The recent advancement of the Internet of Things (IoT) enables the possibility of data collection from diverse environments using IoT devices. However, despite the rapid advancement of low-power communication technologies, the deployment of IoT networks still faces many challenges. In this paper, we propose a hybrid, low-power, wide-area network (LPWAN) structure that can achieve wide-area communication coverage and low power consumption on IoT devices by utilizing both sub-GHz long-range radio and 2.4 GHz short-range radio. Specifically, we constructed a low-power mesh network with LoRa, a physical-layer standard that can provide long-range (kilometers) point-to-point communication using custom time-division multiple access (TDMA). Furthermore, we extended the capabilities of the mesh network by enabling ANT, an ultra-low-power, short-range communication protocol to satisfy data collection in dense device deployments. Third, we demonstrate the performance of the hybrid network with two real-world deployments at the Purdue University campus and at the university-owned farm. The results suggest that both networks have superior advantages in terms of cost, coverage, and power consumption vis-\`a-vis other IoT solutions, like LoRaWAN.
翻译:最近,互联网“物联网”(IoT)的发展使利用IoT设备从不同环境中收集数据成为可能。然而,尽管低功率通信技术迅速发展,但IoT网络的部署仍面临许多挑战。在本文件中,我们提议建立一个混合、低功率、广域网(LPWAN)结构,通过利用超GHz远程无线电和2.4GHz短程无线电,实现广域通信覆盖面和低电耗使用IoT设备。具体地说,我们与LoRa建立了低功率网网,这是一个物理级标准,能够利用定制的时视多重接入(TDMA)提供远程(千米计)点对点通信。此外,我们扩大了Mesh网络的能力,使ANT(超低功率、短程通信协议)能够满足密集装置部署中的数据收集。第三,我们展示了混合网络在Purdue大学校园和大学拥有的农场两处实际部署的两处的功能网的运作情况。结果显示,这两个网络在成本、成本覆盖范围和其他解决方案方面,如I-WAN(I)的优势。