Risk index of loss-of-load expectation is traditionally used to determine generation adequacy. However, be-cause responsibility of generation installation and demand increases with different entities, both generation and load need to be examined to evaluate the resource adequacy of today’s deregulated power systems. An electric utility’s main concern is to plan, design, operate and maintain its power supply to provide an acceptable level of reliability to its users. This clearly requires that standards of reliability be specified and used in all three sectors of the power system, i.e., generation, transmission and distribution. Reliability indices have been defined for the three sectors separately as well as for the bulk power system. Reliability criteria may be determined at the selected load points in the system for different combination of generators and transmission line failures. This paper presents an effective simulation method for the reliability assessment of reliability index, loss-of-load expectation (LOLE). This method is applied to Bangladesh Power System (BPS). BPS has a total installed capacity of around 6550 MW. The maximum demand of BPS is about 5700 MW. The relevant data of the generators and hourly load profiles are collected from the National Load Dispatch Center (NLDC) of Bangladesh and reliability index ‘LOLE’ is assessed for the last six years.
Published in | Journal of Electrical and Electronic Engineering (Volume 1, Issue 1) |
DOI | 10.11648/j.jeee.20130101.13 |
Page(s) | 29-34 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2013. Published by Science Publishing Group |
Installed Capacity, Recursive Method, Forced Outage Rate (FOR), Bangladesh Power System (BPS), Prob-ability Density Function (PDF), LOLE
[1] | Jaeseok Choi; Thomas, R.; Zhifang Wang; El-Keib, A.; Billinton, R.; , "A study on probabilistic optimal reliability criterion determination in composite power system expansion planning," Power Engineering Society General Meeting, 2005. IEEE , vol., no., pp. 1277- 1284 Vol. 2, 12-16 June 2005 |
[2] | Rau, N.S.; Fei Zeng; , "Dynamic optimizations of Monte Carlo simulation to assess locational capacity, transmission, and market parameters," Power Systems, IEEE Transactions on , vol.21, no.1, pp. 34- 42, Feb. 2006 |
[3] | Scott Brown; William K. Marshall;, "Maritimes Area Wind Integration Study," Electrical and Computer Engineering, 2006. CCECE '06. Canadian Conference on , vol., no., pp.670-675, May 2006 |
[4] | Lingfeng Wang; Singh, C.; , "Population-Based Intelligent Search in Reliability Evaluation of Generation Systems With Wind Power Penetration," Power Systems, IEEE Transactions on , vol.23, no.3, pp.1336-1345, Aug. 2008 |
[5] | Miller, N.W.; Jordan, G.A.; , "Evaluating wind capacity value in New York and California," Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century, 2008 IEEE , vol., no., pp.1-7, 20-24 July 2008 |
[6] | Atwa, Y.M.; El-Saadany, E.F.; Guise, A.-C.; , "Supply Ade-quacy Assessment of Distribution System Including Wind-Based DG During Different Modes of Operation," Power Systems, IEEE Transactions on , vol.25, no.1, pp.78-86, Feb. 2010 |
[7] | Al-Alawi, Ameer; Nagle, Makarand; Zhu, Jinxiang; , "Uti-lizing reliability indices to study generation adequacy," Transmission and Distribution Conference and Exposition, 2010 IEEE PES , vol., no., pp.1-5, 19-22 April 2010 |
[8] | Litvinov, E.; "What is reliable smart grid?" Power and Energy Society General Meeting, 2011 IEEE , vol., no., pp.1-2, 24-29 July 2011 |
[9] | Delavaripour, H.; Karshenas, H.R.; Bakhshai, A.; Jain, P.; , "Optimum battery size selection in standalone renewable energy systems," Telecommunications Energy Conference (INTELEC), 2011 IEEE 33rd International , vol., no., pp.1-7, 9-13 Oct. 2011 |
[10] | Ford, Andrew P.; Heath, Brandon; , "LOLE best practices working group," Power and Energy Society General Meeting, 2012 IEEE , vol., no., pp.1-5, 22-26 July 2012 |
[11] | D'Annunzio, C.; Santoso, S.; , "Wind power generation reliability analysis and modeling," Power Engineering So-ciety General Meeting, 2005. IEEE , vol., no., pp.35-39 Vol. 1, 2005 |
[12] | Wangdee, W.; Billinton, R.; , "Considering load-carrying capability and wind speed correlation of WECS in generation adequacy assessment," Energy Conversion, IEEE Transactions on , vol.21, no.3, pp.734-741, Sept. 2006 |
[13] | Lei Wu; Shahidehpour, M.; Tao Li; , "Cost of Reliability Analysis Based on Stochastic Unit Commitment," Power Systems, IEEE Transactions on , vol.23, no.3, pp.1364-1374, Aug. 2008 |
[14] | Henderson, M.; Wong, P.; Platts, J.; Burke, R.; , "Planning for reliability, economics, and the environment in a deregu-lated market," Power and Energy Society General Meeting - Conversion and Delivery of Electrical Energy in the 21st Century, 2008 IEEE , vol., no., pp.1-9, 20-24 July 2008 |
[15] | M. M. Othman, A. Mohamed, and A. Hussain, "Available transfer capability assessment using evolutionary program-ming based capacity benefit margin," Int. J. Elect. Power Energy Syst., vol. 28, no. 3, pp. 166–176, Mar. 2006. |
[16] | Ramezani, M.; Haghifam, M.-R.; Singh, C.; Seifi, H.; Mog-haddam, M.P.; , "Determination of Capacity Benefit Margin in Multiarea Power Systems Using Particle Swarm Optimi-zation," Power Systems, IEEE Transactions on , vol.24, no.2, pp.631-641, May 2009 |
[17] | Hagkwen Kim; Singh, C.; , "Reliability Modeling and Si-mulation in Power Systems With Aging Characteristics," Power Systems, IEEE Transactions on , vol.25, no.1, pp.21-28, Feb. 2010 |
