Enhancement of a Low-Cost Intelligent Device for Improving Energy Efficiency in Buildings
Year 2018,
Volume: 60 Issue: 2, 103 - 128, 01.08.2018
Oğuzhan Timur
,
Kasım Zor
,
Özgür Çelik
Ahmet Teke
Abstract
Ascending energy
demand and vanishing nonrenewable energy resources have increased the prominence
of energy efficiency nowadays. In order to accomplish an energy efficient future for the forthcoming
generations of humanity, traditional devices possessing low efficiency should
be altered with intelligent devices having high efficiency. Thanks to internet
of things (IoT), conventional devices have been turned into intelligent devices
which can be remotely accessed, monitored and controlled by utilizing
ubiquitous sensor mechanisms. In this study, enhancement of a low-cost
intelligent device (iDev) is targeted to develop in order to compute and store
electrical energy consumption into a database by an embedded card named as
Arduino which has the capability of measuring voltage, current, frequency and
power factor for improving energy efficiency in buildings. When a classic
device is connected to the enhanced iDev, the device is converted to an
intelligent device that is remotely controllable. As a consequence, if a whole
building is equipped with the proposed iDev, it is considered that a large
amount of electrical energy will be saved for a better and livable Earth.
References
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- [2] O. Timur, K. Zor, O. Celik, A. Teke, “Development of an Intelligent Energy Measurement Device for Buildings,” 2nd International Conference on Theoretical and Applied Computer Science and Engineering-Summer (ICTACSE 2018), ISBN:978-605-9546-12-6, pp.16-21, JUNE 29 – 30, 2018. (Istanbul, Turkey)
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- [5] A. Costa, M.M. Keane, J.I. Torrens, E. Corry, “Building operation and energy performance: Monitoring, analysis and optimization kit,” Elsevier: Applied Energy, Vol.101, pp. 310-316, 2013.
- [6] H.U. Gokce, K.U. Gokce, “Multidimensional energy monitoring, analysis and optimization system for energy efficient building operation,” Elsevier: Sustainable Cities and Society, Vol.10, pp 161-173, 2014.
- [7] O. Arslan, “ZigBee ile Bina İçi Güvenlik Otomasyon Sistemi,” İTÜ. Elektrik Elektronik Mühendisliği - Bitirme Tezi. 50 p, 2009.
- [8] N.C. Batista, R. Melicio, J.C.O. Matias, J.P.S. Catalao, “Photovoltaic and wind energy systems monitoring and building/home energy management using ZigBee devices within a smart grid,” Elsevier: Energy, Vol.49, pp 306-315, 2013.
- [9] C. Jin, “A Smart Home Networking Simulation for Energy Saving,” Master of Applied Science in Electrical and Computer Engineering at Carleton University, 2011.
- [10] R.V. Sakhare, B.T. Deshmukh, “Electric Power Management using ZigBee Wireless Sensor Network,” IJAET: International Journal of Advances in Engineering & Technology, Vol.4, pp 492-500, 2012.
- [11] K. Gill, S.H. Yang, F. Yao, X. Lu, “A ZigBee-Based Home Automation System,” IEEE Transactions on Consumer Electronics, Vol.55, No:2, pp. 422-430, May 2009.
- [12] C.Pham, “Communication performances of IEEE 802.15.4 wireless sensor motes for data-intensive applications: A comparison of WaspMote, Arduino, MEGA, TelosB, MicaZ and iMote2 for image surveillance,” Elsevier: Journal of Network and Computer Applications Vol.46, pp. 48-59, 2014.
Year 2018,
Volume: 60 Issue: 2, 103 - 128, 01.08.2018
Oğuzhan Timur
,
Kasım Zor
,
Özgür Çelik
Ahmet Teke
References
- [1] O. Timur, “Design and Implementation of a Wireless Sensor Network for Energy Monitoring, Analysis and Management in Smart Buildings,” Çukurova University Institute of Natural and Applied Sciences, PhD Thesis, 215 pages, 24 January 2018.
- [2] O. Timur, K. Zor, O. Celik, A. Teke, “Development of an Intelligent Energy Measurement Device for Buildings,” 2nd International Conference on Theoretical and Applied Computer Science and Engineering-Summer (ICTACSE 2018), ISBN:978-605-9546-12-6, pp.16-21, JUNE 29 – 30, 2018. (Istanbul, Turkey)
- [3] O. Timur, K. Zor, O. Celik, H.B. Yıldırım, A. Teke, “Design and Implementation of Smart Energy Measurement Plug in Smart Buildings,” Digital Proceedings of the 12th Conference on Sustainable Development of Energy, Water and Environment Systems (SDEWES2017), (0732), pp.1-12, 4-8 October 2017. (Croatia)
- [4] L. Jiechao, “A software approach for combining real time data measurement and building energy model to improve energy efficiency,” Electrical Engineering and Computer Sciences University of California at Berkeley: Technical Report: UCB/EECS-2014-37. 14 p, 2014.
- [5] A. Costa, M.M. Keane, J.I. Torrens, E. Corry, “Building operation and energy performance: Monitoring, analysis and optimization kit,” Elsevier: Applied Energy, Vol.101, pp. 310-316, 2013.
- [6] H.U. Gokce, K.U. Gokce, “Multidimensional energy monitoring, analysis and optimization system for energy efficient building operation,” Elsevier: Sustainable Cities and Society, Vol.10, pp 161-173, 2014.
- [7] O. Arslan, “ZigBee ile Bina İçi Güvenlik Otomasyon Sistemi,” İTÜ. Elektrik Elektronik Mühendisliği - Bitirme Tezi. 50 p, 2009.
- [8] N.C. Batista, R. Melicio, J.C.O. Matias, J.P.S. Catalao, “Photovoltaic and wind energy systems monitoring and building/home energy management using ZigBee devices within a smart grid,” Elsevier: Energy, Vol.49, pp 306-315, 2013.
- [9] C. Jin, “A Smart Home Networking Simulation for Energy Saving,” Master of Applied Science in Electrical and Computer Engineering at Carleton University, 2011.
- [10] R.V. Sakhare, B.T. Deshmukh, “Electric Power Management using ZigBee Wireless Sensor Network,” IJAET: International Journal of Advances in Engineering & Technology, Vol.4, pp 492-500, 2012.
- [11] K. Gill, S.H. Yang, F. Yao, X. Lu, “A ZigBee-Based Home Automation System,” IEEE Transactions on Consumer Electronics, Vol.55, No:2, pp. 422-430, May 2009.
- [12] C.Pham, “Communication performances of IEEE 802.15.4 wireless sensor motes for data-intensive applications: A comparison of WaspMote, Arduino, MEGA, TelosB, MicaZ and iMote2 for image surveillance,” Elsevier: Journal of Network and Computer Applications Vol.46, pp. 48-59, 2014.