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The Business Model of IoT Information Sharing Open Market for Promoting IoT Service

IoT 서비스 활성화를 위한 IoT 정보공유 오픈 마켓 비즈니스 모델

  • 김우성 (수원대학교 공과대학 전기전자공학부)
  • Received : 2016.03.29
  • Accepted : 2016.07.25
  • Published : 2016.09.30

Abstract

IoT (Internet of Things) is a collective term referring to application services that provide information through sensors/devices connected to the internet. The real world application of IoT is expanding fast along with growing number of sensors/devices. However, since IoT application relies on vertical combination of sensors/devices networks, information sharing within IoT services remains unresolved challenge. Consequently, IoT sensors/devices demand high construction and maintenance costs, rendering the creation of new IoT services potentially expensive. One solution is to launch an IoT open market for information sharing similar to that of App Store for smart-phones. Doing so will efficiently allow novel IoT services to emerge across various industries, because developers can purchase licenses to access IoT resources directly via an open market. Sharing IoT resource information through an open market will create an echo-system conducive for easy utilization of resources and communication between IoT service providers, resource owners, and developers. This paper proposes the new business model of IoT open market for information sharing, and the requirements for ensuring security and standardization of open markets.

Keywords

References

  1. Akyildiz, I.F. and I.H. Kasimoglu, "Wireless Sensor and Actor Networks : Research Challenges", Ad Hoc Networks, Vol.2, No.4, 2004, 351-367. https://doi.org/10.1016/j.adhoc.2004.04.003
  2. Atzori, L., A. Iera, and G. Morabito, "Internet of Things : a Survey", Computer Networks, Vol.54, No.15, 2010, 2787-2805. https://doi.org/10.1016/j.comnet.2010.05.010
  3. Blaze, M., J. Feigenbaum, and J. Lacy, "Decentralized Trust Management", Proceedings of IEEE International Symposium Security and Privacy, Colorado Springs, 1996, 164-173.
  4. Chang, K.D., J.L. Chen, C.Y. Chen, and H.C. Chao, "IoT Operations Management and Traffic Analysis for Future Internet", Computing Communications and Applications Conference(ComComAp), Hong Kong, 2012, 138-142.
  5. Conti, J.P., "The Internet of Things", Communication Engineer, Vol.4, No.6, 2006, 20-25. https://doi.org/10.1049/ce:20060603
  6. Gubbi, J., R. Buyya, S. Marusic, and M. Palaniswami, "Internet of Things(IoT) : A Vision, Architectural Elements, and Future Directions", Future Generation Computer Systems, Vol. 29, No.7, 2013, 1645-1660. https://doi.org/10.1016/j.future.2013.01.010
  7. Guinard, D., V. Trifa, S. Karnouskos, P. Spiess, and D. Savio, "Interacting with SOA-based Internet of Things : Discovery, Query, Selection, and on-demand Provisioning of Web Services", Service Computing IEEE Transaction, Vol.3, No.3, 2010, 223-235. https://doi.org/10.1109/TSC.2010.3
  8. Kim, N.S., K.S. Lee, and J.H. Ryu, "Study on Internet of Things Based Low-Power Wireless Sensor Network System for Wild vegetation Communities Ecological Monitoring", Journal of Information Technology Services, Vol.14, No.1, 2015, 159-173. (김내수, 이계선, 류재홍, "야생식생군락 생태계 모니터링을 위한 사물인터넷 기반의 저전력 무선센서네트워크 시스템에 관한 연구", 한국IT서비스학회지, 제14권, 제1호, 2015, 159-173.)
  9. Kim, W.S., "A Study on IoT Resource Store for Effective Sharing IOT Resources", On the Spring Conference of Korea Society of IT Services, 2015. (김우성, "효율적인 IOT 기기 자원 공유를 위한 기기 자원스토어에 관한 연구", 2015 한국IT서비스학회 춘계학술대회, 2015.)
  10. Kim, Y.H., B.M. Choi, and J.I. Choi, "A Study on Successful Adoption of IoT Services : Focused on iBeacon and Nearby", Journal of Information Technology Services, Vol.14, No.1, 2015, 217-236. (김용희, 최병무, 최정일, "IoT 서비스의 성공적 수용에 관한 연구 : iBeacon과 Nearby를 중심으로", 한국IT서비스학회지, 제14권, 제1호, 2015, 217-236.)
  11. Lee, K.B., D.H. Baek, and D.H. Kim, "A Study on the Effect of IoT Technology on SCM", Journal of Information Technology Services, Vol.15, No.1, 2016, 227-243. (이강배, 백대한, 김두환, "IoT 기술이 공급사슬관리에 미치는 영향에 관한 연구", 한국IT서비스학회지, 제15권, 제1호, 2016, 227-243.)
  12. Lin, Y.B. and I. Chlamtac, Wireless and Mobile Network Architectures, John Wiley & Sons, New York, 2000.
  13. Miorandi, D., S. Sicari, F. De Pellegrim, and I. Chlamtac, "Internet of Things : Vision, Applications and Research Challenges", Ad Hoc Networks, Vol.10, No.7, Elsevier, 2012, 1497-1516. https://doi.org/10.1016/j.adhoc.2012.02.016
  14. Papazoglou, M., "Foresight & Research Priorities for Service Oriented Computing", Proceedings of 11th International Conference on Enterprise Information Systems, Milan, Italy, 2009, 5-6.
  15. Satyanarayanan, M., "Accessing Information on Demand at any Location, Mobile Information Access", Personal Communication IEEE, Vol.3, No.1, 1996, 26-33.
  16. Schaffers, H., N. Komninos, M. Pallot, B. Trousse, M. Nilsson, and O. Alvaro, "Smart City and Future Internet : Towards Cooperation Frameworks for Open Innovation", Lecture Notes in Computer Science, Vol.6656, Springer Berlin, 2011, 431-446.
  17. TM Forum, "Internet of Things", 2016, Available at www.tmforum.com, 2016.
  18. Uckelmann, D., M. Harrison, and F. Michahelles, "An Architectural Approach Towards the Future Internet of Things", Architecting the Internet of Things, Springer, Berlin Heidelberg, 2011, 1-24.
  19. Wikipedia, "Application Stores" http://en.wikipedia.org/wiki/Application_store, 2016.