Wireless building automation devices supporting multiple standards: Challenges and feasibility
Buildings will be more and more automated in future to cater for user's comfort, security and energy efficiency needs. Most of the building automation devices are expected to be in operation for a number of years. However in future, markets will be shared by a number of communication standard,...
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| Vydáno v: | IEEE Conference on Industrial Electronics and Applications (Online) s. 2101 - 2106 |
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| Hlavní autoři: | , , , , |
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| Jazyk: | angličtina |
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IEEE
01.06.2016
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| ISSN: | 2158-2297 |
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| Abstract | Buildings will be more and more automated in future to cater for user's comfort, security and energy efficiency needs. Most of the building automation devices are expected to be in operation for a number of years. However in future, markets will be shared by a number of communication standard, which implies that the user may want to upgrade their device to another communication standard easily without having to discard the device. Right now such a flexibility is not provided. This paper proposes to utilize the most recently available chipset which support multiple wireless standard using the same hardware and can be easily switch between the standards if required. It then provides a detailed experimental evaluation of the chipset to determine the chipset's performance in terms of round trip time, packet delivery rate and coverage. |
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| AbstractList | Buildings will be more and more automated in future to cater for user's comfort, security and energy efficiency needs. Most of the building automation devices are expected to be in operation for a number of years. However in future, markets will be shared by a number of communication standard, which implies that the user may want to upgrade their device to another communication standard easily without having to discard the device. Right now such a flexibility is not provided. This paper proposes to utilize the most recently available chipset which support multiple wireless standard using the same hardware and can be easily switch between the standards if required. It then provides a detailed experimental evaluation of the chipset to determine the chipset's performance in terms of round trip time, packet delivery rate and coverage. |
| Author | Zhibo Pang Xiaoyu Min Shaoling Zhu Bag, Gargi Johansson, Morgan E. |
| Author_xml | – sequence: 1 givenname: Gargi surname: Bag fullname: Bag, Gargi email: gargi.bag@se.abb.com organization: ABB Corp. Res., Vasteras, Sweden – sequence: 2 surname: Zhibo Pang fullname: Zhibo Pang email: zhibo.pang@se.abb.com organization: ABB Corp. Res., Vasteras, Sweden – sequence: 3 givenname: Morgan E. surname: Johansson fullname: Johansson, Morgan E. email: morgan.e.johansson@se.abb.com organization: ABB Corp. Res., Vasteras, Sweden – sequence: 4 surname: Xiaoyu Min fullname: Xiaoyu Min email: xiaoyu.min@crcxnet.com organization: KTH R. Inst. of Technol., Stockholm, Sweden – sequence: 5 surname: Shaoling Zhu fullname: Shaoling Zhu email: shaoling.zhu@crcxnet.com organization: KTH R. Inst. of Technol., Stockholm, Sweden |
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| Snippet | Buildings will be more and more automated in future to cater for user's comfort, security and energy efficiency needs. Most of the building automation devices... |
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| StartPage | 2101 |
| SubjectTerms | Building automation internet of things multi-wireless standard platform Protocols Servers Wireless communication Wireless sensor networks |
| Title | Wireless building automation devices supporting multiple standards: Challenges and feasibility |
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