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Energy efficient peak power reduction in OFDM with amplitude predistortion aided by orthogonal pilots

机译:正交导频辅助幅度预失真的OFDM节能峰值功率降低

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摘要

The high Peak-to-Average Power Ratio (PAPR) is a main drawback of Orthogonal Frequency Division Multiplexing (OFDM) systems. We propose a twostep technique to reduce the PAPR consisting of a metricbased constellation extension method, such as Simple Amplitude Predistortion (SAP) algorithm, aided by Orthogonal Pilot Sequences (OPS) in a previous step, where we also provide a low-complex implementation of OPS scheme. We show that our proposal, named OP-SAP, outperforms previous approaches in terms of PAPR reduction, due to joining the benefits of Orthogonal Pilots with SAP algorithm. Moreover, it is energy efficient within two aspects: transmitted energy and implementation energy. OP-SAP saves up to 57% of transmitted energy per predistorted symbol compared to SAP. Regarding implementation energy, PAPR reduction techniques introduce some additional computational complexity, which requires extra cycles in the processor that demand energy consumption. We present an exhaustive analysis on computational power cost that shows the low power consumption of OP-SAP compared to other methods as SeLected Mapping (SLM), what yields a remarkable energy saving in its practical implementation1.
机译:高峰均功率比(PAPR)是正交频分复用(OFDM)系统的主要缺点。我们提出了一种降低PAPR的两步技术,该技术由基于度量的星座扩展方法组成,例如在上一步的正交导频序列(OPS)的辅助下的简单振幅预失真(SAP)算法,在该方法中,我们还提供了一种低复杂度的实现OPS方案。我们表明,由于将正交飞行员与SAP算法的优势结合在一起,因此我们的提案OP-SAP在降低PAPR方面优于以前的方法。此外,它在两个方面都是节能的:传输的能量和实现的能量。与SAP相比,OP-SAP每个预失真符号最多可节省57%的传输能量。关于实现能源,PAPR降低技术引入了一些额外的计算复杂性,这需要处理器中需要能源消耗的额外周期。我们对计算功率成本进行了详尽的分析,表明与其他方法(如“选择映射”(SLM))相比,OP-SAP的功耗较低,因此在其实际实现中可以节省大量能源 1

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