A reliable cross layer routing scheme (CL-RS) for wireless sensor networks to prolong network lifetime

S. Kusumamba, S. D. Dilip Kumar
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引用次数: 8

Abstract

Design of conventional protocols for wireless sensor networks(WSN) are mainly based on energy management. The solutions for layered protocol of the WSN network are inefficient as sensors network mainly delivers real-time content thus, cross layer communication between layers of the protocol stack is highly required. In this paper, a reliable cross layer routing scheme (CL - RS) is proposed to balance energy to achieve prolonged lifetime through controlled utilization of limited energy. CL - RS considers 2 adjacent layers namely, MAC layer and network layer. Optimization issues are identified in these two layers and solutions are provided to reduce energy consumption thereby increasing network lifetime. To achieve higher energy efficiency MAC layer protocols compromise on packet latency. It is essential to attempt reduce the end-to-end delay and energy consumption using low duty cycle cross layer MAC (CL-MAC). The joint optimization design is formulated as a linear programming problem. The network is partitioned into four request zones to enable increase in network performance by using an appropriate duty cycle and routing scheme. We demonstrate by simulations that the strategy designed by combining (CL - RS) and (CL-MAC) algorithms at each layer significantly increases the network lifetime and a relation exists between the network lifetime maximization and the reliability constraint. We evaluate the performance of the proposed scheme under different scenarios using ns-2. Experimental results shows that proposed scheme outperforms the layered AODV in terms of packet loss ratio, end-to-end delay, control overhead and energy consumption.
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一种可靠的无线传感器网络跨层路由方案(CL-RS),以延长网络寿命
传统的无线传感器网络协议设计主要基于能量管理。由于传感器网络主要传输实时内容,因此对协议栈各层之间的跨层通信有很高的要求,因此WSN网络的分层协议解决方案效率低下。本文提出了一种可靠的跨层路由方案(CL - RS),通过控制有限能量的利用来平衡能量,从而延长寿命。CL - RS考虑两个相邻层,即MAC层和网络层。在这两个层中确定了优化问题,并提供了降低能耗从而延长网络寿命的解决方案。为了实现更高的能效,MAC层协议在数据包延迟上做出了妥协。尝试使用低占空比跨层MAC (CL-MAC)来降低端到端延迟和能耗是必要的。将联合优化设计表述为一个线性规划问题。网络被划分为四个请求区,通过使用适当的占空比和路由方案来提高网络性能。仿真结果表明,将CL- RS和CL- mac算法结合设计的策略可以显著提高网络的生存期,并且网络生存期最大化与可靠性约束之间存在一定的关系。我们使用ns-2评估了该方案在不同场景下的性能。实验结果表明,该方案在丢包率、端到端时延、控制开销和能耗等方面都优于分层AODV。
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