Energy scheduling optimisation of an islanded microgrid via artificial bee colony guided by global best, personal best and asynchronous scaling factors
An islanded microgrid (IMG) having renewable energy sources (RES), dispatchable sources and battery energy storage (BES) is an effective approach to supply the electricity in remote areas. The reliable operation of IMG is quite complex and challenging task, due to uncertain behaviour of RES, loads a...
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Format: | Article |
Language: | English |
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Taylor & Francis Group
2020-07-01
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Series: | International Journal of Sustainable Energy |
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Online Access: | http://dx.doi.org/10.1080/14786451.2020.1735387 |
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author | Navin Kumar Paliwal Asheesh Kumar Singh Navneet Kumar Singh |
author_facet | Navin Kumar Paliwal Asheesh Kumar Singh Navneet Kumar Singh |
author_sort | Navin Kumar Paliwal |
collection | DOAJ |
description | An islanded microgrid (IMG) having renewable energy sources (RES), dispatchable sources and battery energy storage (BES) is an effective approach to supply the electricity in remote areas. The reliable operation of IMG is quite complex and challenging task, due to uncertain behaviour of RES, loads and energy bid. In this paper, an IMG is simulated to maximise the revenue considering a dynamic optimisation objective subjected to various constraints of system components for two different cases, i.e. considering the stationary and the dynamic energy bid. Artificial bee colony (ABC) and its variants based on global best (GABC), and global and personal best with asynchronous scaling factors (GPSABC) are implemented and the obtained results are also compared with the existing optimisation techniques. Results of GPSABC improve the revenues and offers better accuracy and stability parameters. Further, the effect on revenue results with different ramp rates of diesel generators is described through GPSABC. |
first_indexed | 2024-03-11T23:28:23Z |
format | Article |
id | doaj.art-f3310ad062da4729b973606060ec8428 |
institution | Directory Open Access Journal |
issn | 1478-6451 1478-646X |
language | English |
last_indexed | 2024-03-11T23:28:23Z |
publishDate | 2020-07-01 |
publisher | Taylor & Francis Group |
record_format | Article |
series | International Journal of Sustainable Energy |
spelling | doaj.art-f3310ad062da4729b973606060ec84282023-09-20T10:33:46ZengTaylor & Francis GroupInternational Journal of Sustainable Energy1478-64511478-646X2020-07-0139653955510.1080/14786451.2020.17353871735387Energy scheduling optimisation of an islanded microgrid via artificial bee colony guided by global best, personal best and asynchronous scaling factorsNavin Kumar Paliwal0Asheesh Kumar Singh1Navneet Kumar Singh2MNNIT AllahabadMNNIT AllahabadMNNIT AllahabadAn islanded microgrid (IMG) having renewable energy sources (RES), dispatchable sources and battery energy storage (BES) is an effective approach to supply the electricity in remote areas. The reliable operation of IMG is quite complex and challenging task, due to uncertain behaviour of RES, loads and energy bid. In this paper, an IMG is simulated to maximise the revenue considering a dynamic optimisation objective subjected to various constraints of system components for two different cases, i.e. considering the stationary and the dynamic energy bid. Artificial bee colony (ABC) and its variants based on global best (GABC), and global and personal best with asynchronous scaling factors (GPSABC) are implemented and the obtained results are also compared with the existing optimisation techniques. Results of GPSABC improve the revenues and offers better accuracy and stability parameters. Further, the effect on revenue results with different ramp rates of diesel generators is described through GPSABC.http://dx.doi.org/10.1080/14786451.2020.1735387artificial bee colonybattery energy storageenergy bidenergy schedulingislanded microgridrenewable energy sources |
spellingShingle | Navin Kumar Paliwal Asheesh Kumar Singh Navneet Kumar Singh Energy scheduling optimisation of an islanded microgrid via artificial bee colony guided by global best, personal best and asynchronous scaling factors International Journal of Sustainable Energy artificial bee colony battery energy storage energy bid energy scheduling islanded microgrid renewable energy sources |
title | Energy scheduling optimisation of an islanded microgrid via artificial bee colony guided by global best, personal best and asynchronous scaling factors |
title_full | Energy scheduling optimisation of an islanded microgrid via artificial bee colony guided by global best, personal best and asynchronous scaling factors |
title_fullStr | Energy scheduling optimisation of an islanded microgrid via artificial bee colony guided by global best, personal best and asynchronous scaling factors |
title_full_unstemmed | Energy scheduling optimisation of an islanded microgrid via artificial bee colony guided by global best, personal best and asynchronous scaling factors |
title_short | Energy scheduling optimisation of an islanded microgrid via artificial bee colony guided by global best, personal best and asynchronous scaling factors |
title_sort | energy scheduling optimisation of an islanded microgrid via artificial bee colony guided by global best personal best and asynchronous scaling factors |
topic | artificial bee colony battery energy storage energy bid energy scheduling islanded microgrid renewable energy sources |
url | http://dx.doi.org/10.1080/14786451.2020.1735387 |
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