一种集成异构空间和地面网络的软件定义架构

Jie Sun, Feng Liu, Yong Li, Lianlian Zhang, Dingyuan Shi
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引用次数: 0

摘要

近年来,各种类型的异构网络发展迅速。多类型网络的融合在军事和民用领域都具有重要的应用价值。集成多个网络的挑战包括多个方面的异构性,如体系结构、协议和交换机制。现有的异构网络互联技术主要包括传统的静态协议网关、传统的软件定义网络(SDN)网关和改进的SDN网关。但传统的静态协议网关需要根据具体场景提前定制,灵活性较差。传统的SDN网关通常用于连接同构网络。现有的改进型SDN网关往往忽视了异构网络集成的效率和成本。在我们的工作中,我们提出了一种软件定义架构,用于集成异构空间和地面网络(SD-SGN)。首先,我们提出了一个集成架构,利用SDN网关和南向接口来屏蔽子网从物理层到网络层的异构性。其次,我们使用多类多级流表来提供灵活的数据平面。第三,提出了基于子网抽象和全局协同优化的高效控制平面。第四,我们进一步讨论了基于所提出的SDN架构定制完整的网络服务。最后,大量的仿真证明了这种SDN架构是有效的,并且在成本、效率和性能方面表现良好。
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A Software-Defined Architecture for Integrating Heterogeneous Space and Ground Networks
In recent years, various types of heterogeneous networks develop rapidly. The integration of multi-type networks have great values in the fields of military and civil applications. The challenges of integrating multiple networks covers the heterogeneity of multiple aspects, e.g., the architectures, protocols, and switching mechanisms. The existing interconnection technologies of heterogeneous networks mainly include traditional static protocol gateways, traditional software-defined network (SDN) gateways, and improved SDN gateways. However, traditional static protocol gateways need to be customed in advance according to specific scenarios, which leads to the lack of flexibility. Traditional SDN gateways are often used for connecting homogeneous networks. The existing improved SDN gateways often neglect the efficiency and cost of integrating heterogeneous networks. In our work, we propose a software-defined architecture for integrating heterogeneous space and ground networks (SD-SGN). First, we propose an integrated architecture that utilizes SDN gateways and southbound interfaces to shield subnets’ heterogeneity ranging from the physical layer to the network layer. Second, we use the multi-class multi-level flow tables to provide a flexible data plane. Third, we offer an efficient control plane based on the subnet abstraction and global collaborative optimization. Fourth, we give a further discussion on customizing a complete network service based on the proposed SDN architecture. Last, extensive simulations demonstrate that this SDN architecture is effective and performs well in terms of costs, efficiency, and performance.
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