DOI QR코드

DOI QR Code

QoS Provisioning in Wireless Body Area Networks: A Review on MAC Aspects

  • Thapa, Anup (Department of Computer Engineering, Chosun University) ;
  • Shin, Seok-Joo (Department of Computer Engineering, Chosun University)
  • Received : 2012.01.28
  • Accepted : 2012.05.09
  • Published : 2012.05.30

Abstract

Wireless Body Area Networks (WBANs) deal with variety of healthcare services with diverse Quality of Service (QoS) requirements. However, QoS handling is a challenging problem in such networks. In general, QoS related problems can be addressed from different layers in the networking protocol suite. Design of an efficient QoS aware Medium Access Control (MAC) protocol can address this problem in MAC layer. This paper analyzes the QoS requirements of WBAN, identifies the requisites of QoS handling system, and outlines the trends that are being followed for its advancement with focus on QoS issues at MAC layer. We review some prior works, compare them, and analyze the current research concerned with problem of providing QoS in WBAN. We also explore some open issues and discuss them.

Keywords

References

  1. C. Otto, A. Milenkovic, C. Sanders and E. Jovanov, "System architecture of a wireless body area sensor network for ubiquitous health monitoring," Journal of Mobile Multimedia, vol.1, no.4, pp.307-326, 2006.
  2. M. Li, W. Lou and K. Ren, "Data security and privacy in wireless body area networks," Wireless Communications, IEEE, vol.17, no.1, pp.51-58, Feb.2010. https://doi.org/10.1109/MWC.2010.5416350
  3. H. Wang, D. Peng, W. Wang, H. Sharif, H. hwa Chen and A. Khoynezhad, "Resource-aware secure ecg healthcare monitoring through body sensor networks," Wireless Communications, IEEE, vol.17, no.1, pp.12-19, Feb.2010.
  4. J. Milenkovic and E. Aleksandar,"Body area networks for ubiquitous healthcare applications: opportunities and challenges," Journal of Medical Systems, vol.35, no.5, pp.1245-1254, Oct.2011. https://doi.org/10.1007/s10916-011-9661-x
  5. R. Rashid, S. Arifin, M. Rahim, M. Sarijari and N. Mahalin, "Home healthcare via wireless biomedical sensor network," in Proc. of RF and Microwave Conference, 2008. RFM 2008. IEEE International, pp.511-514, Dec.2008,
  6. S. Ullah, H. Higgins, B. Braem, B. Latre, C. Blondia, I. Moerman, S. Saleem, Z. Rahman and K. Kwak, "A comprehensive survey of wireless body area networks," Journal of Medical Systems, pp.1-30, 2010.
  7. M. Chen, S. Gonzalez, A. Vasilakos, H. Cao and V. Leung, "Body area networks: A survey," Mobile Networks and Applications, vol.16, pp.171-193, 2011. https://doi.org/10.1007/s11036-010-0260-8
  8. M. A. Ameen, A. Nessa and K. S. Kwak, "Qos issues with focus on wireless body area networks," in Proc. of Convergence and Hybrid Information Technology, vol.1, pp.801-807, Nov.2008.
  9. B. Lo and G.-Z. Yang, "Body sensor networks - research challenges and opportunities," in Antennas and Propagation for Body-Centric Wireless Communications, pp.26-32, Apr.2007,.
  10. K. Kwak, S. Ullah and N. Ullah, "An overview of ieee 802.15.6 standard," in Applied Sciences in Biomedical and Communication Technologies, pp.1-6, Nov.2010.
  11. "Ieee standard for information technology - telecommunications and information exchange between systems - local and metropolitan area networks specific requirements part 15.4: Wireless medium access control (mac) and physical layer (phy) specifications for low-rate wireless personal area networks (lr-wpans)," IEEE Std 802.15.4-2003, pp.01-670, 2003.
  12. C. Buratti, "Performance analysis of ieee 802.15.4 beacon-enabled mode," Vehicular Technology, IEEE Transactions on, vol.59, no.4, pp.2031-2045, May.2010. https://doi.org/10.1109/TVT.2010.2040198
  13. C. Buratti and R. Verdone, "Performance analysis of ieee 802.15.4 non beacon-enabled mode," Vehicular Technology, IEEE Transactions on, vol.58, no.7, pp.3480-3493, Sept.2009. https://doi.org/10.1109/TVT.2009.2014956
  14. G. Fang and E. Dutkiewicz, "Bodymac: Energy eficient tdma-based mac protocol for wireless body area networks," in Communications and Information Technology, pp.1455-1459, Sept.2009.
  15. N. Timmons and W. Scanlon, "An adaptive energy efficient mac protocol for the medical body area network," in Wireless Communication, Vehicular Technology, Information Theory and Aerospace Electronic Systems Technology, pp.587-593, May.2009,.
  16. O. Omeni, A. Wong, A. Burdett and C. Toumazou, "Energy efficient medium access protocol for wireless medical body area sensor networks," Biomedical Circuits and Systems, IEEE Transactions on, vol.2, no.4, pp.251-259, Dec.2008. https://doi.org/10.1109/TBCAS.2008.2003431
  17. H. Li and J. Tan, "Heartbeat-driven medium-access control for body sensor networks," Information Technology in Biomedicine, IEEE Transactions on, vol.14, no.1, pp 44-51, Jan.2010. https://doi.org/10.1109/TITB.2009.2028136
