A multi-storey building actuator and sensor system using 6L0WPAN based Internet of Things: Practical design and implementation

Minh-Thanh Vo, Ngoc-Hung Do, Van-Su Tran, Quang-Khanh Ma, Chi-Thong Le, Linh Mai
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引用次数: 5

Abstract

The development of IPv6 has enabled the idea of IP-based Internet of Things where the every embedded device connected to the Internet has its unique IPv6 address. 6LoWPAN is proposed and defined by Internet Engineering Task Force (IETF) to be an adaption layer to apply IPv6 to the IEEE 802.15.4 standard, which allows direct access to control and monitor smart devices from over the world through Internet. 6LoWPAN-based Internet of Things technology is a scalable system which can help to lower expense and decrease the complexity of smart building monitoring and controlling system. This paper describes the design and implementation of a multi-storey building actuator and sensor system using 6LoWPAN-based Internet of Things. The system consists of low-power wireless building network based on 6LoWPAN using Contiki real-time operating system and COAP application protocol. The building HTTP-COAP proxy is implemented in gateway node provides an efficient data packet transferring which makes the system scalable and accessible to the world based on Ethernet or Wi-Fi Medium. A prototype smart building system has been implemented and evaluated in real multi-storey building environment which has the functions to monitor and control the electrical usage in the smart building. The testing results show that 6LoWPAN-based Internet of Things is a good solution for scalable actuator and sensor networks which can be applied not only multi-storey smart building but also for large scale smart city.
基于6L0WPAN的多层建筑物联网致动器和传感器系统的实用设计与实现
IPv6的发展使基于ip的物联网成为可能,每个连接到互联网的嵌入式设备都有其唯一的IPv6地址。6LoWPAN是由IETF (Internet Engineering Task Force, Internet工程任务组)提出并定义的,作为将IPv6应用于IEEE 802.15.4标准的自适应层,允许通过Internet直接访问来自世界各地的控制和监控智能设备。6LoWPAN基于物联网技术是一种可扩展的系统,有助于降低智能楼宇监控系统的成本和复杂性。本文介绍了一种基于6lowpan的物联网多层建筑致动器和传感器系统的设计与实现。该系统由基于6LoWPAN的低功耗无线楼宇网络组成,采用Contiki实时操作系统和COAP应用协议。在网关节点上实现的楼宇HTTP-COAP代理提供了一种高效的数据包传输,使系统具有可扩展性和基于以太网或Wi-Fi介质的可访问性。在真实的多层建筑环境中,实现了一个具有智能建筑用电监测和控制功能的智能建筑原型系统。测试结果表明,基于6lowpan的物联网是可扩展执行器和传感器网络的良好解决方案,不仅适用于多层智能建筑,也适用于大型智慧城市。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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