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首页> 外文期刊>IEEE Transactions on Broadcasting >Low-Complexity Blind PAPR Reduction for OFDM Systems With Rotated Constellations
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Low-Complexity Blind PAPR Reduction for OFDM Systems With Rotated Constellations

机译:具有旋转星座的OFDM系统的低复杂度盲PAPR减少

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The high Peak-to-Average Power Ratio (PAPR) of Orthogonal Frequency Division Multiplexing (OFDM) signals leads to a serious system performance degradation. To work around this issue, several algorithms have been proposed in the literature to reduce the PAPR, but, they often suffer from multiple limitations; in particular, the main issue with interleaving techniques is the spectral efficiency loss, as the transmission of a Side Information (SI) is generally required. In contrast to previous works, this article proposes a blind interleaving technique for OFDM systems with signal space diversity. Indeed, with Rotated and Cyclically Q-Delayed (RCQD) constellations, the In-phase (I) and Quadrature (Q) components of constellations symbols are correlated, which allows the receiver to estimate the interleaver index without any SI. Moreover, to lower down the complexity burden at the receiver side, we first design a blind decoder based on the Minimum Mean Square Error (MMSE) criterion and we then propose a low complexity decoder for the Uniformly Projected RCQD (UP-RCQD) QAM, as this constellation has several interesting structural properties and achieves near optimum BER performance. Simulation results show that our proposal leads to a large PAPR reduction and to a near optimum BER performance that outperforms, over various channels, the solution currently used in DVB-T2. They also underline the good performance of the blind decoding performed with up to 98 of complexity reduction compared to the max-log Maximum Likelihood (ML) estimation.
机译:正交频分复用 (OFDM) 信号的高峰均功率比 (PAPR) 会导致严重的系统性能下降。为了解决这个问题,文献中提出了几种算法来减少 PAPR,但是,它们通常存在多种限制;特别是,交错技术的主要问题是频谱效率损失,因为通常需要传输侧信息(SI)。与以往的工作相比,本文提出了一种具有信号空间分集的OFDM系统的盲交错技术。事实上,对于旋转和周期性 Q 延迟 (RCQD) 星座,星座符号的同相 (I) 和正交 (Q) 分量是相关的,这使得接收器可以在没有任何 SI 的情况下估计交织指数。此外,为了降低接收端的复杂度负担,我们首先设计了一个基于最小均方误差(MMSE)准则的盲解码器,然后我们提出了一个用于均匀投影RCQD(UP-RCQD)QAM的低复杂度解码器,因为该星座具有几个有趣的结构特性,并实现了接近最佳的BER性能。仿真结果表明,我们的方案可大幅降低PAPR,并实现近乎最佳的误码率性能,在各种通道上优于目前用于DVB-T2的解决方案。它们还强调了盲解码的良好性能,与最大对数最大似然 (ML) 估计相比,复杂度降低了 98%。

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