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A Novel PTS Technique with Combinative Optimization in Real Part and Imaginary Part for PAPR Reduction in OFDM Systems

机译:一种新型PTS技术,具有在OFDM系统中的实验和虚部的模拟优化

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Partial transmit sequence (PTS) scheme is an attractive technique for peak-to-average power ratio (PAPR) reduction in orthogonal frequency division multiplexing (OFDM) systems. However it needs many candidates to obtain preferable PAPR performance, which will result in high computational complexity. In order to alleviate the problem, this paper proposes a novel partial transmit sequence (PTS) technique, in which real and imaginary parts of the candidate are separately multiplied with phase factors, moreover, PAPR is conjointly optimized in real part and imaginary part. In this scheme, the number of candidates is increased so that the PAPR performance is improved with less increase of complexity. Simulation results show that the PAPR performance of the proposed scheme is better than that of the conventional PTS scheme. Furthermore, compared with widely-linear selective mapping (SLM) scheme, the proposed scheme has the near PAPR performance and lower computational complexity for the same number of candidates.
机译:部分发射序列(PTS)方案是用于峰平均功率比(PAPR)减少正交频分复用(OFDM)系统的吸引力技术。然而,它需要许多候选人来获得优选的PAPR性能,这将导致高计算复杂性。为了减轻该问题,本文提出了一种新的部分发射序列(PTS)技术,其中候选的实部和虚部分别乘以阶段因子,而PAPR在真实部件和虚部中结合优化。在该方案中,增加了候选者的数量,以便PAPR性能随着复杂性的增加而改善。仿真结果表明,所提出的方案的PAPR性能优于传统PTS方案。此外,与广泛的线性选择性映射(SLM)方案相比,所提出的方案具有接近PAPR性能和相同数量的候选数量的计算复杂性。

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