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A Search into a Suitable Channel Access Control Protocol for LoRa-Based Networks

机译:基于LoRa的网络的合适的信道访问控制协议的搜索

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Low-power wide-area networking (LPWAN) has gained much attention recently and offers significant potential to support a large number of Internet of Things (IoT) applications. For device simplicity, LPWANs tend to use a simple channel access control protocol such as Aloha, which impacts performance. While several LPWAN technologies are available, we specifically focus on the Long Range (LoRa) in this paper. Our goal in this study is to search for a channel access control protocol in conjunction with the LoRa physical layer that can improve network performance in terms of reliability, throughput, energy consumption, and yet retain simplicity. We analyze a range of channel access control protocols, such as pure Aloha, delay before transmit, random frequency hopping, and carrier sense multiple access (CSMA). Our experiments use available periodic and event-based data traffic generation models for Internet of Things applications. Our results show that, CSMA and random frequency hopping demonstrate significantly better performance for both periodic and event-based data traffic models. Moreover, CSMA also exhibits scalability features in terms of the number of nodes in a network and data traffic generation models.
机译:低功耗广域网(LPWAN)最近备受关注,并为支持大量的物联网(IoT)应用程序提供了巨大的潜力。为了简化设备,LPWAN倾向于使用简单的通道访问控制协议(例如Aloha),这会影响性能。尽管有几种LPWAN技术可用,但我们在本文中特别关注远程(LoRa)。我们在这项研究中的目标是与LoRa物理层一起搜索信道访问控制协议,该协议可以提高网络性能的可靠性,吞吐量,能耗并保持简单性。我们分析了一系列信道访问控制协议,例如纯Aloha,传输前延迟,随机跳频和载波侦听多路访问(CSMA)。我们的实验将可用的定期和基于事件的数据流量生成模型用于物联网应用程序。我们的结果表明,对于周期性和基于事件的数据流量模型,CSMA和随机跳频都表现出明显更好的性能。此外,就网络中的节点数量和数据流量生成模型而言,CSMA还展示了可伸缩性功能。

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