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Software-Defined Networking: A Comprehensive Survey

机译:软件定义网络:综合调查

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摘要

The Internet has led to the creation of a digital society, where (almost) everything is connected and is accessible from anywhere. However, despite their widespread adoption, traditional IP networks are complex and very hard to manage. It is both difficult to configure the network according to predefined policies, and to reconfigure it to respond to faults, load, and changes. To make matters even more difficult, current networks are also vertically integrated: the control and data planes are bundled together. Software-defined networking (SDN) is an emerging paradigm that promises to change this state of affairs, by breaking vertical integration, separating the network's control logic from the underlying routers and switches, promoting (logical) centralization of network control, and introducing the ability to program the network. The separation of concerns, introduced between the definition of network policies, their implementation in switching hardware, and the forwarding of traffic, is key to the desired flexibility: by breaking the network control problem into tractable pieces, SDN makes it easier to create and introduce new abstractions in networking, simplifying network management and facilitating network evolution. In this paper, we present a comprehensive survey on SDN. We start by introducing the motivation for SDN, explain its main concepts and how it differs from traditional networking, its roots, and the standardization activities regarding this novel paradigm. Next, we present the key building blocks of an SDN infrastructure using a bottom-up, layered approach. We provide an in-depth analysis of the hardware infrastructure, southbound and northbound application programming interfaces (APIs), network virtualization layers, network operating systems (SDN controllers), network programming languages, and network applications. We also look at cross-layer problems such as debugging and troubleshooting. In an effort to anticipate the future evolution of this - ew paradigm, we discuss the main ongoing research efforts and challenges of SDN. In particular, we address the design of switches and control platforms—with a focus on aspects such as resiliency, scalability, performance, security, and dependability—as well as new opportunities for carrier transport networks and cloud providers. Last but not least, we analyze the position of SDN as a key enabler of a software-defined environment.
机译:互联网导致了一个数字社会的创建,在那里(几乎)所有事物都可以连接并且可以从任何地方访问。但是,尽管已被广泛采用,但传统的IP网络却非常复杂且难以管理。既难以根据预定义的策略配置网络,又难以对其进行重新配置以响应故障,负载和更改。使事情变得更加困难的是,当前的网络也被垂直集成:控制平面和数据平面捆绑在一起。软件定义网络(SDN)是新兴的范式,它有望通过打破垂直整合,将网络的控制逻辑与底层路由器和交换机分离,促进网络控制的(逻辑)集中化并引入功能来改变这种状况。对网络进行编程。在网络策略的定义,它们在交换硬件中的实现以及流量转发之间引入的关注点分离是实现所需灵活性的关键:通过将网络控制问题分解为易处理的部分,SDN使得创建和引入更加容易网络中的新抽象,简化了网络管理并促进了网络发展。在本文中,我们对SDN进行了全面的调查。我们首先介绍SDN的动机,解释SDN的主要概念以及它与传统网络的区别,它的起源以及有关这种新颖范式的标准化活动。接下来,我们使用自底向上的分层方法介绍SDN基础结构的关键构建块。我们提供对硬件基础结构,南向和北向应用程序编程接口(API),网络虚拟化层,网络操作系统(SDN控制器),网络编程语言和网络应用程序的深入分析。我们还将研究跨层问题,例如调试和故障排除。为了预期这种ew范例的未来发展,我们讨论了SDN正在进行的主要研究工作和面临的挑战。特别是,我们着眼于交换机和控制平台的设计-着重于弹性,可伸缩性,性能,安全性和可靠性等方面,以及运营商传输网络和云提供商的新机遇。最后但并非最不重要的一点是,我们分析了SDN作为软件定义环境的关键推动因素的地位。

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