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An Extensible Smart Home IoT System Based on Low-power Networks

저전력 네트워크 기반의 확장 용이한 스마트 홈 IoT 시스템

  • Received : 2018.04.30
  • Accepted : 2018.06.02
  • Published : 2018.06.30

Abstract

There are increasing interests on smart home systems. However, most of the existing works focus on the functionality itself. In this paper, we propose an extensible smart home system based on low power networking such as CoAP, 6LoWPAN, and Zigbee. The proposed home IoT system consists of Home APP, Home Server, Home Broker, and Power Devices. Each component of the system is connected by the low-power network technologies aforementioned. As the end device, Power Device senses the current consumption of the attached appliance and controls the power to it. Power Device reports the sensing data to Home Server via Home Broker. The Home Broker enhances the scalability of the system. Home Broker extends the service area and the user's services, and it manages the connection of the underlying devices and processes, and transmits data to Home Server from Power Devices. Through the experimental evaluation, we show that the proposed system achieves the design goals such as extensibility and low power networking.

Keywords

References

  1. J. Gubbi, R. Buyya, S. Marusic, M. Palaniswami, "Internet of Things (IoT): A Vision, Architectural Elements, and Future Directions," Future Generation Computer Systems, Vol. 29, No. 7, pp. 1645-1660, 2013. https://doi.org/10.1016/j.future.2013.01.010
  2. M. Kong, H. Chae, B. You, "Trend and prospects of Internet of Things(IoT)," Journal of Korea Design Knowledge, Vol. 56, No. 2, pp. 32-36, 2016 (in Korean).
  3. D.G. Nam, "The Development of Internet of Intelligent Things and Future Service Model," Journal of the Korean Institute of Communication Sciences, Vol. 27, No. 7, pp.3-9, 2010 (in Korean).
  4. https://www.gartner.com/newsroom/id/3598917
  5. T.M. Lee, J.H. Lee, J.H. Yoo, J.H. Wang, S.E. Yoo, "AND-OLSR: Adaptive OLSR Protocol Based on Average Node Distance in Dispersion Falling Mobility Model," under review (in Korean).
  6. S. Min, Y. Oh, "G-eye: Route Guide System Based on Obstacle Map for Blind people," Proceedings of HCI Society of Korea, pp. 703-705, 2017 (in Korean).
  7. S.E. Yoo, A.M. Cheng, P.K. Chong, T.S. Lopez, T.H. Kim, "Technological Advances in Wireless Sensor Networks Enabling Diverse Internet of Things Applications," International Journal of Distributed Sensor Networks, Vol. 14, No. 3, 2018.
  8. J.H. Lee, G.I. Park, J.H. Shin, S.E. Yoo, "An Extensible Smart Home IoT System Based on Open Hardware Platforms," IEMEK J. Embed. Sys. Appl., Vol. 11, No. 6, pp. 369-377, 2016 (in Korean). https://doi.org/10.14372/IEMEK.2016.11.6.369
  9. G. Montenegro, N. Kushalnagar, J. Hui, D. Culler, "Transmission of IPv6 Packets Over IEEE 802.15.4 Networks," No. RFC 4944, 2007.
  10. Z. Shelby, B. Frank, D. Sturek, "Constrained Application Protocol (CoAP)", No. RFC 7252, 2014.
  11. S.K. Ko, S.C. Soon, S.H. Oh, B.T. Lee, "The Latest Standard Technology of IETF CoAP," OSIA Standards & Technology Review, Vol. 28, No. 4, pp. 74-86, 2015 (in Korean).
  12. W.Q. Jin, D.H. Kim. "Implementation and Experiment of CoAP Protocol Based on IoT for Verification of Interoperability," Journal of the Institute of Internet, Broadcasting and Communication, Vol. 14, No. 4, pp. 7-12, 2014 (in Korean). https://doi.org/10.7236/JIIBC.2014.14.4.7
  13. K.H. Kim, S.W. Yoo, K.M. Kim, C.S. Rim, J.S. Park, "Low-Power Sensor Network (6lowpan) Technology Based on IEEE 802.15.4," Communications of the Korean Institute of Information Scientists and Engineers, Vol. 25, No. 12, pp. 60-65, 2007 (in Korean).
  14. D.S. Moon, G.J. Park, Y.H. Lee, B.K. Lee, E.H. Jeong, "Design and Implementation of Home Network System Based on CoAP/6LoWPAN," Proceedings of Korea Software Congress, pp. 1340-1342, 2017 (in Korean).
  15. C.M. Kim, H.W. Kang, S.I. Choi, S.J. Koh, "Implementation of CoAP/6LoWPAN Over BLE Networks for IoT Services," Journal of Broadcast Engineering, Vol. 21, No. 3, pp. 298-306, 2016 (in Korean). https://doi.org/10.5909/JBE.2016.21.3.298
  16. S.J. Lee, D.M. Kim, Y.C. Choi, J.G. Hong, J.I. Kim, S.J. Koh, "Analyze the Differences in per Second of Transfer Processing Amount Between the HTTP Protocol and CoAP Protocol", Proceedings of Korean Institute of Information Scientists and Engineers, pp. 1838-1840, 2015 (in Korean).
  17. K. Hartke, "Observing Resources in the Constrained Application Protocol (CoAP)," No. RFC 7641, 2015.
  18. https://github.com/eclipse/californium.
  19. http://openlabs.co/OSHW/Raspberry-Pi-802.15.4-radio
  20. MCU Wireless AT86RF233 Datasheet, Ateml
  21. CYW43143 Datasheet, Cypress
  22. Digi XBee S1 802.15.4 RF Modules datasheet, Digi