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Performance Analysis of IEEE 802.15.6 MAC Protocol under Non-Ideal Channel Conditions and Saturated Traffic Regime

机译:非理想信道条件和饱和流量机制下IEEE 802.15.6 MAC协议的性能分析

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Recently, the IEEE 802.15.6 Task Group introduced a new wireless communication standard that provides a suitable framework specifically to support the requirements of wireless body area networks (WBANs). The standardization dictates the physical (PHY) layer and medium access control (MAC) layer protocols for WBAN-based communications. Unlike the pre-existing wireless communication standards, IEEE 802.15.6 standardization supports short-range, extremely low power wireless communication with high quality of service and support for high data rates upto 10 Mbps in the vicinity of living tissues. In this work, we construct a discrete-time Markov chain (DTMC) that efficiently depicts the states of an IEEE 802.15.6 CSMA/CA-based WBAN. Following this, we put forward a thorough analysis of the standard in terms of reliability, throughput, average delay, and power consumption. The work concerns non-ideal channel characteristics and a saturated network traffic regime. The major shortcoming of the existing literature on Markov chain-based analysis of IEEE 802.15.6 is that the authors did not take into consideration the time spent by a node awaiting the acknowledgement frame after transmission of a packet, until time-out occurs. Also, most of the work assume that ideal channel characteristics persist for the network which is hardly the case in practice. This work remains distinctive as we take into account the waiting time of a node after it transmits a packet while constructing the DTMC. Based on the DTMC, we perform a user priority (UP)-wise analysis, and justify the importance of the standard from a medical perspective.
机译:最近,IEEE 802.15.6任务组引入了一种新的无线通信标准,该标准提供了专门支持无线人体局域网(WBAN)要求的合适框架。标准化规定了基于WBAN的通信的物理(PHY)层和媒体访问控制(MAC)层协议。与现有的无线通信标准不同,IEEE 802.15.6标准化支持具有高质量服务的短距离,超低功耗无线通信,并支持在生物组织附近的高达10 Mbps的高数据速率。在这项工作中,我们构造了一个离散时间马尔可夫链(DTMC),可以有效地描述基于IEEE 802.15.6 CSMA / CA的WBAN的状态。然后,我们从可靠性,吞吐量,平均延迟和功耗方面对标准进行了全面分析。这项工作涉及非理想的信道特性和饱和的网络流量机制。现有的有关基于IEEE 802.15.6的基于马尔可夫链的分析的文献的主要缺点是,作者没有考虑到节点在发送数据包后等待确认帧所花费的时间,直到发生超时为止。而且,大多数工作都假定理想的信道特性对于网络来说是持久的,而在实践中几乎没有这种情况。由于我们在构造DTMC时考虑到节点在发送数据包后的等待时间,因此这项工作仍然具有特色。基于DTMC,我们执行了用户优先级(UP)的分析,并从医学角度证明了该标准的重要性。

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