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Performance Optimization of Priority Assisted CSMA/CA Mechanism of 802.15.6 under Saturation Regime

机译:饱和状态下802.15.6优先辅助CSMA / CA机制的性能优化

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Due to the recent development in the field of Wireless Sensor Networks (WSNs), the Wireless Body Area Networks (WBANs) have become a major area of interest for the developers and researchers. Human body exhibits postural mobility due to which distance variation occurs and the status of connections amongst sensors change time to time. One of the major requirements of WBAN is to prolong the network lifetime without compromising on other performance measures, i.e., delay, throughput and bandwidth efficiency. Node prioritization is one of the possible solutions to obtain optimum performance in WBAN. IEEE 802.15.6 CSMA/CA standard splits the nodes with different user priorities based on Contention Window (CW) size. Smaller CW size is assigned to higher priority nodes. This standard helps to reduce delay, however, it is not energy efficient. In this paper, we propose a hybrid node prioritization scheme based on IEEE 802.15.6 CSMA/CA to reduce energy consumption and maximize network lifetime. In this scheme, optimum performance is achieved by node prioritization based on CW size as well as power in respective user priority. Our proposed scheme reduces the average back off time for channel access due to CW based prioritization. Additionally, power based prioritization for a respective user priority helps to minimize required number of retransmissions. Furthermore, we also compare our scheme with IEEE 802.15.6 CSMA/CA standard (CW assisted node prioritization) and power assisted node prioritization under postural mobility in WBAN. Mathematical expressions are derived to determine the accurate analytical model for throughput, delay, bandwidth efficiency, energy consumption and life time for each node prioritization scheme. With the intention of analytical model validation, we have performed the simulations in OMNET++/MIXIM framework. Analytical and simulation results show that our proposed hybrid node prioritization scheme outperforms other node prioritization schemes in terms of average network delay, average throughput, average bandwidth efficiency and network lifetime.
机译:由于无线传感器网络(WSN)领域的最新发展,无线人体局域网(WBAN)已成为开发人员和研究人员关注的主要领域。人体表现出姿势移动性,这是由于姿势变化引起的,并且传感器之间的连接状态不时地变化。 WBAN的主要要求之一是在不影响其他性能指标(即延迟,吞吐量和带宽效率)的情况下延长网络寿命。节点优先级排序是在WBAN中获得最佳性能的可能解决方案之一。 IEEE 802.15.6 CSMA / CA标准根据竞争窗口(CW)大小拆分具有不同用户优先级的节点。较小的CW大小分配给较高优先级的节点。该标准有助于减少延迟,但是它不节能。在本文中,我们提出了一种基于IEEE 802.15.6 CSMA / CA的混合节点优先级分配方案,以减少能耗并最大化网络寿命。在该方案中,基于CW大小以及相应用户优先级中的功率,通过节点优先级排序可以实现最佳性能。由于基于CW的优先级划分,我们提出的方案减少了信道访问的平均退避时间。另外,针对各个用户优先级的基于功率的优先级排序有助于最小化所需的重传次数。此外,我们还将我们的方案与WBAN中姿势移动下的IEEE 802.15.6 CSMA / CA标准(CW辅助节点优先级)和功率辅助节点优先级进行了比较。导出数学表达式以确定每个节点优先级排序方案的吞吐量,延迟,带宽效率,能耗和寿命的准确分析模型。为了进行分析模型验证,我们在OMNET ++ / MIXIM框架中进行了仿真。分析和仿真结果表明,我们提出的混合节点优先级排序方案在平均网络延迟,平均吞吐量,平均带宽效率和网络寿命方面优于其他节点优先级排序方案。

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