RICA: a receiver-initiated approach for channel-adaptive on-demand routing in ad hoc mobile computing networks

Xiaohui Lin, Yu-Kwong Kwok, V. Lau
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引用次数: 20

Abstract

To support truly peer-to-peer applications in ad hoc wireless mobile computing networks, a judicious and efficient ad hoc routing protocol is needed. Much research has been done on designing ad hoc routing protocols and some well known protocols are also being implemented in practical situations. However, one major drawback in existing state-of-the-art protocols, such as the AODV routing protocol, is that the time-varying nature of the wireless channels among the mobile terminals is ignored, let alone exploited. This can be a severe design shortcoming because the varying channel quality can lead to very poor overall route quality, in turn result in low data throughput. In this paper, by using a previously proposed adaptive channel coding and modulation scheme which allows a mobile terminal to dynamically adjust the data throughput via changing the amount of error protection incorporated, we devise a new receiver-initiated algorithm for ad hoc routing that dynamically changes the routes according to the channel conditions. Extensive simulation results indicate that our proposed protocol are more efficient in that shorter delays and higher rates are achieved.
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RICA:在自组织移动计算网络中用于信道自适应按需路由的一种接收机发起的方法
为了在自组织无线移动计算网络中支持真正的点对点应用,需要一种明智而高效的自组织路由协议。在设计自组织路由协议方面已经做了大量的研究,一些知名的协议也在实际应用中得到了实现。然而,现有的最先进协议(如AODV路由协议)的一个主要缺点是,移动终端之间无线信道的时变特性被忽略了,更不用说利用了。这可能是一个严重的设计缺陷,因为不同的信道质量可能导致非常差的整体路由质量,从而导致低数据吞吐量。本文采用先前提出的自适应信道编码和调制方案,该方案允许移动终端通过改变所包含的错误保护的数量来动态调整数据吞吐量,我们设计了一种新的接收机发起的自组织路由算法,该算法根据信道条件动态改变路由。大量的仿真结果表明,我们提出的协议具有更短的延迟和更高的速率。
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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