Optimal Power Flow with Dynamic Line Rating for Wind Integrated System

被引:0
|
作者
Andreasen, Mikkel Bay [1 ]
Jakobsen, Rasmus [1 ]
Rezaei, Nazkhanom [2 ]
机构
[1] Aarhus Univ, Sch Engn, Elect Engn, Aarhus, Denmark
[2] Aarhus Univ, Sch Engn, Aarhus, Denmark
来源
2020 55TH INTERNATIONAL UNIVERSITIES POWER ENGINEERING CONFERENCE (UPEC) | 2020年
关键词
OPF; IPM; optimization; SLR; DLR; wind; ampacity;
D O I
10.1109/upec49904.2020.9209878
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The ampacity and resistance of a transmission line are usually treated as static. However, these parameters are highly dependent upon the weather conditions. In this article, optimal power flow (OPF) is applied to reduce the active power losses in a modified IEEE 9 -bus system with wind farm integration. The OPF algorithm includes the dynamic ampacity of the transmission line, as a constraint, instead of the traditional static ampacity. This allows an increased transmission capacity while maintaining secure operation. By analyzing the effects of the wind conditions on a transmission line, this article seeks to investigate the coherence between a DLR-modeling approach and optimal system operation. A DLRmodeling approach on transmission lines connected to a wind farm can reveal unused transmission capacity. This allows for either incorporation of more renewable production or a reduction of the cost of the transmission line design, given the system operation seeks to minimize the active power losses.
引用
收藏
页数:6
相关论文
共 50 条
  • [1] Dynamic line rating for wind power
    Talpur, Saifal
    Wallnerstrom, Carl Johan
    Flood, Christer
    Hilber, Patrik
    JOURNAL OF RENEWABLE AND SUSTAINABLE ENERGY, 2016, 8 (01)
  • [2] Security Constrained Optimal Power Flow Considering Dynamic Line Rating
    Triwijaya, Santi
    Sugiantoro, Nurdin
    Prasetyo, Yuli
    Firdaus
    Wibowo, Rony Seto
    Penangsang, Ontoseno
    PROCEEDINGS OF 2018 THE 10TH INTERNATIONAL CONFERENCE ON INFORMATION TECHNOLOGY AND ELECTRICAL ENGINEERING (ICITEE), 2018, : 46 - 51
  • [3] Dynamic optimal power-flow of power system with wind power
    Nie Y.
    Feng H.
    Yu Y.
    Wang Z.
    2017, Electric Power Automation Equipment Press (37): : 15 - 21
  • [4] Optimal reactive power flow in wind generation integrated power system
    Qiao, Jiageng
    Min, Yong
    Lu, Zongxiang
    2006 INTERNATIONAL CONFERENCE ON POWER SYSTEMS TECHNOLOGY: POWERCON, VOLS 1- 6, 2006, : 928 - +
  • [5] Reliability Impact of Dynamic Thermal Rating System in Wind Power Integrated Network
    Teh, Jiashen
    Cotton, Ian
    IEEE TRANSACTIONS ON RELIABILITY, 2016, 65 (02) : 1081 - 1089
  • [6] Dynamic line rating systems for wind power integration
    Fernandez, E.
    Albizu, I.
    Bedialauneta, M. T.
    Mazon, A. J.
    Leite, P. T.
    2012 IEEE POWER ENGINEERING SOCIETY CONFERENCE AND EXPOSITION IN AFRICA (POWERAFRICA), 2012,
  • [7] Modified Optimal Power Flow on Storage Devices and Wind Power Integrated System
    Bai, Wenlei
    Lee, Kwang Y.
    2016 IEEE POWER AND ENERGY SOCIETY GENERAL MEETING (PESGM), 2016,
  • [8] Reliability impact of dynamic thermal line rating and electric vehicles on wind power integrated networks
    Song, Tianhua
    Teh, Jiashen
    Alharbi, Bader
    ENERGY, 2024, 313
  • [9] Minimization of Wind Power Curtailment using Dynamic Line Rating
    Manakari, Vageesh Chakrapani
    Thengius, Sandra
    Ravi, Akshaya Tammanur
    Morozovska, Kateryna
    Hilber, Patrik
    2020 IEEE PES INNOVATIVE SMART GRID TECHNOLOGIES EUROPE (ISGT-EUROPE 2020): SMART GRIDS: KEY ENABLERS OF A GREEN POWER SYSTEM, 2020, : 615 - 619
  • [10] Impact From Dynamic Line Rating on Wind Power Integration
    Wallnerstrom, Carl Johan
    Huang, Yalin
    Soder, Lennart
    IEEE TRANSACTIONS ON SMART GRID, 2015, 6 (01) : 343 - 350