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耳语:工业物联网网络的可编程和灵活控制。

Whisper: Programmable and Flexible Control on Industrial IoT Networks.

机构信息

IDLab-Department of Mathematics and Computer Science, University of Antwerp-IMEC, 2000 Antwerp, Belgium.

IDLab-Faculty of Applied Engineering, University of Antwerp-IMEC, 2000 Antwerp, Belgium.

出版信息

Sensors (Basel). 2018 Nov 20;18(11):4048. doi: 10.3390/s18114048.

Abstract

Software Defined Networking (SDN) centralizes network control to improve network programmability and flexibility. Contrary to wired settings, it is unclear how to support SDN in low power and lossy networks like typical Internet of Things (IoT) ones. Challenges encompass providing reliable in-band connectivity between the centralized controller and out-of-range nodes, and coping with physical limitations of the highly resource-constrained IoT devices. In this work, we present Whisper, an enabler for SDN in low power and lossy networks. The centralized Whisper controller of a network remotely controls nodes' forwarding and cell allocation. To do so, the controller sends carefully computed routing and scheduling messages that are fully compatible with the protocols run in the network. This mechanism ensures the best possible in-band connectivity between the controller and all network nodes, capitalizing on an interface which is already supported by network devices. Whisper's internal algorithms further reduce the number of messages sent by the controller, to make the exerted control as lightweight as possible for the devices. Beyond detailing Whisper's design, we discuss compelling use cases that Whisper unlocks, including rerouting around low-battery devices and providing runtime defense to jamming attacks. We also describe how to implement Whisper in current IoT open standards (RPL and 6TiSCH) without modifying IoT devices' firmware. This shows that Whisper can implement an SDN-like control for distributed low power networks with no specific support for SDN, from legacy to next generation IoT devices. Our testbed experiments show that Whisper successfully controls the network in both the scheduling and routing plane, with significantly less overhead than other SDN-IoT solutions, no additional latency and no packet loss.

摘要

软件定义网络 (SDN) 将网络控制集中化,以提高网络的可编程性和灵活性。与有线设置不同,在低功率和低损耗的网络(如典型的物联网 (IoT))中,如何支持 SDN 尚不清楚。挑战包括在集中控制器和超出范围的节点之间提供可靠的带内连接,以及应对高度资源受限的 IoT 设备的物理限制。在这项工作中,我们提出了 Whisper,这是一种在低功率和低损耗网络中实现 SDN 的方法。网络的集中式 Whisper 控制器远程控制节点的转发和信元分配。为此,控制器发送经过精心计算的路由和调度消息,这些消息与网络中运行的协议完全兼容。这种机制确保了控制器和所有网络节点之间尽可能好的带内连接,利用已经得到网络设备支持的接口。Whisper 的内部算法进一步减少了控制器发送的消息数量,以使设备所承受的控制尽可能轻量级。除了详细介绍 Whisper 的设计,我们还讨论了 Whisper 解锁的引人注目的用例,包括绕过电量不足的设备进行重新路由和提供运行时防御干扰攻击。我们还描述了如何在当前的物联网开放标准(RPL 和 6TiSCH)中实现 Whisper,而无需修改物联网设备的固件。这表明,Whisper 可以在没有特定 SDN 支持的情况下,为分布式低功率网络实现类似于 SDN 的控制,涵盖从传统到下一代物联网设备。我们的测试床实验表明,Whisper 成功地控制了调度和路由平面中的网络,其开销明显低于其他 SDN-IoT 解决方案,没有额外的延迟,也没有数据包丢失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ea9/6263932/06290aeb74ed/sensors-18-04048-g001.jpg

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