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Advanced SLM scheme based on discrete forest optimization algorithm for PAPR minimization in UFMC waveform

机译:基于离散林优化算法的高级SLM方案,用于uFMC波形PAPR最小化

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摘要

Inherent multicarrier transmission mechanism of the universal filtered multicarrier (UFMC) waveform engenders the problem of high peak-to-average power ratio (PAPR). Since it is impossible for a nonlinear high power amplifier (HPA) to execute a distortionless amplification unless the PAPR of transmission signal is below an acceptable level, eliminating the aforementioned PAPR drawback in UFMC waveform is so critical for smooth communication. With this in mind, we developed a new selective mapping (SLM) scheme based on discrete forest optimization algorithm (DFOA) for the UFMC waveform. The related scheme was created by embedding the DFOA into the conventional SLM with the intention of optimizing the values of phase factors by which the phase rotation process is carried out in frequency domain to reduce the PAPR of eventual time domain signal attained from the SLM output. It is confirmed via the simulations that, remarkable PAPR improvements are achieved through the DFOA-SLM scheme in the UFMC signal thanks to the DFOA-supported search for the optimal sequence of phase factors instead of classical random search strategy inherent in the conventional SLM method.
机译:通用滤波多载波(UFMC)波形的固有多载波传输机制参与了高峰平均功率比(PAPR)的问题。由于非线性高功率放大器(HPA)不可能执行无失真放大,除非传输信号的PAPR低于可接受的水平,消除了UFMC波形中的上述PAPR缺点对于平滑通信是如此重要。考虑到这一点,我们开发了一种基于UFMC波形的离散林优化算法(DFOA)的新选择性映射(SLM)方案。通过将DFOA嵌入到传统的SLM中,以优化相位旋转过程在频域中执行的相位因子的值来创建相关方案,以减少从SLM输出获得的最终时域信号的PAPR。它通过模拟确认,通过UFMC信号中的DFOA-SLM方案来实现了显着的PAPR改进,这归功于DFOA支持的搜索最佳阶段因子的最佳序列,而不是传统的SLM方法固有的经典随机搜索策略。

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