[Home ] [Archive]   [ فارسی ]  
:: Main :: About :: Current Issue :: Archive :: Search :: Submit :: Contact ::
Main Menu
Home::
Journal Information::
Articles archive::
For Authors::
For Reviewers::
Registration::
Contact us::
Site Facilities::
::
Social Network Membership
Linkedin
Researchgate
..
Indexing Databases
..
DOI
کلیک کنید
..
ِDOR
..
Search in website

Advanced Search
..
Receive site information
Enter your Email in the following box to receive the site news and information.
..
:: Volume 7, Issue 1 (9-2018) ::
ieijqp 2018, 7(1): 54-67 Back to browse issues page
Optimal Planning of Microgrids with Considering Load and Renewable Power Generation Uncertainty
Farhad Samadi Gazijahani1 , Javad Salehi * 1, Navid Taghizadegan Kalantari1
1- Azarbaijan Shahid Madani University
Abstract:   (4603 Views)
This paper presents a novel approach for optimal planning of the multi microgrids (MMGs) under uncertainties in load and renewable power generation. The proposed approach is applied for optimally determining the size, type, number, and site of renewable and dispatchable distribution generation (DG) with optimal allocation of switch for clustering distribution systems into a number of microgrids to economical and reliable structure. The optimization aim is to minimize the totally microgrid planning cost including investment cost, operation and maintenance cost, power losses cost, the pollutants emission cost and the cost of energy not supply (ENS). The system uncertainties are considered using a set of scenarios and a scenario reduction method is applied to enhance a tradeoff between the accuracy of the solution and the computational burden. Cuckoo optimization algorithm (COA) is implemented to minimize the objective function as an optimization algorithm. Also, the effect of optimization coefficients on the planning problem and the robustness of the proposed algorithm are investigated using sensitivity analysis. The efficiency of the proposed method are validated on 33-bus distribution system and the obtained results show that the proposed framework can be considered as an efficient tool for planning of multi microgrids under uncertainty.
Keywords: Microgrids, Planning, Uncertainty, Reliability, COA
Full-Text [PDF 2180 kb]   (2837 Downloads)    
Type of Study: Research |
Received: 2017/10/15 | Accepted: 2018/08/4 | Published: 2018/08/25
References
1. [1] Department of Energy Office of Electricity Delivery and Energy Reliability. Summary Report: 2012 DOE Microgrid Workshop. 2012.
2. [2] H. Fathima, K. Palanisamy, “Optimization in microgrids with hybrid energy systems–A review,” Renewable and Sustainable Energy Reviews., vol. 45, pp. 431-446, 2015.
3. [3] S. A. Arefifar, Y. A-R. I. Mohamed, T. H. M. EL-Fouly, “Optimum Microgrid Design for Enhancing Reliability and Supply-Security,” IEEE Trans. Smart Grid., vol. 4, no 3, pp. 1567-1575, Sep. 2013.
4. [4] L. Guo, W. Liu, B. Jiao, B. Hong, C. Wang, “Multi-objective stochastic optimal planning method for stand-alone microgrid system,” IET Gener. Transm. Distrib. Vol. 8, no. 7, pp.1263–1273, Nov. 2014.
5. [5] Z. Wang, B. Chen, J. Wang, C. Chen, “Networked Microgrids for Self-Healing Power Systems,” IEEE Trans. Smart Grid., vol. 2, no 1, pp. 1-10, Apr. 2015.
6. [6] Z. Wang, J. Wang, “Self-Healing resilient distribution systems Based on sectionalization into microgrids,” IEEE Trans. Power Sys., vol. 3, no 1, pp. 1-10, Oct. 2015.
