用于远程低功耗监测的新型无线传感器网络硬件

J. Frigo, Hudson Ayers, V. Kulathumani, Shawn Hinzey, S. Sevanto, Michael Priocou, Xiougang Yang, K. McCabe, A. Saari, Kari Sentz
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引用次数: 1

摘要

环境监测应用通常需要在恶劣的、低资源(如电力和通信)环境中进行24/7全天候运行,并在大面积区域内部署传感器。传感器的数据处理需要最小化通信开销。这种应用场景为无线传感器网络(WSN)的研究提供了机会,与现有的商用现货(COTS)解决方案不同。我们提出了一种新颖的模块化,高度灵活的硬件解决方案,其核心功能是片上系统(SoC),具有存储器,接口和不同传输输入/输出I/O模式等附加组件。该系统可以在远距离(当前实现中节点之间19公里)的自修复、自形成网状网络中直接管理、处理和传输数据,也可以作为独立系统。硬件已经生产出来,系统已经在实际部署中进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel WSN Hardware for Long Range Low Power Monitoring
Environmental monitoring applications often require 24/7 operation in harsh, low resource (e.g. power and communication) environments over a large scale area with ad-hoc deployment of sensors. Data processing at the sensor is required to minimize communication overhead. Such an application scenario presents opportunities for research in wireless sensor networks (WSN)s that are distinct from existing commercial off-the-shelf (COTS) solutions. We present a novel modular, highly flexible, hardware solution with a core feature of a System on a Chip (SoC) with add-ons such as memories, interfaces, and different transmission input/output I/O modalities. The system can manage, process, and transmit data directly within an ad-hoc self healing, self forming, mesh network over long distance (19 km between nodes in the current implementation) or as a stand-alone system. Hardware has been produced and the system has been validated in real-world deployments.
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