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Link Level Performance of a Multicarrier CDMA Based Device-to-Device Integrated OFDMA Cellular System

机译:基于多载波CDMA的基于设备到设备集成OFDMA蜂窝系统的链路水平性能

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Device-to-Device communication (D2D) has been a hot research topic in recent years, especially concerning the integration of D2D and conventional cellular network. Currently, most of the D2D integration studies assume that D2D UEs and cellular UEs use identical multiple access (MA) technology, for the convenience of integration and backward compatibility. In this paper, we investigate a D2D integrated system using multicarrier code division multiple access (MC-CDMA) as the MA scheme for D2D UEs. The idea is to make use of the processing gains, obtained by the frequency domain spreading, against critical interference, especially from cellular UEs. The study focuses on investigating the link level performance using the proposed despreading and equalization schemes for two different D2D scenarios: D2D pair and D2D cluster. Simulations demonstrate that significant gain against critical narrowband interference (from cellular UEs) can be obtained by the despreading operation. Furthermore, the gain can be enhanced if the critically interfered chips (subcarriers) can be identified and eliminated at the despreading stage. Therefore, MC-CDMA is considered as a promising MA scheme for D2D UEs in case of no cell coordination, especially at cell edges.
机译:近年来,设备到设备通信(D2D)是一个热门研究主题,特别是关于D2D和传统蜂窝网络的集成。目前,大多数D2D集成研究假定D2D UE和蜂窝UE使用相同的多址(MA)技术,以方便集成和向后兼容性。在本文中,我们研究了使用多载波码分多址(MC-CDMA)作为D2D UE的MA方案的D2D集成系统。该想法是利用由频域扩散而获得的处理增益,免遭关键干扰,尤其是来自蜂窝UE。该研究侧重于使用两个不同的D2D场景的提出的解扩和均衡方案来调查链接水平性能:D2D对和D2D群集。模拟表明,通过解扩操作可以获得对临界窄带干扰的显着增益(来自蜂窝UE)。此外,如果可以在解扩阶段识别和消除批定干扰的芯片(子载波),则可以提高增益。因此,在没有细胞协调的情况下,MC-CDMA被认为是D2D UE的有希望的MA方案,特别是在细胞边缘。

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