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Performance comparison of PRC based PAPR reduction schemes for WiLAN Systems

机译:基于PRI的PAPR减少方案对威兰系统的性能比较

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High Peak to Average Power Ratio (PAPR) is a main area of concern in multi-carrier communications as in Orthogonal Frequency Division Multiplexing (OFDM) modulated transmission. Several techniques have been devised to reduce the PAPR of the OFDM signal. One of these PAPR reduction techniques is based on Peak Reducing Carriers (PRC) concept where a set of sub-carriers is not used to transmit information but to reduce the temporal signal's peak. There exist different methods to generate the peak reducing carriers like Geometric method, Gradient method and Second Order Cone Programming (SOCP) based optimization method. This paper compares the performance of these three PRC methods for a Wireless Local Area Network (WiLAN) system in terms of PAPR reduction capabilities and computational complexities while justifying that neither in-band nor out-of-band interference is generated upon the application of these methods. For an IEEE 802.11g standard, it is found that, on average, SOCP reduces ≈2.5dB more PAPR than Geometric method but its complexity is 18 times the complexity of Geometric method. While Gradient method lies in between these two methods regarding performance and complexity criteria, this paper presents a trade-off between PAPR reduction performance and complexity for three different PRC implementation schemes.
机译:高峰平均功率比(PAPR)是在正交频分复用(OFDM)调制传输中的多载波通信中关注的主要领域。已经设计了几种技术来减少OFDM信号的PAPR。这些PAPR降低技术之一是基于峰值还原载波(PRC)概念,其中一组子载波不用于传输信息,而是减少时间信号的峰值。存在不同的方法来生成基于几何方法,梯度法和基于二阶锥编程(SOCP)的优化方法等几何方法的峰值还原载波。本文将这三种PRC方法对无线局域网(Wilan)系统的性能进行了比较了PAPR减少能力和计算复杂性,同时证明既不是在应用这些时都会产生带内的带外干扰方法。对于IEEE 802.11g标准,发现,平均而言,SOCP比几何方法更低的PAPR减少,但其复杂性是几何方法的复杂性的18倍。虽然梯度方法在这两种方法之间存在关于性能和复杂性标准的方法,但本文提出了三种不同的中国实施方案的PAPR降低性能和复杂性之间的权衡。

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