Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/102774
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dc.contributorDepartment of Building Environment and Energy Engineeringen_US
dc.creatorZou, Ben_US
dc.creatorPeng, Jen_US
dc.creatorLi, Sen_US
dc.creatorLi, Yen_US
dc.creatorYan, Jen_US
dc.creatorYang, Hen_US
dc.date.accessioned2023-11-17T02:57:41Z-
dc.date.available2023-11-17T02:57:41Z-
dc.identifier.issn0306-2619en_US
dc.identifier.urihttp://hdl.handle.net/10397/102774-
dc.language.isoenen_US
dc.publisherPergamon Pressen_US
dc.rights© 2021 Elsevier Ltd. All rights reserved.en_US
dc.rights© 2021. This manuscript version is made available under the CC-BY-NC-ND 4.0 license http://creativecommons.org/licenses/by-nc-nd/4.0/.en_US
dc.rightsThe following publication Zou, B., Peng, J., Li, S., Li, Y., Yan, J., & Yang, H. (2022). Comparative study of the dynamic programming-based and rule-based operation strategies for grid-connected PV-battery systems of office buildings. Applied Energy, 305, 117875 is available at https://dx.doi.org/10.1016/j.apenergy.2021.117875.en_US
dc.subjectComparative studyen_US
dc.subjectDynamic programming (DP)en_US
dc.subjectMaximizing self-consumption (MSC)en_US
dc.subjectOperation strategiesen_US
dc.subjectPhotovoltaic-battery (PVB) systemen_US
dc.subjectTime-of-use (TOU)en_US
dc.titleComparative study of the dynamic programming-based and rule-based operation strategies for grid-connected PV-battery systems of office buildingsen_US
dc.typeJournal/Magazine Articleen_US
dc.identifier.volume305en_US
dc.identifier.doi10.1016/j.apenergy.2021.117875en_US
dcterms.abstractThe proper operation strategy is of great importance for photovoltaic-battery (PVB) systems to achieve desirable performance. Therefore, it's necessary to identify and evaluate the characteristics of different operation strategies for engineering application. In this study, three operation strategies including the dynamic programming (DP)-based strategy and two widely used rule-based strategies, namely the maximizing self-consumption (MSC) strategy and time-of-use (TOU) strategy, are compared comprehensively for the grid-connected PVB system of an office building. Several important performance aspects, including battery charge/discharge process, techno-economic performance, energy distribution, battery aging and impacts on utility grid, are analyzed and compared. The results show that the DP strategy has greater flexibility than the rule-based strategies to adapt to different PV-load distributions and electricity pricing mechanisms, and has the advantage of achieving better economic performance and reducing burden on the grid. Although the economic performance of the MSC strategy is relatively poor, it has the highest self-consumption rate (SCR) and self-sufficiency rate (SSR), thereby having the advantage of using PV generation in timely manner to suit load demand. In addition, the MSC strategy results in the least battery aging, while having the greatest negative impact on the utility grid. The TOU strategy only outperforms the MSC strategy in economic performance under the condition of relatively low battery cost (<1600 CNY/kWh) and causes the most battery aging as well. The findings in this work can provide guidance for decisionmakers to determine the proper management strategy for practical grid-connected PVB systems.en_US
dcterms.accessRightsopen accessen_US
dcterms.bibliographicCitationApplied energy, 1 Jan. 2022, v. 305, 117875en_US
dcterms.isPartOfApplied energyen_US
dcterms.issued2022-01-01-
dc.identifier.scopus2-s2.0-85115229316-
dc.identifier.eissn1872-9118en_US
dc.identifier.artn117875en_US
dc.description.validate202310 bckwen_US
dc.description.oaAccepted Manuscripten_US
dc.identifier.FolderNumberBEEE-0003-
dc.description.fundingSourceOthersen_US
dc.description.fundingTextChina Postdoctoral Science Foundation; Science and Technology Innovation Programme of Hunan Provinceen_US
dc.description.pubStatusPublisheden_US
dc.identifier.OPUS60133277-
dc.description.oaCategoryGreen (AAM)en_US
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