[18] | Atwa, Y.M.; El-Saadany, E.F.; Salama, M.M.A.; Seethapathy, R.; Assam, M.; Conti, S.; , "Adequacy Evaluation of Distribution System Including Wind/Solar DG During Dif-ferent Modes of Operation," Power Systems, IEEE Transac-tions on , vol.26, no.4, pp.1945-1952, Nov. 2011 |
[19] | Songzhe Zhu; Yi Zhang; Chowdhury, A.A.; , "Capacity credit of wind generation based on minimum resource adequacy procurement," Industry Applications Society Annual Meeting (IAS), 2011 IEEE , vol., no., pp.1-6, 9-13 Oct. 2011 |
[20] | Chao-Shun Chen; Cheng-Ta Tsai; Cheng-Ting Hsu; Hui-Jen Chuang; , "Capacity expansion planning of distribution substations considering PV penetration," Industrial & Commercial Power Systems Technical Conference (I&CPS), 2012 IEEE/IAS 48th , vol., no., pp.1-7, 20-24 May 2012 |
APA Style
Nahid-Al- Masood, Md. Khurram Monir Rabby, Mamun Rabbani, Mafruha Ahmed, Proteeti Peya. (2013). An Effective Simulation Technique to Evaluate Loss of Load Expectation. Journal of Electrical and Electronic Engineering, 1(1), 29-34. https://doi.org/10.11648/j.jeee.20130101.13
ACS Style
Nahid-Al- Masood; Md. Khurram Monir Rabby; Mamun Rabbani; Mafruha Ahmed; Proteeti Peya. An Effective Simulation Technique to Evaluate Loss of Load Expectation. J. Electr. Electron. Eng. 2013, 1(1), 29-34. doi: 10.11648/j.jeee.20130101.13
AMA Style
Nahid-Al- Masood, Md. Khurram Monir Rabby, Mamun Rabbani, Mafruha Ahmed, Proteeti Peya. An Effective Simulation Technique to Evaluate Loss of Load Expectation. J Electr Electron Eng. 2013;1(1):29-34. doi: 10.11648/j.jeee.20130101.13
@article{10.11648/j.jeee.20130101.13, author = {Nahid-Al- Masood and Md. Khurram Monir Rabby and Mamun Rabbani and Mafruha Ahmed and Proteeti Peya}, title = {An Effective Simulation Technique to Evaluate Loss of Load Expectation}, journal = {Journal of Electrical and Electronic Engineering}, volume = {1}, number = {1}, pages = {29-34}, doi = {10.11648/j.jeee.20130101.13}, url = {https://doi.org/10.11648/j.jeee.20130101.13}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.jeee.20130101.13}, abstract = {Risk index of loss-of-load expectation is traditionally used to determine generation adequacy. However, be-cause responsibility of generation installation and demand increases with different entities, both generation and load need to be examined to evaluate the resource adequacy of today’s deregulated power systems. An electric utility’s main concern is to plan, design, operate and maintain its power supply to provide an acceptable level of reliability to its users. This clearly requires that standards of reliability be specified and used in all three sectors of the power system, i.e., generation, transmission and distribution. Reliability indices have been defined for the three sectors separately as well as for the bulk power system. Reliability criteria may be determined at the selected load points in the system for different combination of generators and transmission line failures. This paper presents an effective simulation method for the reliability assessment of reliability index, loss-of-load expectation (LOLE). This method is applied to Bangladesh Power System (BPS). BPS has a total installed capacity of around 6550 MW. The maximum demand of BPS is about 5700 MW. The relevant data of the generators and hourly load profiles are collected from the National Load Dispatch Center (NLDC) of Bangladesh and reliability index ‘LOLE’ is assessed for the last six years.}, year = {2013} }
TY - JOUR T1 - An Effective Simulation Technique to Evaluate Loss of Load Expectation AU - Nahid-Al- Masood AU - Md. Khurram Monir Rabby AU - Mamun Rabbani AU - Mafruha Ahmed AU - Proteeti Peya Y1 - 2013/04/02 PY - 2013 N1 - https://doi.org/10.11648/j.jeee.20130101.13 DO - 10.11648/j.jeee.20130101.13 T2 - Journal of Electrical and Electronic Engineering JF - Journal of Electrical and Electronic Engineering JO - Journal of Electrical and Electronic Engineering SP - 29 EP - 34 PB - Science Publishing Group SN - 2329-1605 UR - https://doi.org/10.11648/j.jeee.20130101.13 AB - Risk index of loss-of-load expectation is traditionally used to determine generation adequacy. However, be-cause responsibility of generation installation and demand increases with different entities, both generation and load need to be examined to evaluate the resource adequacy of today’s deregulated power systems. An electric utility’s main concern is to plan, design, operate and maintain its power supply to provide an acceptable level of reliability to its users. This clearly requires that standards of reliability be specified and used in all three sectors of the power system, i.e., generation, transmission and distribution. Reliability indices have been defined for the three sectors separately as well as for the bulk power system. Reliability criteria may be determined at the selected load points in the system for different combination of generators and transmission line failures. This paper presents an effective simulation method for the reliability assessment of reliability index, loss-of-load expectation (LOLE). This method is applied to Bangladesh Power System (BPS). BPS has a total installed capacity of around 6550 MW. The maximum demand of BPS is about 5700 MW. The relevant data of the generators and hourly load profiles are collected from the National Load Dispatch Center (NLDC) of Bangladesh and reliability index ‘LOLE’ is assessed for the last six years. VL - 1 IS - 1 ER -