基于信标的IEEE 802.15.4标准在聚类WSNs中的性能研究

Vinay Kumar, A. Raghuvansi, S. Tiwari
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引用次数: 12

摘要

为了支持高可伸缩性和更好的数据聚合,传感器节点通常被分组为不相交且大多数不重叠的子集,称为集群。集群创建分层wsn,有利于有效利用有限的传感器节点资源,从而延长网络寿命。ZigBee是一种低速率个人区域网络(LR-WPAN)通信标准,具有低功耗、低复杂度和低成本的特点。ZigBee采用IEEE 802.15.4标准作为MAC (Medium Access Control)层和物理层的通信协议。IEEE 802.15.4 MAC标准通过设置macBeaconOrder (BO)和macSuperframeOrder (SO)两个系统参数来实现占空比操作,以实现不同占空比值下的低功耗。本文以LEACH(Low energy adaptive clustering hierarchy protocol)算法为聚类协议,DYMO (Dynamic MANET on-demand)算法为路由协议,分析了具有聚类的无线传感器网络场景的跨层(MAC/PHY)方法,并分析了聚类优于非聚类无线传感器网络的改进。我们计算了不同占空比下的平均抖动、端到端延迟、吞吐量和总电荷消耗等属性,发现网络延迟和平均抖动有所改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance study of beacon-enabled IEEE 802.15.4 standard in WSNs with clustering
To support high scalability and better data aggregation, sensor nodes are often grouped in to disjoint and mostly non overlapping sub sets called clusters. Clusters create hierarchical WSNs which facilitate efficient utilization of limited resources of sensor nodes and thus extends network lifetime. ZigBee, a communication standard for LR-WPAN (Low Rate Personal Area Networks), has low power consumption, complexity and cost. ZigBee uses the IEEE 802.15.4 standard as its communication protocol for Medium Access Control (MAC) layer and physical (PHY) layer. The IEEE 802.15.4 MAC standard achieves duty cycle Operation by setting two system parameters, macBeaconOrder (BO) and macSuperframeOrder (SO), to achieve low power consumption for different value of duty cycle. In this Paper we have analyzed cross layer (MAC/PHY) approach for wireless sensor network scenario with clustering in which we consider LEACH(Low energy adaptive clustering hierarchy protocol) algorithms as clustering protocol and DYMO (Dynamic MANET on-demand) as a routing protocol and analyze improvement of clustered over not clustered WSNs. We have calculated the attributes like average jitter, end to end delay, throughput and total charge consumption for different % of duty cycle and have found improvement in network latency and average jitter.
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