机会性通信系统中PAPR的改进:一种新方法

S. Eswaran, Jyotsna L. Bapat
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引用次数: 2

摘要

利用认知无线电(CR)系统,提出了利用许可频带的机会性方法来解决频谱拥挤问题。基于正交频分多址(OFDMA)的多载波技术已成为频谱共享的首选技术,因为它们在停用子载波以避免对主许可用户的干扰方面具有灵活性。然而,基于OFDMA的技术与某些问题相关,例如高PAPR,这在用户设备(UE)端尤其有害。上行链路的单载波FDMA (SC-FDMA)是降低终端峰值功率比(PAPR)的一种解决方案。SC-FDMA可以利用局部映射或分布式映射技术将子载波分配给不同的用户。在频谱池中,免费子载波的可用性取决于许可用户的频谱活动,这是不可预测的,被认为是随机的。因此,可用的载波可以根据可用性使用非连续OFDM (NC-OFDMA)方案分配给租用的用户或机会用户。NC-OFDMA以用户设备(UE)的高PAPR为代价,有效地利用了频谱。为了能够使用SC-FDMA降低PAPR,需要对可用的子载波进行一定的结构;即连续或等间隔,这可能不是在所有情况下都是正确的。在本文中,我们提出了一种考虑系统对资源效率要求的频谱分配算法,并提出了适当大小的DFT用于频谱扩展,从而可以在终端实现本地化SC-FDMA以降低PAPR。该算法力求在低PAPR要求和频谱效率要求之间取得平衡,并提供了一种满足要求的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PAPR improvement in opportunistic communication systems: A novel approach
Opportunistic usage of licensed frequency bands has been proposed as a solution to spectral crowding problem by using Cognitive Radio (CR) systems. Multicarrier techniques based on OFDMA (Orthogonal Frequency Division Multiple Access) have been the technique of choice for sharing the spectrum due to their flexibility in deactivating the sub-carriers to avoid interference to primary licensed users. However, OFDMA based techniques are associated with certain issues such as high PAPR, which is especially harmful at the user equipment (UE) end. Single Carrier FDMA (SC-FDMA) for uplink has been proposed as one of the solutions for reducing the PAPR (Peak-to-Average-Power-Ratio) at UE end. SC-FDMA may utilize localized mapping or the distributed mapping techniques to allocate the sub-carriers to the different users. In spectrum pooling, the availability of free sub-carriers depends upon spectral activity of the licensed user which is unpredictable and considered random. As a result, available carriers may be allocated to the rented or opportunistic users based on availability using a Non Contiguous OFDM (NC-OFDMA) scheme. NC-OFDMA makes efficient use of the spectrum at the cost of high PAPR at the User Equipment (UE). To be able for PAPR reduction using SC-FDMA requires certain structure to the available subcarriers; i.e. consecutive or equi-spaced, which may not be true inall cases. In this paper, we propose a spectrum allocation algorithm that takes into account system requirements for resource efficiency and proposes a DFT of appropriate size for spectrum spreading such that localized SC-FDMA may be implemented at the UE to reduce PAPR. Proposed algorithm seeks to balance the requirements of low PAPR and required spectral efficiency and provides a solution that satisfies the requirements.
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