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引用次数: 205

摘要

低功耗广域网(LPWAN)技术,如远程(LoRa)正在兴起,实现了长距离的节能无线通信。LPWAN设备通常直接与汇聚节点通信,这样就不需要构建和维护复杂的多跳网络。然而,为了保证高效可靠的通信,LPWAN设备往往会提供大量的传输参数。例如,可以将LoRa设备配置为使用不同的扩展因子、带宽设置、编码速率和传输功率,从而产生超过6720种可能的设置。在满足要求的通信性能的同时,确定最小传输能量成本的设置是一个挑战。本文首次深入分析了LoRa传输参数选择对通信性能的影响。详细研究了参数设置对能耗和通信可靠性的影响。利用这项研究,我们开发了一种链路探测机制,使我们能够快速确定满足性能要求的传输设置。所提出的工作是向部署的LoRa网络所需的LoRa传输参数选择自动化机制迈出的第一步,但尚未在远程广域网(LoRaWAN)框架中指定。
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LoRa Transmission Parameter Selection
Low-Power Wide-Area Network (LPWAN) technologies such as Long Range (LoRa) are emerging that enable power efficient wireless communication over very long distances. LPWAN devices typically communicate directly to a sink node which removes the need of constructing and maintaining a complex multi-hop network. However, to ensure efficient and reliable communication LPWAN devices often provide a large number of transmission parameters. For example, a LoRa device can be configured to use different spreading factors, bandwidth settings, coding rates and transmission powers, resulting in over 6720 possible settings. It is a challenge to determine the setting that minimises transmission energy cost while meeting the required communication performance. This paper is the first to present a thorough analysis of the impact of LoRa transmission parameter selection on communication performance. We study in detail the impact of parameter settings on energy consumption and communication reliability. Using this study we develop a link probing regime which enables us to quickly determine transmission settings that satisfy performance requirements. The presented work is a first step towards an automated mechanism for LoRa transmission parameter selection that a deployed LoRa network requires, but is not yet specified within the Long Range Wide Area Network (LoRaWAN) framework.
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