In this paper, we investigate performance improvements of low-power long-range (LoRa) modulation when a gateway is equipped with multiple antennas. We derive the optimal decision rules for both coherent and non-coherent detections when combining signals received from multiple antennas. To provide insights on how signal combining can benefit LoRa systems, we present expressions of the symbol/bit error probabilities of both the coherent and non-coherent detections in AWGN and Rayleigh fading channels, respectively. Moreover, we also propose an iterative semi-coherent detection that does not require any overhead to estimate the channel-state-information (CSI) while its performance can approach that of the ideal coherent detection. Simulation and analytical results show very large power gains, or coverage extension, provided by the use of multiple antennas for all the detection schemes considered.
翻译:在本文中,我们调查低功率长程调制(LoRa)在网关配备多天线时的性能改进情况;在综合从多天线收到的信号时,我们为连贯和非连贯的检测得出最佳决定规则;为了深入了解信号结合如何有利于LoRa系统,我们分别展示了在AWGN和Rayleigh 流放渠道中连贯和非连贯的检测的符号/误差概率。此外,我们还提议采用迭接半一致的检测方法,不要求任何间接费用来估计频道状态信息,而其性能可以接近理想的连贯检测。模拟和分析结果显示,在所有考虑的检测方案中使用多天线可以带来巨大的能量增益或覆盖范围扩大。