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Network softwarization and parallel networks: beyond software-defined networks

机译:网络软化和并行网络:超越软件定义的网络

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摘要

The coexistence of various protocols for current network equipment leads to extremely complex network systems, which not only limit the development of network technologies, but also cannot meet the growing demands for cloud computing, big data, and service visualization applications, just to name a few. As a new network architecture, parallel networks are expected to revolutionize this situation and meet the evolving demands for network services. The main idea of a parallel network is to leverage upon software-defined networking to construct artificial networks, and then effectively optimize the network system operations via the interactions between actual and artificial networks. The foundation of the parallel network is the theory of ACP, composed of artificial societies, computational experiments, and parallel execution. By the computational experiments and analysis of the artificial network, a control strategy based on network traffic flow can be continuously updated and tracked on a real-time basis; meanwhile, the collected operating status of the actual network can also be used to optimize the model of the artificial network. These strategies can be applied to all types of network equipment to control network operations at various levels; thus, it is possible to allocate the network resources more effectively, improve the management and utilization of resources, and then provide new network solutions to effectively address the constantly evolving network demands for network performance, scalability, and security.
机译:当前网络设备的各种协议的共存导致网络系统极为复杂,这不仅限制了网络技术的发展,而且还不能满足对云计算,大数据和服务可视化应用的不断增长的需求。 。作为一种新的网络体系结构,并行网络有望彻底改变这种状况,并满足对网络服务不断发展的需求。并行网络的主要思想是利用软件定义的网络来构建人工网络,然后通过实际网络与人工网络之间的交互有效地优化网络系统的运行。并行网络的基础是ACP理论,它由人工社会,计算实验和并行执行组成。通过对人工网络的计算实验和分析,可以实时更新和跟踪基于网络流量的控制策略。同时,所收集的实际网络运行状态还可以用于优化人工网络模型。这些策略可以应用于所有类型的网络设备,以控制各个级别的网络运行;因此,可以更有效地分配网络资源,改善资源的管理和利用,然后提供新的网络解决方案,以有效满足网络性能,可伸缩性和安全性不断发展的网络需求。

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