Ensuring Cache Freshness in On-Demand Routing Protocols for Mobile Ad Hoc Network: A Cross-layer Framework

A. Shukla
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引用次数: 11

Abstract

One of the big challenges in ad hoc network design is packet routing. Studies have shown that on-demand routing protocols perform better than table-driven routing protocols. In order to avoid route discovery for each packet, on-demand routing protocols cache routes previously learnt. A node in ad hoc network learns routing information by overhearing or forwarding packets to other nodes and keep learned routes in its route cache. However, node movement results broken links and therefore increases risk of cache pollution. Ensuring cache freshness in on-demand routing protocols, therefore, presents a serious challenge. A lot of research has been done in route cache organization, however, little effort has been done for route cache timeout policy to prevent stale routes from being used. In this paper we propose a new cross-layer framework to improve route cache performance in on-demand routing protocols. The proposed framework presents novel use of Received Signal Strength Indicator (RSSI) information to choose cache timeout of individual links in route cache.
确保移动自组织网络按需路由协议中的缓存新鲜度:一个跨层框架
分组路由是自组织网络设计中的一大挑战。研究表明,按需路由协议的性能优于表驱动路由协议。为了避免每个数据包的路由发现,按需路由协议缓存以前学习的路由。ad hoc网络中的节点通过监听或转发报文来学习路由信息,并将学习到的路由保存在路由缓存中。但是,节点移动会导致断开链接,从而增加缓存污染的风险。因此,确保按需路由协议中的缓存新鲜度是一个严峻的挑战。在路由缓存的组织方面已经做了大量的研究,但是对于路由缓存超时策略的研究却很少。本文提出了一种新的跨层框架来提高按需路由协议中的路由缓存性能。该框架提出了一种利用接收信号强度指示器(RSSI)信息来选择路由缓存中单个链路的缓存超时的新方法。
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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