SmartGate – connecting wireless sensor nodes to the Internet

IF 0.7 Q4 INSTRUMENTS & INSTRUMENTATION Journal of Sensors and Sensor Systems Pub Date : 2013-05-03 DOI:10.5194/JSSS-2-45-2013
G. U. Gamm, S. Sester, L. Reindl
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引用次数: 8

Abstract

Abstract. Wireless sensor nodes inside buildings are used to read out sensor data and to control actuators. The nodes need to operate for a long time with a single battery. Often the sensor data should be accessible via Internet from every point of the world. When using a standard Wi-Fi connection, the battery of the node would be depleted after a few hours due to idle currents in receive state. Using sensor nodes with included wake-up receivers can prolong the lifetime of the sensor network to several years. However, no gateway exists that can, on the one hand, connect itself to the Internet and on the other hand can send out the special coded wake-up signal needed by the wake-up receivers on the nodes. In this work we want to bridge this gap by introducing the SmartGate. It is a gateway that has two transceivers incorporated on a single printed circuit board (PCB). A Wi-Fi module connects itself to an existing Wi-Fi network and listens for incoming messages. A CC430 microcontroller analyzes the incoming Wi-Fi messages and builds up the corresponding wake-up signal with included 16-bit address coding. The wake-up signal is sent out using the integrated CC1101 transceiver core from Texas Instruments. A woken-up node will read out its sensor data and will transmit it back to the gateway, where it will be packed into a TCP/IP packet and sent back to the user. The use of the gateway allows the implementation of a wireless sensor network with wake-up receivers that can be accessed via Internet from every point of the world.
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智能门——将无线传感器节点连接到互联网
摘要建筑物内的无线传感器节点用于读取传感器数据并控制执行器。节点需要单节电池长时间运行。通常,传感器的数据应该可以通过互联网从世界的每一个点访问。当使用标准Wi-Fi连接时,由于接收状态的空闲电流,节点的电池将在几个小时后耗尽。使用包含唤醒接收器的传感器节点可以将传感器网络的使用寿命延长到几年。然而,目前还没有一种网关既能将自身连接到Internet,又能向节点上的唤醒接收器发出其所需要的特殊编码唤醒信号。在这项工作中,我们希望通过引入智能门来弥合这一差距。它是一种网关,在一个印刷电路板(PCB)上集成了两个收发器。Wi-Fi模块将自己连接到现有的Wi-Fi网络,并监听传入的信息。CC430微控制器分析传入的Wi-Fi消息,并通过包含16位地址编码构建相应的唤醒信号。唤醒信号使用德州仪器集成的CC1101收发器核心发送。唤醒节点将读取其传感器数据并将其传输回网关,在网关中它将被打包成TCP/IP数据包并发送回用户。该网关的使用允许实现具有唤醒接收器的无线传感器网络,该接收器可以通过互联网从世界的每个点访问。
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来源期刊
Journal of Sensors and Sensor Systems
Journal of Sensors and Sensor Systems INSTRUMENTS & INSTRUMENTATION-
CiteScore
2.30
自引率
10.00%
发文量
26
审稿时长
23 weeks
期刊介绍: Journal of Sensors and Sensor Systems (JSSS) is an international open-access journal dedicated to science, application, and advancement of sensors and sensors as part of measurement systems. The emphasis is on sensor principles and phenomena, measuring systems, sensor technologies, and applications. The goal of JSSS is to provide a platform for scientists and professionals in academia – as well as for developers, engineers, and users – to discuss new developments and advancements in sensors and sensor systems.
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