一种面向移动自组织网络的节能自适应HELLO算法

Danping He, N. Mitton, D. Simplot-Ryl
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引用次数: 6

摘要

HELLO协议或邻居发现在无线自组织网络中是必不可少的。它为节点声明其存在/活动制定规则。在存在节点移动性的情况下,不存在固定的最优HELLO频率和最优传输范围,既能保持精确的邻域表,又能降低能耗和带宽占用。为此,本文提出了一种基于周转率的频率与传输功率自适应算法。该方法使移动网络中的节点能够根据相对速度动态调整其HELLO频率和传输范围。在TFPA中,每个节点监控它的邻居表来计算新邻居的数量并计算周转率。建立了相对转速与周转率之间的关系,并根据电池消耗模型推导出最优传动里程,以使总传动能量最小。通过利用理论分析,HELLO频率与传输范围动态调整,以保持准确的邻域表,并允许重要的节能。对该算法进行了仿真,并与其他先进算法进行了比较。实验结果表明,TFPA算法以较低的HELLO频率(平均降低至少11%)和最低的能耗获得了较高的邻域精度。此外,TFPA算法不需要任何额外的类似gps的设备来估计每个节点的相对速度,因此降低了硬件成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An energy efficient adaptive HELLO algorithm for mobile ad hoc networks
HELLO protocol or neighborhood discovery is essential in wireless ad hoc networks. It makes the rules for nodes to claim their existence/aliveness. In the presence of node mobility, no fix optimal HELLO frequency and optimal transmission range exist to maintain accurate neighborhood tables while reducing the energy consumption and bandwidth occupation. Thus a Turnover based Frequency and transmission Power Adaptation algorithm (TFPA) is presented in this paper. The method enables nodes in mobile networks to dynamically adjust both their HELLO frequency and transmission range depending on the relative speed. In TFPA, each node monitors its neighborhood table to count new neighbors and calculate the turnover ratio. The relationship between relative speed and turnover ratio is formulated and optimal transmission range is derived according to battery consumption model to minimize the overall transmission energy. By taking advantage of the theoretical analysis, the HELLO frequency is adapted dynamically in conjunction with the transmission range to maintain accurate neighborhood table and to allow important energy savings. The algorithm is simulated and compared to other state-of-the-art algorithms. The experimental results demonstrate that the TFPA algorithm obtains high neighborhood accuracy with low HELLO frequency (at least 11% average reduction) and with the lowest energy consumption. Besides, the TFPA algorithm does not require any additional GPS-like device to estimate the relative speed for each node, hence the hardware cost is reduced.
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