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Location-aware routing protocol with dynamic adaptation of request zone for mobile ad hoc networks

机译:具有动态适应请求区域的位置自觉路由协议,用于移动自组织网络

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摘要

One possibility direction to assist routing in Mobile Ad Hoc Network (MANET) is to use geographical location information provided by positioning devices such as global positioning systems (GPS). Instead of searching the route in the entire network blindly, position-based routing protocol uses the location information of mobile nodes to confine the route searching space into a smaller estimated range. The smaller route searching space to be searched, the less routing overhead and broadcast storm problem will occur. In this paper, we proposed a location-based routing protocol called LARDAR. There are three important characteristics be used in our protocol to improve the performance. Firstly, we use the location information of destination node to predict a smaller triangle or rectangle request zone that covers the position of destination in the past. The smaller route discovery space reduces the traffic of route request and the probability of collision. Secondly, in order to adapt the precision of the estimated request zone, and reduce the searching range, we applied a dynamic adaptation of request zone technique to trigger intermediate nodes using the location information of destination node to redefine a more precise request zone. Finally, an increasing-exclusive search approach is used to redo route discovery by a progressive increasing search angle basis when route discovery failed. This progressive increased request zone and exclusive search method is helpful to reduce routing overhead. It guarantees that the areas of route rediscovery will never exceed twice the entire network. Simulation results show that LARDAR has lower routing cost and collision than other protocols.
机译:在移动自组织网络(MANET)中协助路由的一种可能的方向是使用由定位设备(例如全球定位系统(GPS))提供的地理位置信息。基于位置的路由协议不是盲目地在整个网络中搜索路由,而是使用移动节点的位置信息将路由搜索空间限制在较小的估计范围内。要搜索的路由搜索空间越小,路由开销和广播风暴问题就会越少。在本文中,我们提出了一种称为LARDAR的基于位置的路由协议。我们的协议中使用三个重要的特性来提高性能。首先,我们使用目标节点的位置信息来预测一个较小的三角形或矩形请求区域,以覆盖过去的目标位置。较小的路由发现空间可减少路由请求的流量和冲突的可能性。其次,为了适应估计的请求区域的精度并减小搜索范围,我们应用了请求区域的动态适应技术,利用目的节点的位置信息触发中间节点,以重新定义更精确的请求区域。最后,当路由发现失败时,使用渐进式排他性搜索方法通过渐进式增加搜索角度来重做路由发现。这种逐步增加的请求区域和专用搜索方法有助于减少路由开销。它保证了路由重新发现的区域不会超过整个网络的两倍。仿真结果表明,LARDAR比其他协议具有更低的路由成本和冲突。

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