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Reseach Article

Comparison Analysis of proposed DPPH Protocol for Wireless Body Area Network

by Madhumita Kathuria, Sapna Gambhir
International Journal of Computer Applications
Foundation of Computer Science (FCS), NY, USA
Volume 144 - Number 10
Year of Publication: 2016
Authors: Madhumita Kathuria, Sapna Gambhir
10.5120/ijca2016910458

Madhumita Kathuria, Sapna Gambhir . Comparison Analysis of proposed DPPH Protocol for Wireless Body Area Network. International Journal of Computer Applications. 144, 10 ( Jun 2016), 36-41. DOI=10.5120/ijca2016910458

@article{ 10.5120/ijca2016910458,
author = { Madhumita Kathuria, Sapna Gambhir },
title = { Comparison Analysis of proposed DPPH Protocol for Wireless Body Area Network },
journal = { International Journal of Computer Applications },
issue_date = { Jun 2016 },
volume = { 144 },
number = { 10 },
month = { Jun },
year = { 2016 },
issn = { 0975-8887 },
pages = { 36-41 },
numpages = {9},
url = { https://ijcaonline.org/archives/volume144/number10/25218-2016910458/ },
doi = { 10.5120/ijca2016910458 },
publisher = {Foundation of Computer Science (FCS), NY, USA},
address = {New York, USA}
}
%0 Journal Article
%1 2024-02-06T23:47:18.976795+05:30
%A Madhumita Kathuria
%A Sapna Gambhir
%T Comparison Analysis of proposed DPPH Protocol for Wireless Body Area Network
%J International Journal of Computer Applications
%@ 0975-8887
%V 144
%N 10
%P 36-41
%D 2016
%I Foundation of Computer Science (FCS), NY, USA
Abstract

Given the emergence of pervasive computing, Wireless Body Area Networks (WBANs) will play an increasingly important role in future critical system like Healthcare. Wireless Body Area Networks are consists of many inexpensive sensor nodes with limited energy and computational resources and memory. In this paper, a survey of existing projects is done to identify all the issues related to the healthcare system. Some of the major challenges in these networks are heterogeneous traffic handling, loss and delay free data transmission in the frequently changing environment. Proper traffic handling with dynamic prioritization concept makes the healthcare system more effective in frequently changing and time critical healthcare environment. A number of existing protocols for this have been proposed in the past few years. This paper compares them with the proposed Dynamic Priority based Packet Handling (DPPH) protocol. The evaluation is done using the NS-2.35 simulator, which provides a convenient platform. The performance metrics under investigation are the packet delivery ratio, packet loss ratio, end-to-end delay, and throughput. We found that the DPPH protocol can utilize the resources very well while keeping the throughput high and helping in controlling the packet loss and delay.

