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Performance Analysis of MIMO Wavelet Packet Multicarrier Multicode CDMA System with Antenna Selection

机译:具有天线选择的MIMO小波包多载波多载体多载体CDMA系统性能分析

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Performance of Multicarrier Multicode Code-Division Multiple Access (MC/MCD-CDMA) systems can be improved significantly by using Wavelet Packets (WPs) as subcarriers instead of a~sinusoidal function. This is because WPs have much lower sidelobes and negligible sidelobe energy leakage compared to sinusoidal carriers; this property significantly decreases the intercarrier interference and improves the system performance. Further improvement can be achieved by utilizing multiple antennas at transmitter and receiver to construct a~Multiple-Input Multiple-Output (MIMO) system. Channel hardening is the main drawback of MIMO systems. Antenna selection can be employed to reduce this problem. In this paper, we use the antenna selection in MIMO WP-MC/MCD-CDMA system. These combinations of antenna selection, MIMO, and WP in MC/MCD-CDMA improve the system performance significantly and reduce the channel hardening. The performance of the system is tested according to the outage probability and bit error rate. Two MIMO schemes on Nakagami-m fading channel are considered, which are: selective transmit /selective receive and selective transmit /maximum ratio combining receive. The study includes the effects antennas' number, fading parameter-m, number of users, and the threshold signal to interferences plus noise ratio. The performance of the system is compared to that of MC/MCD-CDMA based on a~sinusoidal carrier. The results reveal that: by increasing antennas' number, the system performance is improved significantly, and MC/MCD-CDMA system based on WPs carriers outperforms MC/MCD-CDMA system based on a~sinusoidal carrier.
机译:通过使用小波包(WPS)作为子载波而不是〜正弦函数,可以显着提高多载波多载机多元码分割多址(MC / MCD-CDMA)系统。这是因为与正弦载体相比,WPS具有远低得多的侧瓣和可忽略不计的侧链能量泄漏;此属性显着降低了互载干扰并提高了系统性能。通过在发射机和接收器处利用多个天线来构造〜多输入多输出(MIMO)系统,可以实现进一步的改进。通道硬化是MIMO系统的主要缺点。可以采用天线选择来减少这个问题。在本文中,我们在MIMO WP-MC / MCD-CDMA系统中使用天线选择。这些天线选择,MIMO和WP中的这些组合在MC / MCD-CDMA中显着提高了系统性能并减少了通道硬化。根据中断概率和误码率测试系统的性能。考虑了Nakagami-M衰落通道上的两个MIMO方案,即:选择性发送/选择性接收和选择性发送/最大比率组合接收。该研究包括效果天线的数量,衰落参数-M,用户数量和阈值信号以及干扰加噪声比。将系统的性能与基于〜正弦载体的MC / MCD-CDMA的性能进行了比较。结果表明:通过增加天线的数量,系统性能显着提高,基于WPS载波的MC / MCD-CDMA系统基于〜正弦载波占MC / MCD-CDMA系统。

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