Practical limitations for deployment of LoRa gateways

Albert Pötsch, Florian Haslhofer
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引用次数: 22

Abstract

In this paper, we discuss the upcoming network stack LoRaWAN and its underlying modulation technology LoRa, which is an implementation of a LPWAN (Low Power Wide Area Network) and consider practical limitations that can occur when restricted Machine-to-Machine (M2M) data agreements for the connection of LoRa gateways to a cellular network are involved. We provide a theoretical estimate of the maximum possible communication range of a LoRa link depending on output power and spreading factor and illustrate a LoRa-transceiver's contrary behaviour of energy consumption and range versus the achievable data rate by means of current consumption and RF output power measurement results for different combinations of modulation parameters. Our analysis of the data overhead introduced by LoRa gateways identifies that the amount of generated backhaul network traffic can cause substantial costs for IoT service providers in case of cellular-connected gateways or limit the number of supported sensor nodes.
部署LoRa网关的实际限制
在本文中,我们讨论了即将到来的网络堆栈LoRaWAN及其底层调制技术LoRa,这是LPWAN(低功率广域网)的实现,并考虑了当涉及LoRa网关连接到蜂窝网络时受限制的机器对机器(M2M)数据协议时可能发生的实际限制。我们根据输出功率和扩频因子对LoRa链路的最大可能通信范围进行了理论估计,并通过不同调制参数组合的电流消耗和RF输出功率测量结果,说明了LoRa收发器的能耗和范围与可实现的数据速率的相反行为。我们对LoRa网关引入的数据开销的分析表明,在蜂窝连接网关的情况下,生成的回程网络流量可能会给物联网服务提供商带来巨大的成本,或者限制支持的传感器节点的数量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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