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Performance of CDMA/OFDM for mobile communication system

机译:用于移动通信系统的CDMA / OFDM的性能

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The OFDM technique is an interesting approach in mobile communications in order to achieve a high spectral efficiency and to combat the frequency selectivity of the channel. Another interesting technique is a CDMA system with Rake-receiver. The main advantages of CDMA are well known, but its capacity is limited by multiuser interference. The aim of this study is to combine the principle of a CDMA system with OFDM. This combination allows one to perform a maximum-likelihood detection (MLD), to use the spectrum in an efficient way, to exploit frequency diversity, and to retain many advantages of a CDMA system. In addition, it permits simple cell-separation by using frequency hopping, and a simple hardware realization. Two examples for mobile communication system using CDMA/OFDM with Walsh-Hadamard code-spreading for the downlink (Base-Mobile) are studied. Different coherent detection algorithms such as conventional detection, MLD, and iterative detection are analyzed. The analytical performance of MLD is evaluated. It is shown that by using BPSK modulation, one can transmit 64 active users at rate of about 16.664 kbit/sec in a 1.28 MHz bandwidth, resulting in a spectral efficiency of 0.8332 bit/sec/Hz. By using QPSK modulation half of this bandwidth will be used. It is also analytically shown that the performance of a CDMA/OFDM with MLD, using frequency-diversity is comparable to an optimum CDMA system with Rake-receiver using multipath diversity. However, in practice providing diversity with OFDM is much simpler than a Rake-receiver. In addition, the OFDM technique simplifies the channel-estimation problem. Hence using CDMA/OFDM for the downlink is a promising approach since the receiver at the mobile station should be very simple.
机译:OFDM技术是移动通信中的有趣方法,以实现高光谱效率并打击信道的频率选择性。另一个有趣的技术是具有Rake-Receiver的CDMA系统。 CDMA的主要优点是众所周知的,但其容量受多种干扰的限制。本研究的目的是将CDMA系统与OFDM的原理结合起来。这种组合允许一个人能够以有效的方式使用频谱,以利用频率分集,并保留CDMA系统的许多优点。此外,它还通过使用跳频和简单的硬件实现来允许简单的细胞分离。研究了使用CDMA / OFDM与WALSH-HATAMARD代码扩展的移动通信系统的两个示例,用于下行链路(基础移动)。分析了诸如常规检测,MLD和迭代检测的不同的相干检测算法。评估MLD的分析性能。结果表明,通过使用BPSK调制,可以以1.28MHz的带宽以约16.664kbit / sec的速率传输64个活性用户,从而产生0.8332位/秒/ hz的光谱效率。通过使用QPSK调制,将使用该带宽的一半。还在分析上表明,使用频率分集的CDMA / OFDM具有MLD的性能与使用多径多样性的RAKE接收器的最佳CDMA系统相当。然而,在实践中,提供OFDM的多样性比耙式接收器更简单。此外,OFDM技术简化了频道估计问题。因此,使用CDMA / OFDM对于下行链路是一种有希望的方法,因为移动台处的接收器应该非常简单。

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