提出了一种基于选择性映射(SLM)降低OFDM系统峰均功率比(PAPR)的自适应多级SLM(AMSLM)方法。该方法通过逐级实施选择性映射,各级采用不同的相位加权因子集合,使得级间候选向量之间的相关性降低,从而使PAPR性能获得了更大地改善;同时设定适当的门限值,若当前级所获得的PAPR最低值大于该门限值,则自动进入下一级优化过程,否则终止整个优化过程。仿真结果表明,与SLM方法相比,AMSLM方法可以获得几乎相同或者更好的PAPR性能,同时,计算复杂度明显降低,如当总级数为4时,AMSLM方法的计算复杂度较SLM降低了47.81%。
Based on selected mapping (SLM) for peak-to-average power ratio (PAPR) reduction in the OFDM system, an improved version, named adaptive multistage selected mapping (AMSLM) is proposed. By using different phase weighting factor sets and selected mapping in each stage, the property of correlation of candidate vectors in different stages is reduced, which improves the PAPR performance. Moreover, with the purpose of reducing the computational complexity, a proper threshold is introduced, where if the minimum value of PAPR obtained in the current stage is higher than the threshold, the optimization process for the next stage will continue; otherwise, the whole optimization process will be terminated. Simulation results show that, compared with SLM, the proposed AMSLM scheme has almost the same or better performance in PAPR reduction. Meanwhile, the computational complexity is reduced dramatically, where AMSLM with four stages outperforms SLM by 47.81% in computational complexity.