MANET topology control based on the node degree and energy detection threshold

Yukinari Hayashi, M. Harayama
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引用次数: 3

Abstract

In a mobile ad hoc network (MANET) constructed of mobile terminals, instability of communication and energy consumption are often a problem. Topology control of the network by transmission power has been investigated to stabilize the communication in a dense environment and to reduce energy consumption. However, the singly-linked nodes generated by topology control may cause the routing packets to collide. Therefore, in this study, we propose a new topology control that maintains the doubly-linked nodes by controlling not only the transmission power but also the threshold of energy detection based on the number of adjacent nodes (node degree). In addition, in order to minimize electric wave interference and the time required to control the topology, the proposed method controls the average degree to within a range, rather than to a single point. Our topology control suppresses electric wave interference, stabilizes communication, and conserves electrical power in the nodes. Simulation under mobile environments revealed that the proposed method increases the packet delivery ratio and decreases power consumption.
基于节点度和能量检测阈值的MANET拓扑控制
在由移动终端组成的移动自组网(MANET)中,通信不稳定和能量消耗经常是一个问题。为了稳定密集环境下的通信,降低能耗,研究了传输功率对网络拓扑的控制。但是拓扑控制产生的单链节点可能会导致路由报文冲突。因此,在本研究中,我们提出了一种新的拓扑控制,通过控制传输功率和基于相邻节点数量(节点度)的能量检测阈值来维持双链节点。此外,为了最大限度地减少电磁波干扰和控制拓扑所需的时间,所提出的方法将平均度控制在一个范围内,而不是单个点。我们的拓扑控制抑制了电波干扰,稳定了通信,节约了节点的电力。在移动环境下的仿真结果表明,该方法提高了分组传输率,降低了功耗。
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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