Peak-to-Average Power Ratio reduction in OTFS modulation using companding technique

C. Naveen, V. Sudha
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引用次数: 19

Abstract

OTFS (Orthogonal Time Frequency & Space) is one of the recent 2D modulation scheme suitable for 5G.In which information symbols in the delay-Doppler grid of N×M are multiplexed over new class of carrier waveforms, which are localized pulses represented in delay-Doppler domain. Where M represents number of delay bins and N represents number of Doppler bins. For smaller values of N the PAPR of OTFS is lower than the OFDM but as the N value increases PAPR of OTFS and OFDM are almost same. In order to decrease the PAPR of OTFS for higher values of N (N>4), we have proposed a conventional MuLaw companding technique, which will reduce the PAPR of OTFS by 2.5dB with respect to original OTFS signal with slight degradation in bit error rate(BER) performance. The MATLAB simulation is carried out for different values of companding factor(µ) and CCDF of PAPR of OTFS and BER is plotted. The optimal value of companding factor(µ) is found from simulation results.
利用扩压技术降低OTFS调制的峰均功率比
OTFS (Orthogonal Time - Frequency & Space,正交时频空间)是最近出现的一种适用于5G的二维调制方案。其中N×M延迟多普勒网格中的信息符号在一类新的载波形式上复用,这些载波形式是在延迟多普勒域中表示的局部脉冲。其中,M表示延迟箱数,N表示多普勒箱数。当N值较小时,OTFS的PAPR低于OFDM,但随着N值的增大,OTFS和OFDM的PAPR几乎相同。为了在较高的N值(N bbbb4)下降低OTFS的PAPR,我们提出了一种传统的MuLaw扩宽技术,该技术将使OTFS的PAPR相对于原始OTFS信号降低2.5dB,同时误码率(BER)性能略有下降。对不同的压缩因子(µ)值进行了MATLAB仿真,绘制了OTFS和BER的PAPR的CCDF。从仿真结果中找到了压缩系数µ的最优值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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