  18. K. Ali, J. Sarker and H. Mouftah, "Urgency-based mac protocol for wireless sensor body area networks," in Communications Workshops, pp.1-6, May.2010.
  19. H. Cao, S. Gonza andlez Valenzuela and V. Leung, "Employing ieee 802.15.4 for quality of service provisioning in wireless body area sensor networks," in Proc. of Advanced Information Networking and Applications, pp.902-909, Apr.2010.
  20. J. Garcia and T. Falck, "Quality of service for ieee 802.15.4-based wireless body sensor networks," in Proc. of Pervasive Computing Technologies for Healthcare, pp.1-6, Apr.2009.
  21. M. Barua, M. Alam, X. Liang and X. Shen, "Secure and quality of service assurance scheduling scheme for wban with application to ehealth," in Proc. of Wireless Communications and Networking Conference, pp.1102-1106, Mar.2011.
  22. G. Zhou, J. Lu, C.-Y. Wan, M. Yarvis and J. Stankovic, "Bodyqos: Adaptive and radio-agnostic qos for body sensor networks," in INFOCOM, pp.565-573, Apr.2008,.
  23. C. Li, L. Wang, J. Li, B. Zhen, H.-B. Li and R. Kohno, "Scalable and robust medium access control protocol in wireless body area networks," in Indoor and Mobile Radio Communications, pp.2127-2131, Sept.2009,.
  24. B. Otal, L. Alonso and C. Verikoukis, "Highly reliable energy-saving mac for wireless body sensor networks in healthcare systems," in Journal Selected Areas in Communications, vol.27, no.4, pp.553-565, May.2009. https://doi.org/10.1109/JSAC.2009.090516
  25. J. Yoon, G.-S. Ahn, S.-S. Joo and M. Lee, "Pnp-mac: Preemptive slot allocation and non-preemptive transmission for providing qos in body area networks," in Proc. of Consumer Communications and Networking Conference, pp.1-5, Jan.2010.
  26. Kwak, M. Ameen, D. Kwak, C. Lee and H. Lee, "A study on proposed ieee 802.15 wban mac protocols," in Communications and Information Technology, pp.834-840, Sept.2009,.
  27. "Ieee standard for local and metropolitan area networks part 16: Air interface for broadband wireless access systems," IEEE Std 802.16-2009 (Revision of IEEE Std 802.16-2004), pp.C1-2004, 2009.
  28. "Ieee standard for information technology - telecommunications and information exchange between systems - local and metropolitan area networks - specific requirements part 11: Wireless lan medium access control (mac) and physical layer (phy) specifications amendment 8: Medium access control (mac) quality of service enhancements," IEEE Std 802.11e-2005 (Amendment to IEEE Std 802.11, 1999 Edition (Reaff 2003), pp.01 -189, 2005.
  29. A. Razzaque, C. S. Hong, and S. Lee, "Data-centric multiobjective QoS-aware routing protocol for body sensor networks," Sensors, vol.11, no.1, pp.917-937, 2011. https://doi.org/10.3390/s110100917
  30. D. Djenouri and I. Balasinghanr, "New QoS and geo- graphical routing in wireless biomedical sensor networks," in Proc. of 6th International Conference on Broadband Communications, Networks and Systems, pp. 1-8, Sept.2009,.
  31. X. Liang and I. Balasingham, "A QoS-aware routing service framework for biomedical sensor networks," Wireless Communication Systems, pp.342-345, 2007.
  32. 15-09-0326-00-0006-medwin-mac-and-security-proposalpresentationpart-1-mac.
  33. 15-09-0346-01-0006-nict-s-mac-proposal.
  34. 15-09-0341-01-0006-imec-narrowband-mac-proposalpresentation.
  35. 15-09-0315-01-0006-samsung-mac-proposal-part-1-apower-efficientmac-for-ban.
  36. 15-09-0366-01-0006-inha-mac-proposal.
  37. 15-09-0286-01-0006-fujitsu-partial-phy-mac-proposal.
  38. D. Neirynck, C. Williams, A. Nix and M. Beach, "Exploiting multiple-input multiple-output in the personal sphere," Microwaves, Antennas Propagation, IET, vol.1, no.6, pp.1170-1176, Dec.2007. https://doi.org/10.1049/iet-map:20060210
  39. S. Gonzalez-Valenzuela, M. Chen and V. C. M. Leung, "Mobility support for health monitoring at home using wearable sensors," IEEE Transactions on Information Technology in Biomedicine, vol.15, no.4, Jul.2011.
  40. C. Makaya, A. Dutta, S. Das, D. Chee, F. Lin, S. Komorita, H. Yokota and H. Schulzrinne, "Service continuity support in self-organizing ims networks," in Proc. of Wireless Communication, Vehicular Technology, Information Theory and Aerospace Electronic Systems Technology (Wireless VITAE), pp.1-5, Feb.2011.

Cited by

  1. Cryptanalysis of an 'Efficient-Strong Authentiction Protocol (E-SAP) for Healthcare Applications Using Wireless Medical Sensor Networks' vol.7, pp.5, 2013, https://doi.org/10.3837/tiis.2013.05.002
  2. Towards Key Issues of Disaster Aid based on Wireless Body Area Networks vol.7, pp.5, 2012, https://doi.org/10.3837/tiis.2013.05.005
  3. Efficient Patient Care Through Wireless Body Area Networks-Enhanced Technique for Handling Emergency Situations with Better Quality of Service vol.95, pp.4, 2012, https://doi.org/10.1007/s11277-017-4024-7
  4. Traffic Adaptive MAC Protocols in Wireless Body Area Networks vol.2017, pp.None, 2012, https://doi.org/10.1155/2017/8267162
  5. QoS in Body Area Networks : A Survey vol.13, pp.3, 2012, https://doi.org/10.1145/3085580