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A Bluetooth-based Sensor Node for Low-Power Ad Hoc Networks

机译:基于蓝牙的传感器节点,用于低功耗Ad Hoc网络

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—TCP/IP has recently taken promising steps toward being a viable communication architecture for networked sensor nodes. Furthermore, the use of Bluetooth can enable a wide range of new applications, and in this article, an overview of the performance and characteristics of a networked sensor node based on TCP/IP and Bluetooth is presented. The number of Bluetooth-enabled consumer devices on the market is increasing, which gives Bluetooth an advantage compared to other radio technologies from an interoperability point of view. However, this excellent ability to communicate introduces disadvantages since neither TCP/IP nor Bluetooth were designed with resource-constrained sensor nodes in mind. We, however, argue that the constraints imposed by general purpose protocols and technologies can be greatly reduced by exploiting characteristics of the communication scheme in use and efficient and extensive use of available low-power modes. Furthermore, we claim that a Bluetooth-enabled networked sensor node can achieve an operating lifetime in the range of years using a total volume of less than 10 cm3. The Mulle Embedded Internet System (EIS), along with its advanced power management architecture, is presented as a case-study to support the claims.
机译:-TCP / IP最近对网络传感器节点的可行通信架构进行了有希望的步骤。此外,使用蓝牙可以实现各种新应用,并且在本文中,介绍了基于TCP / IP和蓝牙的网络传感器节点的性能和特性的概述。市场上的蓝牙消费设备数量正在增加,这为蓝牙提供了与来自互操作性视角的其他无线电技术相比的优势。然而,这种良好的沟通能力引入了缺点,因为TCP / IP和蓝牙都没有考虑有资源受限的传感器节点。然而,我们认为,通过利用在使用中的通信方案的特征和高效使用可用的低功耗模式,可以大大降低通用协议和技术所施加的限制。此外,我们声称启用蓝牙的联网传感器节点可以使用小于10cm3的总体积在多年的范围内实现工作寿命。默诺嵌入式互联网系统(EIS)以及其先进的电源管理架构,作为支持权利要求的情况。

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