Distributionally Robust Chance-Constrained AC-OPF for Integrating Wind Energy Through Multi-Terminal VSC-HVDC

被引:29
|
作者
Yao, Li [1 ]
Wang, Xiuli [1 ]
Li, Yujun [1 ]
Duan, Chao [1 ]
Wu, Xiong [1 ]
机构
[1] Xi An Jiao Tong Univ, Sch Elect Engn, Shannxi Key Lab Smart Grid, Xian 710049, Peoples R China
基金
美国国家科学基金会;
关键词
Uncertainty; Mathematical model; Wind farms; Wind power generation; Measurement; Matrix converters; Probability distribution; Distributionally robust optimization (DRO); Chance-constrained programming; Multi-terminal VSC-HVdc (MTDC); AC-OPF; OPTIMAL POWER-FLOW; OFFSHORE WIND; AC/DC GRIDS; OPTIMIZATION; UNCERTAINTY; SYSTEM;
D O I
10.1109/TSTE.2019.2927135
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Using the multi-terminal VSC-HVdc (MTDC) system to collect far-distance offshore wind power into the main onshore ac grid has become one of the ideal transmission approaches for renewable energy integration. However, with traditional fixed dc droop control in MTDC system, the lack of the capability of regulating power flow might pose a great challenge to the system operation. Accordingly, a novel MTDC model has been established in this paper which establishes that the output power of onshore converters can be formulated as a linear function of the control variables, namely power initial set point of each onshore converter. Based on this model, considering the uncertainty from wind power forecast error, a distributionally robust chance-constrained AC-OPF model is proposed for the hybrid AC/MTDC system. Without any presumption on the probability distribution of uncertainty, this model ensures the secure operation by enforcing chance constraints under the worst-case probability distribution over an ambiguity set based on the Wasserstein-Moment metric. Aiming at obtaining a tractable chance-constraint reformulation, we first employ the partial linearization of ac power flow equations to yield a linear model which represents the system response under uncertainties. We then develop an efficient and scalable approach to derive the linear analytical reformulation of distributionally robust chance constraints. The performance of the proposed model is firstly tested on the 14-bus system for an illustrative purpose, and then on the 1354-bus system for demonstrating scalability.
引用
收藏
页码:1414 / 1426
页数:13
相关论文
共 50 条
  • [21] Power Sharing Control and Wind Power Curtailing for Offshore Multi-terminal VSC-HVDC Transmission
    Abdelwahed, Mohamed
    Sindi, Hatem
    El-Saadany, Ehab F.
    2016 THE 4TH IEEE INTERNATIONAL CONFERENCE ON SMART ENERGY GRID ENGINEERING (SEGE), 2016, : 141 - 146
  • [22] Operation and Coordinated Control of Multi-terminal VSC-HVDC Transmission System for Wind Power Generation
    Fu, Yuan
    Wang, Yi
    Luo, Yingli
    Zhang, Xiangyu
    2012 INTERNATIONAL CONFERENCE ON POWER AND ENERGY SYSTEMS (ICPES 2012), 2012, 13 : 416 - 422
  • [23] Control Strategy of System Coordination in Nanao Multi-terminal VSC-HVDC Project for Wind Integration
    Fu, Jiao
    Yuan, Zhichang
    Wang, Yizhen
    Xu, Shukai
    Wei, Wei
    Luo, Yu
    2014 IEEE PES GENERAL MEETING - CONFERENCE & EXPOSITION, 2014,
  • [24] Distributionally robust chance-constrained energy management of an integrated retailer in the multi-energy market
    Zhou, Yuqi
    Yu, Wenbin
    Zhu, Shanying
    Yang, Bo
    He, Jianping
    APPLIED ENERGY, 2021, 286
  • [25] Control of Multi-Terminal VSC-HVDC for Wind Power Integration Using the Voltage-Margin Method
    Ismunandar, Christian
    van der Meer, Arjen A.
    Gibescu, Madeleine
    Hendriks, Ralph L.
    Kling, Wil L.
    9TH INTERNATIONAL WORKSHOP ON LARGE-SCALE INTEGRATION OF WIND POWER INTO POWER SYSTEMS AS WELL AS ON TRANSMISSION NETWORKS FOR OFFSHORE WIND POWER PLANTS, 2010, : 427 - +
  • [26] An Adaptive Voltage Droop Control mechanism for Multi-Terminal VSC-HVDC System for Offshore Wind Farms
    Shaheen, Saima
    Raza, Ali
    Khalid, Ramna
    Javed, Asfa
    2018 4TH INTERNATIONAL CONFERENCE ON POWER GENERATION SYSTEMS AND RENEWABLE ENERGY TECHNOLOGIES (PGSRET-2018), 2018, : 487 - 491
  • [27] A control strategy for a multi-terminal HVDC network integrating wind farms to the AC grid
    Khenar, Mohammad
    Adabi, Jafar
    Pouresmaeil, Edris
    Gholamian, Asghar
    Catalao, Joao P. S.
    INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2017, 89 : 146 - 155
  • [28] Combined Stability and Electro-Magnetic Transients Simulation of Offshore Wind Power Connected through Multi-Terminal VSC-HVDC
    van der Meer, Arjen A.
    Hendriks, Ralph L.
    Kling, Wil L.
    IEEE POWER AND ENERGY SOCIETY GENERAL MEETING 2010, 2010,
  • [29] Dynamic Phasor-based Stability Analysis of Multi-Terminal VSC-HVDC Links with Offshore AC Networks
    Raza, Asad
    Khazaei, Javad
    Asrari, Arash
    Idowu, Peter
    2018 NORTH AMERICAN POWER SYMPOSIUM (NAPS), 2018,
  • [30] A Multi-Option Unified Power Flow Approach for Hybrid AC/DC Grids Incorporating Multi-Terminal VSC-HVDC
    Baradar, Mohamadreza
    Ghandhari, Mehrdad
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2013, 28 (03) : 2376 - 2383