论文标题

物联网通信的同期和正交chirp扩展频谱

In-phase and Quadrature Chirp Spread Spectrum for IoT Communications

论文作者

de Almeida, Ivo Bizon Franco, Chafii, Marwa, Nimr, Ahmad, Fettweis, Gerhard

论文摘要

本文介绍了基于远程(Lora)物理层(PHY)框架的连贯的CHIRP扩散光谱(CSS)技术。 Lora PHY在频移键合(FSK)的顶部使用CSS,并且在接收器上使用非连锁检测来获得传输的数据符号。在本文中,我们提出了一个方案,该方案对CHIRP信号的同相内和正交组件进行编码,而不是在接收器上使用相干检测器。因此,需要通道均衡来补偿发射信号上的通道引起的相位旋转。此外,一种简单的通道估计技术利用用于同步的LORA参考序列,以获得均衡器中使用的复杂通道系数。使用数值模拟的性能评估表明,所提出的方案在能效方面可实现约1 dB的增长,并且与常规的Lora PHY方案相比,光谱效率翻了一番。这是由于相干接收器能够利用传输信号的同相和正交组件之间的正交性。

This paper describes a coherent chirp spread spectrum (CSS) technique based on the Long-Range (LoRa) physical layer (PHY) framework. LoRa PHY employs CSS on top of a variant of frequency shift keying (FSK), and non-coherent detection is employed at the receiver for obtaining the transmitted data symbols. In this paper, we propose a scheme that encodes information bits on both in-phase and quadrature components of the chirp signal, and rather employs a coherent detector at the receiver. Hence, channel equalization is required for compensating the channel induced phase rotation on the transmit signal. Moreover, a simple channel estimation technique exploits the LoRa reference sequences used for synchronization to obtain the complex channel coefficient used in the equalizer. Performance evaluation using numerical simulation shows that the proposed scheme achieves approximately 1 dB gain in terms of energy efficiency, and it doubles the spectral efficiency when compared to the conventional LoRa PHY scheme. This is due to the fact that the coherent receiver is able to exploit the orthogonality between in-phase and quadrature components of the transmit signal.

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