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首页> 外文期刊>Vehicular Technology, IEEE Transactions on >Joint Turbo Equalization and Multiuser Detection of MC-CDMA Signals With Low Envelope Fluctuations
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Joint Turbo Equalization and Multiuser Detection of MC-CDMA Signals With Low Envelope Fluctuations

机译:低包络起伏的MC-CDMA信号联合Turbo均衡和多用户检测

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摘要

In this paper, we consider the uplink transmission in multicarrier code-division multiple-access (MC-CDMA) systems. As other multicarrier signals, MC-CDMA signals have high envelope fluctuations and a high peak-to-mean envelope power ratio (PMEPR), which leads to amplification difficulties. This is particularly important for the uplink transmission, since an efficient low-cost power amplification is desirable at the mobile terminals (MTs). Moreover, the transmission over time-dispersive channels destroys the orthogonality between spreading codes, which might lead to significant multiple-access interference levels. To reduce the envelope fluctuations of the transmitted signals, while maintaining the spectral efficiency, the MC-CDMA signal associated to each MT is submitted to a clipping device, followed by a frequency-domain filtering operation. However, the nonlinear distortion effects can be high when an MC-CDMA transmitter with reduced envelope fluctuations is intended (e.g., a small clipping level and/or when successive clipping and filtering operations are employed). In this paper, we define an iterative receiver that jointly performs a turbo multiuser detection and the estimation and cancellation of the nonlinear distortion effects. Our performance results show that the proposed receiver structure allows good performances, very close to the linear receiver ones, even for high system load and/or when a PMEPR as low as 1.7 dB is intended for each MT.
机译:在本文中,我们考虑了多载波码分多址(MC-CDMA)系统中的上行链路传输。与其他多载波信号一样,MC-CDMA信号具有较高的包络波动和较高的峰均包络功率比(PMEPR),这会导致放大困难。这对于上行链路传输特别重要,因为在移动终端(MT)处需要高效的低成本功率放大。而且,在时间分散信道上的传输破坏了扩频码之间的正交性,这可能导致明显的多址干扰电平。为了减少发射信号的包络波动,同时保持频谱效率,将与每个MT相关的MC-CDMA信号提交给限幅设备,然后进行频域滤波操作。然而,当期望具有减小的包络波动的MC-CDMA发射机时(例如,小的削波电平和/或当采用连续的削波和滤波操作时),非线性失真效应会很高。在本文中,我们定义了一个迭代接收器,该接收器将共同执行Turbo多用户检测以及非线性失真效应的估计和抵消。我们的性能结果表明,即使对于高系统负载和/或每台MT预期PMEPR低至1.7 dB的情况,所提出的接收器结构仍具有良好的性能,非常接近线性接收器。

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