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A Distributed Continua AHD System with ZigBee/PAN-IF Gateway and Continua QoS Control Mechanism

DOI: 10.3390/jsan1020097

Keywords: Application Hosting Device (AHD), Personal Health Device (PHD), Personal Area Network (PAN), Distributed AHD system, Continua certified system, Connected Health, Quality of Service (QoS), ZigBee, ISO/IEEE 11073

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Abstract:

In a residential or nursing home environment, using ZigBee/802.15.4 wireless network specifically to collect and gather various types of personal health data proves to be a feasible choice. The Continua Guidelines has defined both the sensor-LAN IF (sensor Local Area Network Interface) PHD (Personal Health Device) and PAN IF (Personal Area Network Interface) PHD, but only a Continua certified sensor-LAN IF PHD with Zigbee HC (Health Care) profile can connect with Continua AHD (Application Hosting Device) through Zigbee/802.15.4 network and allows data communicating between AHD and PHDs. In this paper, we present a distributed Continua AHD system design that divides the AHD device containing Continua PAN IF into Continua AHD Host and Continua AHD Gateway with communication through ZigBee/802.15.4 network. Under this structure, a Continua PHD connects with a Continua AHD Host through Continua AHD Gateway within ZigBee/802.15.4 network. One immediate advantage of the proposed system is that both of the Continua sensor-LAN IF and PAN IF PHDs can connect with Continua AHD (Host) through ZigBee/802.15.4 network. To further address the QoS (Quality of Service) issue for Continua PAN IF message transmission in a ZigBee network, we present a software approach to automatically determine the types of packet transmitted and execute Continua QoS control. Together with the QoS mechanism in the enhanced ZigBee MAC Layer, this approach realizes a complete Continua QoS control mechanism for the distributed AHD system.

References

[1]  Continua Health Alliance. Available online: http://www.continuaalliance.org/index.html (accessed on 5 June 2012).
[2]  ZigBee Alliance. Available online: http://www.zigbee.org (accessed on 5 June 2012).
[3]  Osborn, W.R.; Bennett, J.W. Zigbee/IP Gateway. U.S. Patent 8,149,849 B2, 3 April 2012.
[4]  Kim, T.; Lee, D.; Ahn, J.; Choi, S. Priority Toning Strategy for Fast Emergency Notification in IEEE 802.15.4 LR-WPAN. In Proceedings of the 15th Joint Conference on Communications & Information, Daegu, Korea, 27-29 April 2005; pp. 875–882.
[5]  Pang, A.-C.; Tseng, H.-W. Dynamic Backoff for Wireless Personal Networks. In Proceedings of IEEE GLOBECOM 2004, Dallas, TX, USA, 29 November-3 December 2004; pp. 1580–1584.
[6]  Koubaa, A.; Alves, M.; Nefzi, B.; Song, Y. Improving the IEEE 802.15.4 Slotted CSMA/CA MAC for Time-Critical Events in Wireless Sensor Networks. In Proceedings of the Workshop on Real-Time Networks, Torino, Italy, July 2006.
[7]  Garcia, J.J.; Falck, T. Quality of Service for IEEE 802.15.4-Based Wireless Body Sensor Networks. In Proceedings of 3rd International Conference on Pervasive Computing Technologies for Healthcare, London, UK, 1-3 April 2009; pp. 1–6.

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