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Performance Analysis Comparison between LoRa and Frequency Hopping-based LPWAN

机译:洛拉与跳频基于LPWAN的性能分析比较

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The number of Internet of Things (IoT) devices are increasing exponentially as the demand for data is driving to days market. Consequently, the need for testing and implementing new technologies is inevitable to be able to adapt to the growing number of devices and applications' needs. IoT mainly relies on Low Power Wide Area Networks (LPWANs). Different LPWAN technologies have distinctive performance metrics in terms of latency, throughput, covered distances, etc. Therefore, the choice of the IoT connectivity option is crucial to satisfy the precise needs of heterogeneous applications and network deployments. Among various LPWANs, LoRa-LPWAN stands out due to upright synthesis of optimized battery lifetime, long communication range and cost. LoRa Physical layer chiefly relies on chirp spread spectrum modulation with six spreading factors, while LoRaWAN MAC protocol imposes exploiting random channel frequency-hopping for each transmission using unlicensed frequency bands. Thus, the adopted CSS modulation operating on top LoRaWAN is analogical to frequency-hopping based modulation. Given the akin medium access behaviour of exploiting frequency-hopping prompted by different layers in each system, this paper provides a data-driven comparison between LoRa and a variant of frequency-hopping based modulation; Telegram Splitting Multiple Access. Network performance comparison is conducted through system level simulations using multiple IoT applications.
机译:物联网的数量(IOT)设备作为数据的需求正在推动以天市场呈指数级增长。因此,需要进行测试和实施新技术是必然的,能够适应越来越多的设备和应用的需求的。物联网主要依赖于低功耗广域网(LPWANs)。不同LPWAN技术有延迟,吞吐量,覆盖距离等方面的独特性能指标。因此,物联网连接选项的选择,以满足异构应用程序和网络部署的具体需求是至关重要的。在各种LPWANs,洛拉-LPWAN脱颖而出由于优化的电池寿命,长通信范围和成本的直立合成。洛拉物理层主要依赖于具有六个扩频因子线性调频扩频调制,而LoRaWAN MAC协议强加利用随机信道跳频使用未经许可的频带的每个传输。因此,所采用的CSS调制顶部LoRaWAN操作是类比至跳频基于调制。鉴于利用跳频通过在每个系统不同的层提示的类似介质访问行为,本文提供LORA和跳频基于调制的变体之间的数据驱动的比较;电报分割多路访问。网络性能对比,通过使用多个的IoT应用系统级仿真中进行。

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