面向大规模无线传感器网络的低拉伸保证轻量级地理路由协议

M. Won, R. Stoleru
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引用次数: 20

摘要

地理路由几乎是无状态的,因此非常适合大规模无线传感器网络(wsn)。一个重要的挑战是网络漏洞可能任意增加路由路径长度。幸运的是,最近的研究表明,使用非局部信息可以实现恒定路径拉伸。然而,恒定的扩展是以高通信和存储开销为代价的:源节点必须在数据传输之前通过使用默认地理路由(例如,GPSR)与目标节点交换消息来完成“路径设置”过程。在本文中,我们提出了第一个地理路由协议(LVGR),它可以证明实现Θ (D/γ)的最坏情况延伸(其中D是网络的直径,γ是节点的通信范围),并且具有较低的通信和存储开销。LVGR将洞表示为凸壳,其内部结构表示为局部可见性图。基于凸包和局部可见性图,LVGR生成保证拉伸的路径。通过理论分析和广泛的仿真,我们证明了LVGR的最坏情况延伸,并证明LVGR与现有技术相比,可减少高达97%的通信开销和高达60%的存储开销。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Low-Stretch-Guaranteed and Lightweight Geographic Routing Protocol for Large-Scale Wireless Sensor Networks
Geographic routing is well suited for large-scale wireless sensor networks (WSNs) because it is nearly stateless. One important challenge is that network holes may arbitrarily increase the routing path length. Fortunately, recent studies have shown that constant path stretch is achievable using nonlocal information. The constant stretch, however, is possible at the cost of high communication and storage overhead: a source node must complete a “path-setup” process prior to data transmission by exchanging a message with a destination node using a default geographic routing (e.g., GPSR). In this article, we propose the first geographic routing protocol (LVGR) that provably achieves worst-case stretch of Θ (D/γ) (where D is the diameter of the network and γ is the communication range of nodes) with low communication and storage overhead. LVGR represents a hole as a convex hull, the internal structure of which is represented as a local visibility graph. Based on the convex hulls and local visibility graphs, LVGR generates paths with guaranteed stretch. Through theoretical analysis and extensive simulations, we prove the worst-case stretch of LVGR and demonstrate that LVGR reduces communication overhead by up to 97% and storage overhead by up to 60%, compared with the state of the art.
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