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Geographical cluster based routing in sensing-covered networks

机译:感知覆盖网络中基于地理集群的路由

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The relationship between coverage and connectivity in sensor networks has been investigated in recent research treating both network parameters in a unified framework. It is known that networks covering a convex area are connected if the communication range of each node is at least twice a unique sensing range used by each node. Furthermore, geographic greedy routing is a viable and effective approach providing guaranteed delivery for this special network class. In this work we show that the result about network connectivity does not suffer from generalizing the concept of sensing coverage to arbitrary network deployment regions. However, dropping the assumption that the monitored area is convex requires the application of greedy recovery strategies like traversing a locally extracted planar subgraph. A recently proposed variant performs message forwarding along edges of a virtual overlay graph instead of using wireless links for planar graph construction directly. However, there exist connected network configurations where this routing variant may fail. In this work we proof a theoretical bound which is a sufficient condition for guaranteed delivery of this routing strategy applied in sensing covered networks. By simulation results we show that this bound may also be relaxed from a practical point of view and that geographical cluster based routing achieves a comparable performance compared to other planar graph routing variants based on two-hop neighbor information.
机译:最近的研究已经研究了传感器网络中的覆盖和连接之间的关系,在统一的框架中处理了网络参数。众所周知,如果每个节点的通信范围至少是每个节点使用的唯一感测范围的两倍,则连接覆盖凸面区域的网络。此外,地理贪婪路由是一种可行且有效的方法,为此特殊的网络类提供有保证的交付。在这项工作中,我们表明关于网络连接的结果不受概括对任意网络部署区域的传感覆盖范围的概念。然而,丢弃受监控区域是凸的假设,需要应用贪婪的恢复策略,如遍历局部提取的平面子图。最近提出的变体沿虚拟覆盖图的边缘执行消息转发,而不是直接使用用于平面图构造的无线链路。但是,存在连接的网络配置,其中该路由变体可能失败。在这项工作中,我们证明了理论界限,这是一种充分的条件,以保证提供在传感覆盖网络中的这种路由策略的提供。通过模拟结果,我们表明,与基于两个跳邻信息的其他平面图路由变型相比,地理集群的路由也可以从实际的角度放宽,并且基于地理集群的路由实现了相当的性能。

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