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5G Contender Waveforms for Low Power Wide Area Networks in a 4G OFDM Framework

机译:5G用于4G OFDM框架中的低功耗广域网的竞争者波形

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When designing new solutions for Low Power Wide Area (LPWA) networks, coexistence and integration into existing 4G frameworks should be considered to ease the deployment procedure and reduce costs. In a previous work, Turbo-Frequency Shift Keying (FSK) was proposed as a potential physical layer for LPWA networks. We propose to study the system in the Orthogonal Frequency Division Multiplexing (OFDM) framework, currently used by existing cellular networks and also considered for the recently standardized Narrow-Band loT. The new architectures of the Turbo-Fsktransmitter and receiver are presented. Simulations are run under various conditions including Rayleigh fading channel with mobility, demonstrating the Turbo-FSK scheme to achieve performance close to Turbo-Coded OFDM. The scheme also exhibits a constant envelope, which may multiply the Power Amplifier (PA) efficiency by up to a factor of 2 and makes the solution a promising candidate for 5G LPWA transmission.
机译:在为低功耗广域(LPWA)网络(LPWA)网络设计新解决方案时,应考虑共存和集成到现有的4G框架中,以简化部署程序并降低成本。在先前的工作中,提出了涡轮频移键控(FSK)作为LPWA网络的潜在物理层。我们建议研究现有蜂窝网络目前使用的正交频分复用(OFDM)框架中的系统,并考虑最近标准化的窄带批次。提出了Turbo-fsktransmitter和接收器的新架构。模拟在包括具有移动性的瑞利衰落通道的各种条件下运行,展示Turbo-FSK方案,以实现接近Turbo编码的OFDM的性能。该方案还表现出恒定的信封,其可以将功率放大器(PA)效率乘以2倍,并使解决方案成为5G LPWA传输的有希望的候选者。

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