Design of Joint Cooperative Routing, MAC and Physical Layer with QoS-aware Traffic-based Scheduling for Wireless Sensor Networks

Jawad Haqbeen, Takayuki Ito, M. Arifuzzaman, T. Otsuka
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引用次数: 3

Abstract

Compare the WSN with other conventional network system, the changing or charging the existing battery of sensor node within WSN is a tough job. Therefore, since last decade the effort has been made to design and introduce a large number of communication protocol for WSN with given concern on the performance parameter of energy efficiency and still the key requirements within WSN domain, that how to incrementally expands the energy minimization consuming techniques of sensor battery. The other parameters include latency, fairness, throughput and delivery ratio. In this work, we propose a novel joint cooperative routing, medium access control (MAC) and physical layer protocol with traffic differentiation based QoSaware for wireless sensor network (WSNs). This is referred to as a Joint Routing, MAC and Physical layer protocol (J-RMP). By blending the classical layered approach and combining routing, MAC and physical layer functions, the proposed J-RMP protocol achieves a solution for energy efficiency in WSNs. Convention ally, the problem of energy efficient protocol design is considered independently at respective layer of protocol stack. This paper has taken a holistic approach of finding solution by addressing the possible energy gain in Routing, MAC and Physical layer together. Firstly, it is seen that communication path with the large number of short hop substantially minimizes energy consumption. This phenomenon is used while instantaneous network information is collected with minimum overhead through the control packets for selecting next hop. Based on the updated network knowledge the next hop neighbor is chosen with reduced control overhead. Further, we describe how J-RMP protocol uses the approach for finding the constrained shortest path for forwarding packets [1], which results in load balancing in WSNs and provide mathematical analysis of node forwarding path determination within network. Finally, we compare our proposed method with existing protocols by ns-2 simulator and confirm that J-RMP outperform in some cases in term of sensitive traffics. The experimental results have proved that the traffic load has been balanced to a certain traffic, and energy efficiency has been achieved by properly adjusting the applied theory. The outcome supports the theory, and proves the effectiveness of our proposed scheme. This kind of protocol should have significant implications for various WSNs application where energy constraint is the main point of concerns.
基于qos感知的无线传感器网络流量调度的联合协同路由、MAC和物理层设计
与其他传统网络系统相比,无线传感器网络中传感器节点的电池更换或充电是一项艰巨的任务。因此,如何逐步扩展传感器电池的能量消耗最小化技术,是近十年来为WSN设计和引入大量的通信协议所做的努力,同时也关注了能效这一性能参数,这仍然是WSN领域的关键要求。其他参数包括延迟、公平性、吞吐量和投递率。在这项工作中,我们提出了一种新的无线传感器网络(WSNs)的联合协作路由、介质访问控制(MAC)和物理层协议以及基于流量区分的QoSaware。这被称为联合路由、MAC和物理层协议(J-RMP)。本文提出的J-RMP协议混合了传统的分层方法,结合了路由、MAC和物理层功能,实现了无线传感器网络的能效解决方案。传统上,高效节能协议设计问题是在协议栈的各个层独立考虑的。本文采用了一种整体的方法,通过解决路由、MAC和物理层可能产生的能量增益来寻找解决方案。首先,可以看到具有大量短跳的通信路径实质上使能量消耗最小化。通过选择下一跳的控制包,以最小的开销收集瞬时网络信息。根据更新的网络知识选择下一跳邻居,减少控制开销。此外,我们描述了J-RMP协议如何使用寻找受限最短路径转发数据包的方法[1],这导致wsn中的负载均衡,并提供了网络内节点转发路径确定的数学分析。最后,通过ns-2模拟器将本文提出的方法与现有协议进行了比较,证实了J-RMP在某些情况下对敏感流量的性能优于现有协议。实验结果表明,通过对应用理论的适当调整,交通负荷均衡到一定的交通,达到了节能的目的。实验结果支持了上述理论,证明了所提方案的有效性。这种协议对于能量约束是主要关注点的各种无线传感器网络应用具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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