An Incentive-Based Multistage Expansion Planning Model for Smart Distribution Systems

被引:60
作者
Alotaibi, Majed A. [1 ]
Salama, Magdy M. A. [2 ]
机构
[1] King Saud Univ, Dept Elect Engn, Riyadh 11421, Saudi Arabia
[2] Univ Waterloo, Dept Elect & Comp Engn, Waterloo, ON N2L 3G1, Canada
关键词
Distributed generation planning; distribution system expansion planning; DG uncertainty modeling; incentives; POWER DISTRIBUTION; DISTRIBUTION NETWORKS; PART I; RELIABILITY ASSESSMENT; MATHEMATICAL-MODEL; GENERATION; UNCERTAINTY;
D O I
10.1109/TPWRS.2018.2805322
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
The deployment of smart grids has facilitated the integration of a variety of investor assets into power distribution systems, giving rise to the consequent necessity for positive and active interaction between those investors and local distribution companies (LDCs). This paper proposes a novel incentive-based distribution system expansion planning model that enables an LDC and distributed generation (DG) investors to work in a collaborative way for their mutual benefit. Using the proposed model, the LDC would establish a bus-wise incentive program based on long-term contracts, which would encourage DG investors to integrate their projects at specific system buses that would benefit both parties. The model guarantees that the LDC will incur minimum expansion and operation costs while concurrently ensuring the feasibility of DG investors' projects. To derive appropriate incentives for each project, the model enforces several economic metrics including internal rate of return, profit investment ratio, and discounted payback period. All investment plans committed to by the LDC and the DG investors for the full extent of the planning period are then coordinated accordingly. Several linearization approaches are applied to convert the proposed model into an MILP model. The intermittent nature of both system demand and wind-and PV-based DG output power is handled probabilistically, and a number of DG technologies are taken into account. Case study results have demonstrated the value of the proposed model.
引用
收藏
页码:5469 / 5485
页数:17
相关论文
共 47 条
[31]   Minimizing Energy Losses: Optimal Accommodation and Smart Operation of Renewable Distributed Generation [J].
Ochoa, Luis F. ;
Harrison, Gareth P. .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2011, 26 (01) :198-205
[32]  
Ontario Energy Board, 2007, DISC PAP DISTR GEN D
[33]   Strategic bidding under uncertainty: A binary expansion approach [J].
Pereira, MV ;
Granville, S ;
Fampa, MHC ;
Dix, R ;
Barroso, LA .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2005, 20 (01) :180-188
[34]   Hybrid simulated annealing and mixed integer linear programming algorithm for optimal planning of radial distribution networks with distributed generation [J].
Popovic, Z. N. ;
Kerleta, V. Dj. ;
Popovic, D. S. .
ELECTRIC POWER SYSTEMS RESEARCH, 2014, 108 :211-222
[35]   A New Mathematical Model for the Restoration Problem in Balanced Radial Distribution Systems [J].
Romero, Ruben ;
Franco, John F. ;
Leao, Fabio B. ;
Rider, Marcos J. ;
de Souza, Eliane S. .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2016, 31 (02) :1259-1268
[36]   Investment Decisions in Distribution Networks Under Uncertainty With Distributed Generation-Part I: Model Formulation [J].
Samper, Mauricio E. ;
Vargas, Alberto .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2013, 28 (03) :2331-2340
[37]   New Multistage and Stochastic Mathematical Model for Maximizing RES Hosting Capacity-Part I: Problem Formulation [J].
Santos, Sergio F. ;
Fitiwi, Desta Z. ;
Shafie-Khah, Miadreza ;
Bizuayehu, Abebe W. ;
Cabrita, Carlos M. P. ;
Catalao, Joao P. S. .
IEEE TRANSACTIONS ON SUSTAINABLE ENERGY, 2017, 8 (01) :304-319
[38]   Binary PSO-based dynamic multi-objective model for distributed generation planning under uncertainty [J].
Soroudi, A. ;
Afrasiab, M. .
IET RENEWABLE POWER GENERATION, 2012, 6 (02) :67-78
[39]   Multistage Long-Term Expansion Planning of Electrical Distribution Systems Considering Multiple Alternatives [J].
Tabares, Alejandra ;
Franco, John F. ;
Lavorato, Marina ;
Rider, Marcos J. .
IEEE TRANSACTIONS ON POWER SYSTEMS, 2016, 31 (03) :1900-1914
[40]   Electric power distribution system design and planning in a deregulated environment [J].
Wong, S. ;
Bhattacharya, K. ;
Fuller, J. D. .
IET GENERATION TRANSMISSION & DISTRIBUTION, 2009, 3 (12) :1061-1078