Coordinating Wind Farms and Battery Management Systems for Inter-Area Oscillation Damping: A Frequency-Domain Approach

被引:33
作者
Chandra, Souvik [1 ]
Gayme, Dennice F. [2 ]
Chakrabortty, Aranya [1 ]
机构
[1] N Carolina State Univ, Dept Elect & Comp Engn, Raleigh, NC 27606 USA
[2] Johns Hopkins Univ, Dept Mech Engn, Baltimore, MD 21218 USA
基金
美国国家科学基金会;
关键词
Damping; frequency domain analysis; optimization; wind power systems; POWER-SYSTEM; ELECTRICITY MARKETS; IMPACT; GENERATION; TRACKING;
D O I
10.1109/TPWRS.2013.2282367
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
This paper presents a set of linear control designs for shaping the inter-area oscillation spectrum of a large radial power system through coordinated control of a wind farm and a battery energy system (BES). We consider a continuum representation of the power system with the wind and battery power modeled as point-source forcings. A spectral analysis of the system demonstrates that its oscillation spectrum strongly depends on the locations of these power injections, implying that there are siting locations that produce more favorable spectral responses. However, the ability to site a wind farm or BES at a specific location may be limited by geographic, environmental, economic or other considerations. Our work provides a means to circumvent this problem by designing co-ordinated controllers for the power outputs of the wind farm and the BES by which one can shape the spectral response of the system to a desired response. The design is posed as a parametric optimization problem that minimizes the error between the two spectral responses over a finite range of frequencies. The approach is independent of the locations of the wind farm and the BES, and can be implemented in a decentralized fashion.
引用
收藏
页码:1454 / 1462
页数:9
相关论文
共 20 条
[1]   Optimal Contracts for Wind Power Producers in Electricity Markets [J].
Bitar, E. ;
Giani, A. ;
Rajagopal, R. ;
Varagnolo, D. ;
Khargonekar, P. ;
Poolla, K. ;
Varaiya, P. .
49TH IEEE CONFERENCE ON DECISION AND CONTROL (CDC), 2010, :1919-1926
[2]  
Chandra S., 2013, P AM CONTR C WASH DC
[3]  
Chen Z., 2011, P C EL UT DER RESTR
[4]   EMERGENCE OF A NEW SWING MODE IN THE WESTERN POWER SYSTEM [J].
CRESAP, RL ;
HAUER, JF .
IEEE TRANSACTIONS ON POWER APPARATUS AND SYSTEMS, 1981, 100 (04) :2037-2045
[5]   A method of tracking the peak power points for a variable speed wind energy conversion system [J].
Datta, R ;
Ranganathan, VT .
IEEE TRANSACTIONS ON ENERGY CONVERSION, 2003, 18 (01) :163-168
[6]   Optimization of perturb and observe maximum power point tracking method [J].
Femia, N ;
Petrone, G ;
Spagnuolo, G ;
Vitelli, M .
IEEE TRANSACTIONS ON POWER ELECTRONICS, 2005, 20 (04) :963-973
[7]   Control Strategy to Mitigate the Impact of Reduced Inertia Due to Doubly Fed Induction Generators on Large Power Systems [J].
Gautam, Durga ;
Goel, Lalit ;
Ayyanar, Raja ;
Vittal, Vijay ;
Harbour, Terry .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2011, 26 (01) :214-224
[8]   Impact of Increased Penetration of DFIG-Based Wind Turbine Generators on Transient and Small Signal Stability of Power Systems [J].
Gautam, Durga ;
Vittal, Vijay ;
Harbour, Terry .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2009, 24 (03) :1426-1434
[9]  
Gayme D. F., 2012, P IEEE C DEC CONTR M
[10]  
Liu Y., 2006, P IEEE POW SYST C EX