7. [7] L. Che, X. Zhang, M. Shahidehpour, A. Alabdul-wahab, A. Abusorrah, “Optimal interconnection Planning of Community Microgrids with Renewable Energy Sources,” IEEE Trans. Smart Grid., vol. 1, no. 5, pp. 1-10, 2015.
8. [8] A.Khodaei, S. Bahramirad, M. Shahidehpour,“ Micro-grid Planning Under Uncertainty,” IEEE Trans. Smart Grid., vol. 30, no. 5, pp. 2417- 2425, Sep. 2015.
9. [9] L. Che, X. Zhang, M. Shahidehpour, A. Alabdulwahab, Y. A-Turki, “Optimal planning of Loop-Based micro-grid Topology,” IEEE Trans. Smart Grid., vol. 2, no. 4, pp. 1-11, Jul. 2016.
10. [10] Nekooei, K., Farsangi, M.M., Pour, N-H, Lee, K.Y, “An Improved multiobjective harmony search for optimal placement of DGs in distribution systems’, IEEE Trans. Smart Grid, vol. 4, no. 1, pp. 557–567, 2013.
11. [11] A. Khodaei and M. Shahidehpour, “Microgrid-based co-optimization of Generation and transmission planning in power systems,” IEEE Trans. Power Syst., vol. 28, no. 2, pp. 1582–1590, May 2013.
12. [12] N. Nikmehr and S. Najafi-Ravadanegh, “Optimal power dispatch of multi-microgrids at future smart distribution grids,” IEEE Trans. Smart Grid, vol. 6, no. 4, pp.1648–1657, July. 2015.
13. [13] W. Su, J. Wang, and J. Roh, “Stochastic energy scheduling in microgrid with intermittent renewable energy resources,” IEEE Trans. Smart Grid, vol. 5, no. 4, pp.1876–1883, Jul. 2014.
14. [14] M. Aien, M. Fotuhi-Firuzabad, F. Aminifar, “Probabilistic optimal power Flow in correlated hybrid wind-photovoltaic power systems. IEEE Trans. Smart Grid, vol. 4, no. 4, pp.934– 943, Oct. 2013.
15. [15] M.H. Moradi, M. Eskandari, and S. M. Hosseinian, “Operational Strategy optimization in an optimal sized smart microgrid,” IEEE Trans. Smart Grid, vol. 6, no. 3, pp .1087–1095, May. 2015.
16. [16] A. Soroudi, R. Caire, and N. Hadjsaid and M. Ehsan “Probabilistic dynamic multi-objective model for renewable and non-renewable distributed generation planning,” IET Gen., Transm. Distrib, vol. 5, no. 11, pp. 1173–1182, May 2011.
17. [17] A. Soroudi and M. Afrasiab, “Binary PSO-based dynamic multi-objective model for distributed generation planning under uncertainty,” IET Gen., Transm. Distrib. vol. 6, no. 2, pp. 67–78, 2012.
18. [18] S. Wang, Z. Li, L. Wu, M. Shahidehpour, and Z. Li, “New metrics for assessing the reliability and economics of microgrids in distribution systems,” IEEE Trans. Power Syst., vol.30, no.6, pp.1–10, Feb.2013.
19. [19] R. Rajabioun, “Cuckoo Optimization Algorithm,” Applied Soft Computing. vol. 11, pp. 5508–5518, 2011.
20. [20] A. Ameli, S. Bahrami, F. Khazaeli and M. R. Haghi-fam, “A multiobjective particle swarm optimization for sizing and placement of DGs from DG owner’s and distribution company’s viewpoints,” IEEE Transactions on Power Deliv, vol. 29, no. 4, pp. 1831–1840, Feb 2014.


XML   Persian Abstract   Print


Download citation:
BibTeX | RIS | EndNote | Medlars | ProCite | Reference Manager | RefWorks
Send citation to:

Samadi Gazijahani F, Salehi J, Taghizadegan Kalantari N. Optimal Planning of Microgrids with Considering Load and Renewable Power Generation Uncertainty. ieijqp 2018; 7 (1) :54-67
URL: http://ieijqp.ir/article-1-475-en.html


Rights and permissions
Creative Commons License This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
Volume 7, Issue 1 (9-2018) Back to browse issues page
نشریه علمی- پژوهشی کیفیت و بهره وری صنعت برق ایران Iranian Electric Industry Journal of Quality and Productivity
Persian site map - English site map - Created in 0.07 seconds with 39 queries by YEKTAWEB 4645