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A Stable and Energy-Efficient Routing Algorithm Based on Learning Automata Theory for MANET

机译:基于学习自动机理论的MANET稳定节能路由算法

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The mobile Ad Hoc network (MANET) is a self-organizing and self-configuring wireless network, consisting of a set of mobile nodes. The design of efficient routing protocols for MANET has always been an active area of research. In existing routing algorithms, however, the current work does not scale well enough to ensure route stability when the mobility and distribution of nodes vary with time. In addition, each node in MANET has only limited initial energy, so energy conservation and balance must be taken into account. An efficient routing algorithm should not only be stable but also energy saving and balanced, within the dynamic network environment. To address the above problems, we propose a stable and energy-efficient routing algorithm, based on learning automata (LA) theory for MANET. First, we construct a new node stability measurement model and define an effective energy ratio function. On that basis, we give the node a weighted value, which is used as the iteration parameter for LA. Next, we construct an LA theory-based feedback mechanism for the MANET environment to optimize the selection of available routes and to prove the convergence of our algorithm. The experiments show that our proposed LA-based routing algorithm for MANET achieved the best performance in route survival time, energy consumption, energy balance, and acceptable performance in end-to-end delay and packet delivery ratio.
机译:移动自组织网络(MANET)是一个自组织和自配置的无线网络,由一组移动节点组成。 MANET的高效路由协议的设计一直是研究的活跃领域。但是,在现有的路由算法中,当节点的移动性和分布随时间变化时,当前的工作无法很好地扩展以确保路由稳定性。此外,MANET中的每个节点仅具有有限的初始能量,因此必须考虑到能量守恒和平衡。在动态网络环境中,高效的路由算法不仅应该稳定,而且还应节能和平衡。为了解决上述问题,我们基于MANET的学习自动机(LA)理论,提出了一种稳定且节能的路由算法。首先,我们建立一个新的节点稳定性测量模型并定义一个有效的能量比函数。在此基础上,我们给节点一个加权值,该值用作LA的迭代参数。接下来,我们为MANET环境构建基于LA理论的反馈机制,以优化可用路由的选择并证明算法的收敛性。实验表明,我们提出的基于LA的MANET路由算法在路由生存时间,能耗,能量平衡以及端到端时延和数据包传递率方面表现出最佳性能。

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