Low-Power Wide-Area Network (LPWAN) is an enabling Internet-of-Things (IoT) technology that supports long-range, low-power, and low-cost connectivity to numerous devices. To avoid the crowd in the limited ISM band (where most LPWANs operate) and cost of licensed band, the recently proposed SNOW (Sensor Network over White Spaces) is a promising LPWAN platform that operates over the TV white spaces. As it is a very recent technology and is still in its infancy, the current SNOW implementation uses the USRP devices as LPWAN nodes, which has high costs (~$750 USD per device) and large form-factors, hindering its applicability in practical deployment. In this paper, we implement SNOW using low-cost, low form-factor, low-power, and widely available commercial off-the-shelf (COTS) devices to enable its practical and large-scale deployment. Our choice of the COTS device (TI CC13x0: CC1310 or CC1350) consequently brings down the cost and form-factor of a SNOW node by 25x and 10x, respectively. Such implementation of SNOW on the CC13x0 devices, however, faces a number of challenges to enable link reliability and communication range. Our implementation addresses these challenges by handling peak-to-average power ratio problem, channel state information estimation, carrier frequency offset estimation, and near-far power problem. Our deployment in the city of Detroit, Michigan demonstrates that CC13x0-based SNOW can achieve uplink and downlink throughputs of 11.2kbps and 4.8kbps per node, respectively, over a distance of 1km. Also, the overall throughput in the uplink increases linearly with the increase in the number of SNOW nodes.
翻译:LPWAN(LPWAN)是一个有希望的LPKWAN平台,它运行在电视白色空间上。由于它是一个非常新颖的技术,而且仍处于初级阶段,目前SNOW的实施工作将USRP装置用作LPWAN节点,它支持远程、低功率和低成本的多种装置连接。为了避免在有限的ISM频段(大多数LPWAN都在那里运行)和特许频段的成本中出现人群,最近提出的SNOW(白空传感器网络)是一个充满希望的LPWAN平台,它是一个在电视白色空间上运行的有希望的LPWAN(SNPWAN)平台。由于它是一个非常新的技术,而且仍处于初级阶段,因此,SNWOWO的SN1310或CC1350 电路段作为LPRPOW的节点点点点点点点点,它的成本(~750美元/美元)以及大量的窗体-电路路路段的运行成本和速度也通过SNWODRV的距离,使得我们SN-电路的电路的运行成本和速度增加。