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Delay, Reliability, and Throughput Based QoS Profile: A MAC Layer Performance Optimization Mechanism for Biomedical Applications in Wireless Body Area Sensor Networks

机译:基于延迟,可靠性和吞吐量的QoS配置文件:无线人体区域传感器网络中生物医学应用的MAC层性能优化机制

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摘要

Recently, increasing demand for remote healthcare monitoring systems poses a specific set of Quality of Services (QoS) requirements to the MAC layer protocols and standards (IEEE 802.15.6, IEEE 802.15.4, etc.) of Wireless Body Area Sensor Networks (WBASNs). They mainly include time bounded services (latency), reliable data transmission, fair channel distribution, and specified data rates. The existing MAC protocols of WBASNs are lack of a specific set of QoS. To address this, the paper proposes a QoS profile named delay, reliability, and throughput (DRT). The QoS values computed through DRT profile provide maximum reliability of data transmission within an acceptable latency and data rates. The DRT is based on the carrier sense multiple access with collision avoidance (CSMA/CA) channel access mechanism and considers IEEE 802.15.4 (low-rate WPAN) and IEEE 802.15.6 (WBASN). Further, a detailed performance analysis of different frequency bands is done which are standardized for WBASNs, that is, 420 MHz, 868 MHz, 2.4 GHz, and so forth. Finally, a series of experiments are conducted to produce statistical results for DRT profile with respect to delay, reliability, and packet delivery ratio (PDR). The calculated results are verified through extensive simulations in the CASTALIA 3.2 framework using the OMNET++ network simulator.
机译:最近,对远程医疗监控系统的需求不断增长,对无线人体区域传感器网络(WBASN)的MAC层协议和标准(IEEE 802.15.6,IEEE 802.15.4等)提出了一组特定的服务质量(QoS)要求。 )。它们主要包括限时服务(延迟),可靠的数据传输,公平的信道分配和指定的数据速率。 WBASN的现有MAC协议缺少一组特定的QoS。为了解决这个问题,本文提出了一个名为延迟,可靠性和吞吐量(DRT)的QoS配置文件。通过DRT配置文件计算出的QoS值可在可接受的等待时间和数据速率内提供最大的数据传输可靠性。 DRT基于具有冲突避免功能的载波侦听多路访问(CSMA / CA)信道访问机制,并考虑了IEEE 802.15.4(低速率WPAN)和IEEE 802.15.6(WBASN)。此外,完成了针对WBASN(即420 MHz,868 MHz,2.4 GHz等)标准化的不同频带的详细性能分析。最后,进行了一系列实验以生成DRT配置文件有关延迟,可靠性和数据包传送率(PDR)的统计结果。通过使用OMNET ++网络模拟器在CASTALIA 3.2框架中进行广泛的仿真,可以验证计算结果。

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