worm-Swarm Optimization for Three-Phase Islanded Microgrids
    Ninh Nguyen Quang
    Sanseverino, Eleonora Riva
    Di Silvestre, Maria Luisa
    Madonia, Antonino
    Li, Chendan
    Guerrero, Josep M.
    2014 AEIT ANNUAL CONFERENCE - FROM RESEARCH TO INDUSTRY: THE NEED FOR A MORE EFFECTIVE TECHNOLOGY TRANSFER (AEIT), 2014,
  • [29] Linear power flow formulations and optimal operation of three-phase autonomous droop-controlled Microgrids
    Bassey, Ogbonnaya
    Chen, Chen
    Butler-Purry, Karen L.
    ELECTRIC POWER SYSTEMS RESEARCH, 2021, 196
  • [30] Probabilistic OPF Model for Unbalanced Three-Phase Electrical Distribution Systems Considering Robust Constraints
    Giraldo, Juan S.
    Lopez, Juan Camilo
    Castrillon, Jhon A.
    Rider, Marcos J.
    Castro, Carlos A.
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2019, 34 (05) : 3443 - 3454