Downloads provided by UsageCounts
{"references": ["Minami, Toshiro: Putting Old Data into New System: Web-based\nCatalog Card Image Searching. Proc. 2000 Kyoto International\nConference on Digital Libraries (ICDL2000) (2000) 296-303.", "Weis, S.A., Sarma, S.E., Rivest, R.L., Engels, D.W.: Security and\nPrivacy Aspects of Low-Cost Radio Frequency Identification Systems.\nProc. First International Conference on Security in Pervasive Computing.\nLecture Notes in Computer Science, Vol. 2802. Springer-Verlag (2003)\n201-212.", "Raul Morales Salcedo, Hiroaki Ogata, Yoneo Yano, \"Towards a New\nHome networking Infrastructure with RFID for Mobile ELearning,\"\nwmte, pp. 261-263, IEEE International Workshop on Wireless and\nMobile Technologies in Education (WMTE'05), 2005.", "LibBest : Library RFID Management System Homepage,\nhttp://www.rfid-library.com/default.html", "Intelligent Homepage, http://www.intellident.co.uk", "Eung-Bong Lee: Home networking & Ubiquitous Library. Science and\nTechnology Information Management Association Academic Seminar\n(V) (2004) (in Korean).", "Minami, Toshiro: An Approach towards Library Automation with ICTags.\nBulletin of Kyushu Institute of Information Sciences, Vol.5 No.1\n(2003) (in Japanese)", "Radio Frequency Identification (RFID) homepage,\nhttp://www.aimglobal.org/technologies/rfid", "Finkenzeller Klaus: RFID Handbook: Radio-Frequency Identification\nFundamentals and Applications in Contactless Smart Cards and\nIdentification, (2004).\n[10] Ministry of Information and Communications Republic of Korea, The\nBasic Plan of U-Sensor Network Construction, (2004).\n[11] Seunghwa Yu: The Propulsive Direction of RFID/USN Standardization,\nThe Journal of TTA, No. 94, (2004), 12-18.\n[12] Korpipaa, P.; Mantyjarvi, J.; Kela, J.; Keranen, H.; Malm, E.J.:\nManaging context information in mobile devices. Pervasive Computing,\nIEEE, Vol 2, Issue: 3 (2003) 42 - 51.\n[13] Gunhee Kim, Dongkyoo Shin, Dongil Shin : Design of a Middleware\nand HIML(Human Interaction Markup Language) for Context Aware\nServices in a Ubiquitous Computing Environment, EUC 2004, (2004)\n682-691.\n[14] Jongil Jeong, Dongukyoo Shin, Dongil Shin, Hyun-Mok Oh: A Study on\nthe XML-Based Single Sign-On System Supporting Mobile and\nUbiquitous Service Environments, Embedded and Ubiquitous\nComputing, International Conference EUC 2004, (2004) 903-913.\n[15] Mobile RFID Forum Homepage, http://www.mrf.or.kr\n[16] Harris, C., Cahill, V.: Exploiting user behaviour for context-aware power\nmanagement, Wireless And Mobile Computing, Networking And\nCommunications, 2005 (WiMob-2005), IEEE International Conference\non, Vol. 4, (2005) 122-130.\n[17] Jaehun Kim, Jinoh Kim: A task management design for task-based\ncontrol architecture for personal robots, Industrial Electronics Society,\n2004, IECON 2004, 30th Annual Conference of IEEE, Vol 1, (2004)\n152-156."]}
The next stage of the home networking environment is supposed to be ubiquitous, where each piece of material is equipped with an RFID (Radio Frequency Identification) tag. To fully support the ubiquitous environment, home networking middleware should be able to recommend home services based on a user-s interests and efficiently manage information on service usage profiles for the users. Therefore, USN (Ubiquitous Sensor Network) technology, which recognizes and manages a appliance-s state-information (location, capabilities, and so on) by connecting RFID tags is considered. The Intelligent Multi-Agent Middleware (IMAM) architecture was proposed to intelligently manage the mobile RFID-based home networking and to automatically supply information about home services that match a user-s interests. Evaluation results for personalization services for IMAM using Bayesian-Net and Decision Trees are presented.
Home Network, Intelligent Middleware., Intelligent Agents, Mobile RFID
Home Network, Intelligent Middleware., Intelligent Agents, Mobile RFID
| selected citations These citations are derived from selected sources. This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | 0 | |
| popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network. | Average | |
| influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically). | Average | |
| impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network. | Average |
| views | 3 | |
| downloads | 6 |

Views provided by UsageCounts
Downloads provided by UsageCounts