一种减少高移动Ad Hoc网络控制开销和增加链路持续时间的新方案

E. Sakhaee, T. Taleb, A. Jamalipour, N. Kato, Y. Nemoto
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引用次数: 34

摘要

基于泛洪的方法作为路由发现的基本策略被纳入响应路由协议中。当路由发现的频率随着移动自组织网络(MANET)中用户的移动性而增加时,它们会明显影响流量。本文提出了一种在高度MANET网络中减少总体流量和端到端延迟的方案。首先,提出了一种新的路由算法,通过延长所选路径的链路持续时间来降低洪水请求的频率。为了增加路径持续时间,还考虑了不相交路径。这个概念是一种新的路由发现方法,因为以前的响应式路由协议只寻找不相交的路径。其次,提出了一种不需要全球定位系统(GPS)设备来估计链路失效时间的新方法。为了防止在路径发现过程中可能引起的广播风暴,还引入了另一种方案。提出的方案背后的基本概念是只广播特定的和定义良好的数据包,在本文中称为“最佳数据包”。根据流量开销对新协议进行了仿真。虽然我们在本文中的主要目的是减少MANET网络中的网络控制流量,但所提出的方案还有其他好处,即链路持续时间的增加,端到端通信延迟的减少,数据流中断的减少以及路径设置的减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Scheme to Reduce Control Overhead and Increase Link Duration in Highly Mobile Ad Hoc Networks
Flooding-based approaches are incorporated in reactive routing protocols as the fundamental strategy for route discovery. They overtly affect traffic as the frequency of route discovery increases along with the mobility of users in a mobile ad hoc network (MANET). This paper presents a scheme for reducing overall traffic and end-to-end delay in highly MANET networks. Firstly a new routing algorithm is proposed to reduce the frequency of flood requests by elongating the link duration of the selected paths. In order to increase the path duration, non-disjoint paths are also considered. This concept is a novel approach in route discovery as previous reactive routing protocols seek only disjoint paths. Secondly another novel approach is presented to estimate the link expiration time without the need for global positioning system (GPS) devices. To prevent broadcast storms that may be intrigued during the path discovery operation, another scheme is also introduced. The basic concept behind the proposed scheme is to broadcast only specific and well-defined packets, referred to as "best packets" in the paper. The new protocol is simulated with regard to traffic overhead. Although our main aim in this paper is to reduce the net control traffic in a MANET network, there are other benefits arising from the proposed schemes, namely the increase in link duration, reduction in the end-to-end communication delay, less disruption in data flow, and fewer path setups.
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