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A Low PAPR DHT Precoding Based UFMC Scheme for 5G Communication Systems

机译:适用于5G通信系统的基于低PAPR DHT预编码的UFMC方案

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Universal Filtered Multi-Carriers (UFMC) has become one of the promising modulation scheme for upcoming 5G Communication Systems due to its robustness against multiuser interference and short burst support. However, UFMC systems faces a challenging problem in the form of high Peak-to-Average Power Ratio (PAPR). The high PAPR value downplays the efficiency of UFMC transmitter. To counter the high PAPR value, in this paper, a low PAPR Discrete-Hartley Transform Precoding based UFMC (DHT-P-UFMC) scheme has been proposed and analyzed through Monte-Carlo simulations. The simulation results indicate that the proposed DHT-P-UFMC system has low PAPR as compared to the Selected-Mapping (SLM) based UFMC system and the conventional UFMC system available in the literature. The proposed scheme is based on a linear precoding, hence, it does not require any kind of side information or complex optimizations.
机译:通用滤波多载波(UFMC)由于其对多用户干扰和短脉冲支持的鲁棒性,已成为即将到来的5G通信系统的有希望的调制方案之一。但是,UFMC系统以高峰均功率比(PAPR)的形式面临挑战性问题。高PAPR值会降低UFMC发送器的效率。为了应对较高的PAPR值,本文提出了一种基于PAPR离散-Hartley变换预编码的UFMC(DHT-P-UFMC)方案,并通过Monte-Carlo仿真对其进行了分析。仿真结果表明,与基于选择映射(SLM)的UFMC系统和文献中提供的常规UFMC系统相比,提出的DHT-P-UFMC系统具有较低的PAPR。所提出的方案基于线性预编码,因此,它不需要任何种类的辅助信息或复杂的优化。

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