An Interoperable Building Energy Management System With IEEE1888 Open Protocol for Peak-Load Shaving
A peak-load shaving application is implemented for a Building Energy Management System (BEMS). The IEEE1888 open protocol is adopted to facilitate interoperability capability through the TCP/IP network. The data structure is determined by the Facility Information Access Protocol (FIAP). The operatio...
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doaj-5ddc2ededb5f42d7a8330338ca952da72021-03-29T18:58:56ZengIEEEIEEE Open Journal of Industry Applications2644-12412020-01-011112210.1109/OJIA.2020.29671858961104An Interoperable Building Energy Management System With IEEE1888 Open Protocol for Peak-Load ShavingPhanumat Saatwong0Surapong Suwankawin1https://orcid.org/0000-0001-7828-3678Power Electronics Research Laboratory/Smart Grid Research Unit, Department of Electrical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok, ThailandPower Electronics Research Laboratory/Smart Grid Research Unit, Department of Electrical Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok, ThailandA peak-load shaving application is implemented for a Building Energy Management System (BEMS). The IEEE1888 open protocol is adopted to facilitate interoperability capability through the TCP/IP network. The data structure is determined by the Facility Information Access Protocol (FIAP). The operation of equipped Battery Energy Storage System (BESS) is optimized from the analytical load-forecast model and also takes the power and energy ratings of the battery into consideration. The peak-load-shaving application is developed with 15-minute on-line processing. The real-world BEMS is demonstrated by a test-bed building at university. Thanks to the IEEE1888 open protocol, the common interface for the gateway, data storage, and peak-shaving application can be achieved. Experimental results are gathered from 2-week testing and the feasibility of IEEE1888-based interoperable BEMS is validated. The optimized control of a 5.76 kW/11.52 kWh BESS is examined accordingly, and up to 6.99% of peak demand is successfully deducted.https://ieeexplore.ieee.org/document/8961104/BEMSBESSIEEE1888 open protocolimplementationpeak-load shaving |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Phanumat Saatwong Surapong Suwankawin |
spellingShingle |
Phanumat Saatwong Surapong Suwankawin An Interoperable Building Energy Management System With IEEE1888 Open Protocol for Peak-Load Shaving IEEE Open Journal of Industry Applications BEMS BESS IEEE1888 open protocol implementation peak-load shaving |
author_facet |
Phanumat Saatwong Surapong Suwankawin |
author_sort |
Phanumat Saatwong |
title |
An Interoperable Building Energy Management System With IEEE1888 Open Protocol for Peak-Load Shaving |
title_short |
An Interoperable Building Energy Management System With IEEE1888 Open Protocol for Peak-Load Shaving |
title_full |
An Interoperable Building Energy Management System With IEEE1888 Open Protocol for Peak-Load Shaving |
title_fullStr |
An Interoperable Building Energy Management System With IEEE1888 Open Protocol for Peak-Load Shaving |
title_full_unstemmed |
An Interoperable Building Energy Management System With IEEE1888 Open Protocol for Peak-Load Shaving |
title_sort |
interoperable building energy management system with ieee1888 open protocol for peak-load shaving |
publisher |
IEEE |
series |
IEEE Open Journal of Industry Applications |
issn |
2644-1241 |
publishDate |
2020-01-01 |
description |
A peak-load shaving application is implemented for a Building Energy Management System (BEMS). The IEEE1888 open protocol is adopted to facilitate interoperability capability through the TCP/IP network. The data structure is determined by the Facility Information Access Protocol (FIAP). The operation of equipped Battery Energy Storage System (BESS) is optimized from the analytical load-forecast model and also takes the power and energy ratings of the battery into consideration. The peak-load-shaving application is developed with 15-minute on-line processing. The real-world BEMS is demonstrated by a test-bed building at university. Thanks to the IEEE1888 open protocol, the common interface for the gateway, data storage, and peak-shaving application can be achieved. Experimental results are gathered from 2-week testing and the feasibility of IEEE1888-based interoperable BEMS is validated. The optimized control of a 5.76 kW/11.52 kWh BESS is examined accordingly, and up to 6.99% of peak demand is successfully deducted. |
topic |
BEMS BESS IEEE1888 open protocol implementation peak-load shaving |
url |
https://ieeexplore.ieee.org/document/8961104/ |
work_keys_str_mv |
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