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The relevance and impact of IPv6 multicasting for Wireless Sensor and Actuator Networks based on 6LoWPAN and constrained RESTful environments

机译:基于6LoWPAN和受约束的RESTful环境的IPv6组播对无线传感器和促动器网络的相关性和影响

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Wireless Sensor and Actuator Networks (WSANs) will play an essential role in the future Internet of Things. Wireless communication is an important enabler that provides ease of deployment and reduced installation costs but puts strong constraints on the used communication protocols regarding available bandwidth and reliability. WSANs based on 6LoWPAN allow to use IPv6 within most constrained wireless networks with global end-to-end connectivity between smart objects. The multicasting capabilities of IPv6 are mostly neglected in state of the art implementations of 6LoWPAN due to the limited scenarios within wireless sensor networks (WSNs). This paper presents a concept of a Web service based communication stack that uses transient link-local IPv6 multicast addresses for process data exchange between sensors and actuators by binding a shared network variable to the IPv6 multicast address. It will be shown how this concept allows devices to efficiently interact in a peer-to-peer interaction style without the need of a central controller. Furthermore, it will be sketched how the engineering process of control logic can be simplified through this approach. Finally, a reference implementation based on Contiki is presented accompanied with simulation results that compare traditional client/server based communication with the novel interaction mechanism analyzing the scalability effects on a WSAN.
机译:无线传感器和执行器网络(WSAN)将在未来的物联网中扮演重要角色。无线通信是一个重要的推动力,它可以简化部署并降低安装成本,但对使用的通信协议施加了有关可用带宽和可靠性的严格约束。基于6LoWPAN的WSAN允许在大多数受约束的无线网络中使用IPv6,并在智能对象之间建立全局端到端连接。由于无线传感器网络(WSN)的局限性,在6LoWPAN的最新实现中,IPv6的多播功能通常被忽略。本文提出了一种基于Web服务的通信堆栈的概念,该堆栈使用临时链接本地IPv6多播地址,通过将共享的网络变量绑定到IPv6多播地址来在传感器和执行器之间进行过程数据交换。将显示该概念如何允许设备以对等交互方式有效地交互,而无需中央控制器。此外,将概述如何通过这种方法简化控制逻辑的工程过程。最后,提出了基于Contiki的参考实现以及仿真结果,该仿真结果将传统的基于客户端/服务器的通信与新颖的交互机制进行了比较,分析了对WSAN的可伸缩性影响。

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