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A Routing Protocol for SDN-based Multi-hop D2D Communications

机译:基于SDN的多跳D2D通信路由协议

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This paper presents a new Multi-hop Device-to-Device (MD2D) routing protocol, referred to as SMDRP (SDN-based Multi-hop D2D Routing Protocol), for SDN-based wireless networks. Our proposed protocol can be considered as a semi-distributed routing protocol, where an SDN controller manages and controls part of the overall MD2D routing functionality to increase scalability while enabling network operators to control and maintain the out-of-band packet forwarding network. This paper also extends prior work on the Hybrid SDN Architecture for Wireless Distributed Networks (HSAW) [1] and is adapted to the framework presented in this paper. In HSAW, since all link state information is flooded by the controller to the nodes, the network will experience scalability problem. In our approach, this problem is overcome by only passing the next hop for each active route to the mobile nodes. To investigate this, we performed a theoretical and simulation studies comparing HSAW with SMDRP. From our result, it can be seen that for larger density populated networks, SMDRP shows better scalability than HSAW. In addition, mobile nodes need less memory and energy for their communications.
机译:本文介绍了一种新的多跳设备到设备(MD2D)路由协议,称为SMDRP(基于SDN的多跳D2D路由协议),用于基于SDN的无线网络。我们所提出的协议可以被认为是半分布式路由协议,其中SDN控制器管理和控制整个MD2D路由功能的一部分,以提高可扩展性,同时使网络运营商能够控制和维护带外分组转发网络。本文还扩展了对无线分布式网络(HSAW)的混合SDN架构的工作,并适用于本文呈现的框架。在章程中,由于控制器向节点淹没了所有链路状态信息,因此网络将体验可扩展性问题。在我们的方法中,通过仅将每个活动路由传递到移动节点的下一跳来克服此问题。为了调查这一点,我们对SMDRP进行了比较SPSAW的理论和模拟研究。从我们的结果,可以看出,对于较大的密度填充网络,SMDRP显示出比SAW更好的可扩展性。此外,移动节点需要更少的内存和能量的通信。

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