References
  1. D. Malan et al., “CodeBlue: An Ad-Hoc Sensor Network Infrastructure for Emergency Medical Care”, In Proceedings of the MobiSys, Workshop on Applications of Mobile Embedded Systems (WAMES 2004), Boston, MA, USA, pp.6-9, June 2004.
  2. A. Halteren et al., “Mobile Patient Monitoring: The MobiHealth System”, J. Inform. Tech. Healthcare, vol. 2, pp. 365-373, 2004.
  3. J. W. P. Ng et al., “Ubiquitous Monitoring Environment for Wearable and Implantable Sensors (UbiMon)”. In Proceedings of 6th International Conference on Ubiquitous Computing (UbiComp’04), Nottingham, UK, pp. 7-14, September 2004.
  4. A. Wood et al., “ALARM-NET: Wireless Sensor Networks for Assisted-Living and Residential Monitoring”, Technical Report CS-2006-01, Department of Computer Science, University of Virginia, Charlottesville, VA, USA, 2006.
  5. J. Ko et al., “MEDiSN: Medical Emergency Detection in Sensor Networks. ACM Transaction on Embedded Computer System, vol. 10, pp.1-29, 2010.
  6. Madhumita Kathuria and Dr. Sapna Gambhir, “Quality of service provisioning transport layer protocol for WBAN system”, International Conference on Optimization, Reliability and Information Technology (ICROIT, IEEE Xplore), pp. 222-228, 2014.
  7. C. Wang et al., “Priority-based Congestion Control in Wireless Sensor Networks”, Proceedings of the IEEE International Conference on Sensor Networks, Ubiquitous, and Trustworthy Computing (SUTC’06), 2006.
  8. C. Wang et al.,”Upstream congestion control in wireless sensor networks through cross-layer optimization”, IEEE journal on selected area in communication, vol. 25, no. 4, pp. 786-795, 2007.
  9. S. Misra et al., “LACAS: Learning Automata-Based Congestion Avoidance Scheme for Healthcare Wireless Sensor Networks”, IEEE Journal on Selected Areas in Communications, pp. 466-479, 2009.
  10. Nazbanoo Farzaneh Bahalgardi. et al., “An Adaptive Congestion Alleviating Protocol for Healthcare Applications in Wireless Body Sensor Networks: Learning Automata Approach”, Amirkabir, Electrical & Electronics Engineering, Springer 2012, vol. 44, no. 1, pp.31-41, 2012.
  11. M. H. Yaghmaee et al., “A Prioritization Based Congestion Control Protocol for Healthcare Monitoring Application in Wireless Sensor Networks”, Springer, Wireless Pers Commun, PP. 2605–2631, 2013.
  12. Abbas Ali Rezaee et al., “Optimized Congestion Management Protocol for Healthcare Wireless Sensor Networks”, Wireless Pers Commun, © Springer, pp. 11-34, 2014.
  13. Sapna Gambhir, Vrisha` Tickoo, and Madhumita Kathuria,”Priority based congestion control in WBAN”, Eighth International conference on contemporary computing (SCOPUS, DBLP, IEEE Xplore), pp. 428-433, 2015.
  14. M. Kathuria, and S. Gambhir, ” Reliable Delay Sensitive Loss Recovery Protocol for critical Health data Transmission System”, 1st International Conference on Futuristic trend in Computational Analysis and Knowledge Management (IEEE Xplore), PP. 333-339, 2015.
  15. Sapna Gambhir and Madhumita Kathuria, “DWBAN: Dynamic Priority based WBAN Architecture for Healthcare System”, 3rd International Conference on Computing for Sustainable Global Development (IndiaCom-2016, IEEE Xplore), pp. 6133-6139, 2016.
  16. Madhumita Kathuria and Dr. Sapna Gambhir, “Leveraging machine learning for optimize predictive classification and scheduling E-Health traffic”, International Conference on Recent Advances and Innovations in Engineering (IEEE Xplore), pp. 1-7, 2014.
  17. H. Cao et al., “Employing IEEE802.15.4 for quality of service provisioning in wireless body area networks”, In Proceedings IEEE advanced information networking and application, AINA 2010.
  18. Madhumita Kathuria and Dr. Sapna Gambhir, “Genetic Binary Decision Tree based Packet Handling schema for WBAN system”, Recent Advances in Engineering and Computational Sciences (IEEE Xplore), pp. 1-6, 2014.
  19. G. Zhou et al., “BodyQoS: Adaptive and Radio-Agnostic QoS for Body Sensor Networks”, In Proceedings of IEEE INFOCOM, 2008.
  20. Vrisha Tickoo and Sapna Gambhir, “ A Comparison study of Congestion Control Protocols in WBAN”  in proceeding of International Journal of Innovations & Advancement in Computer Science (IJIACS), vol. 4, no. 6, pp. 121-127, June 2015.
Index Terms

Computer Science
Information Sciences

Keywords

Dynamic Priority Throughput Delay Packet Delivery Wireless Body Area Network.