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A Low Complexity Receiver Phase Rotated Conjugate Cancellation for ICI Reduction using Iterative ML Algorithm in MC-CDMA system

机译:低复杂性接收器相位旋转缀合物,用于使用MC-CDMA系统中的迭代ML算法进行ICI减少的ICI减少

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The convergence of high data rate multimedia services such as speech, audio, video, image and data will be the main features of future wireless systems. Multi-carrier code division multiple access (MC-CDMA) is one of the powerful techniques to meet the requirements of next generation broadband and wireless mobile communication systems. MC-CDMA system allows many users to get the benefit of both orthogonal frequency division multiplexing (OFDM) technique and code division multiple access scheme (CDMA). It offers high spectral efficiency, high data rate, low transmit power, lower implementation complexity, large system capacity and narrowband interference rejection capability. Multi-carrier systems are very sensitive to carrier frequency offset (CFO) caused by Doppler shifts and imperfections of transmitter and receiver oscillators, which leads to loss of orthogonality among the subcarriers resulting in intercarrier interference (ICI). In this paper, a low complexity receiver phase rotated conjugate cancellation (RPRCC) algorithm using an iterative maximum likelihood (ML) based CFO estimation is proposed. The proposed method reduces the ICI which in turn reduces the multiple access interference (MAI) and subsequently increases the system capacity. Simulation results show that the RPRCC method provides better carrier to interference ratio (CIR) and bit error rate (BER) performance compared to transmitter phase rotated conjugate cancellation (PRCC) technique and conventional conjugate cancellation (CC) scheme.
机译:诸如语音,音频,视频,图像和数据之类的高数据速率多媒体服务的融合将是未来无线系统的主要特征。多载波码分多次访问(MC-CDMA)是满足下一代宽带和无线移动通信系统的要求的强大技术之一。 MC-CDMA系统允许许多用户获得正交频分复用(OFDM)技术和码分多址方案(CDMA)的益处。它提供高谱效率,高数据速率,低传输功率,降低实现复杂性,大量系统容量和窄带干扰抑制能力。多载波系统对由多普勒移位和发射器和接收器振荡器的缺陷引起的载波频率偏移(CFO)非常敏感,这导致子载波之间的正交性丧失,导致跨载波干扰(ICI)。在本文中,提出了一种使用基于迭代最大似然(ML)的CFO估计的低复杂性接收器相位旋转共轭消除(RPRCC)算法。所提出的方法减少了ICI,这反过来减少了多次访问干扰(MAI),随后增加了系统容量。仿真结果表明,与发射器相位旋转的共轭消除(PRCC)技术和常规的共轭消除(CC)方案相比,RPRCC方法提供更好的载波与干扰比(CIR)和比特误差率(BER)性能。

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