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A new data transmission mechanism in aeronautical ad hoc network

机译:航空自组网中一种新的数据传输机制

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In this paper, a new network topology control mechanism is proposed to improve routing path duration in Aeronautical ad hoc network, which can effectively decrease the probability of routing path breaks in the process of nodes high-speed moving, and be integrated with existing routing protocols used in Ad hoc network smoothly. The main principle of topology control mechanism is according to the different node densities with different topology construction method. For network regions having a high density of aircraft, the packets are preferentially routed over the long available links created by the aircraft moving in same direction. For low density of aircraft, the routing preferentially uses the short available links created by the aircraft moving in both directions. This mechanism can increase the routing path duration effectively. We combine the topology control mechanism with OLSR, and give the Path Link Availability Routing Protocol (PLAR). We compare the performance of PLAR protocol with other routing protocols in different scenes. Experimental results show that, PLAR protocol exhibits a significant improvement over most routing protocols base on topology and position.
机译:本文提出了一种新的网络拓扑控制机制,以改善航空自组网中的路由路径持续时间,可以有效降低节点高速移动过程中路由路径中断的可能性,并与现有的路由协议相集成。在Ad hoc网络中顺利使用。拓扑控制机制的主要原理是根据不同的节点密度采用不同的拓扑构造方法。对于具有高飞行器密度的网络区域,优先在由沿相同方向移动的飞行器创建的长可用链路上路由数据包。对于低密度的飞机,路由优先使用由双向飞行的飞机创建的短可用链路。这种机制可以有效地增加路由路径的持续时间。我们将拓扑控制机制与OLSR相结合,并给出了路径链接可用性路由协议(PLAR)。我们将PLAR协议在不同场景下的性能与其他路由协议进行了比较。实验结果表明,与大多数基于拓扑和位置的路由协议相比,PLAR协议具有明显的改进。

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