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An LBMRE-OLSR Routing Algorithm under the Emergency Scenarios in the Space-Air-Ground Integrated Networks

机译:空中地集成网络紧急情况下的LBMRE-OLSR路由算法

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The Space-Air-Ground integrated network (SAGIN) is the development trend of the future communication networks, and it can cope with various complex environments and tasks in the future communication environment. When sudden public events and natural disasters occurs, ground communication facilities may be damaged and cannot meet the communication needs in emergency scenarios. The Space-Air-Ground integrated three-dimensional and heterogeneous network enables flexible deployment and rapid networking. In this paper, we study the routing algorithm in a software defined SAGIN to optimize the load balancing in the communication network. First, considering the characteristics of dynamic topology changes in real time, we propose a new Software Defined Network (SDN) model for the SAGIN, which promotes a high network flexibility. Basing on such model, we present a new load balancing dynamic routing algorithm, namely Load Balancing Algorithm Based on Multi-dimensional Resources and Energy (LBMRE-OLSR). The multi-dimensional resources and energy consumption are considered in the new routing algorithm. The simulation experiments show that the proposed algorithm efficiently reduce end-to-end delays and packet loss rate.
机译:空域集成网络(Sagin)是未来通信网络的发展趋势,它可以应对未来通信环境中的各种复杂环境和任务。在发生突然的公共活动和自然灾害时,地面通信设施可能会损坏,无法满足紧急情况下的通信需求。空域空域集成的三维和异构网络使得能够灵活地部署和快速网络。在本文中,我们研究了软件定义的Sagin中的路由算法,以优化通信网络中的负载均衡。首先,考虑实时变化的动态拓扑的特点,我们为Sagin提出了一种新的软件定义网络(SDN)模型,促进了高网络灵活性。基于这种模型,我们介绍了一种新的负载平衡动态路由算法,即基于多维资源和能量的负载平衡算法(LBMRE-OLSR)。在新的路由算法中考虑了多维资源和能量消耗。仿真实验表明,该算法有效地降低了端到端的延迟和分组损耗率。

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