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Multicarrier CDMA systems with MIMO technology

机译:采用mImO技术的多载波CDma系统

摘要

The rapid demand for broadband wireless access with fast multimedia services initiated a vast research on the development of new wireless systems that will provide high spectral efficiencies and data rates. A potential candidate for future generation wireless systems is multi-carrier code division multiple access (MC-CDMA). To achieve higher user capacities and increase the system data rate, various multiple-input multiple-output (MIMO) technologies such as spatial multiplexing and spatial diversity techniques have been proposed recently and combined with MC-CDMA.This research proposes a chip level coded ordered successive spatial and multiuser interference cancellation (OSSMIC) receiver for downlink MIMO MC-CDMA systems. As the conventional chip level OSIC receiver [1] is unable to overcome multiple access interference (MAI) and performs poorly in multiuser scenarios, the proposed receiver cancels both spatial and multiuser interference by requiring only the knowledge of the desired user's spreading sequence. Simulation results show that the proposed receiver not only performs better than the existing linear detectors [2] but also outperforms both the chip and symbol level OSIC receivers. In this work we also compare the error rate performance between our proposed system and MIMO orthogonal frequency division multiple access (MIMO OFDMA) system and we justify the comparisons with a pairwise error probability (PEP) analysis. MIMO MC-CDMA demonstrates a better performance over MIMO OFDMA under low system loads whereas in high system loads, MIMO OFDMA outperforms MIMO MC-CDMA. However if all users' spreading sequences are used at the desired user receiver, MIMO MC-CDMA performs better than MIMO OFDMA at all system loads.In the second part of this work, user grouping algorithms are proposed to provide power minimisation in grouped MC-CDMA and space-time block code (STBC) MC-CDMA systems. When the allocation is performed without a fair data rate requirement, the optimal solution to the minimisation problem is provided. However when some fairness is considered, the optimal solution requires high computational complexity and hence we solve this problem by proposing two suboptimal algorithms. Simulation results illustrate a significantly reduced power consumption in comparison with other techniques.
机译:对具有快速多媒体服务的宽带无线接入的快速需求,引发了对新无线系统开发的广泛研究,该系统将提供高频谱效率和数据速率。下一代无线系统的潜在候选者是多载波码分多址(MC-CDMA)。为了实现更高的用户容量并提高系统数据速率,最近提出了多种多输入多输出(MIMO)技术,例如空间复用和空间分集技术,并将其与MC-CDMA结合使用。下行MIMO MC-CDMA系统的连续空间和多用户干扰消除(OSSMIC)接收机。由于常规的芯片级OSIC接收器[1]无法克服多址干扰(MAI),并且在多用户场景中的性能较差,因此,所提出的接收器仅需要了解所需用户的扩频序列即可消除空间和多用户干扰。仿真结果表明,所提出的接收器不仅性能优于现有的线性检测器[2],而且还优于芯片级和符号级OSIC接收器。在这项工作中,我们还比较了我们提出的系统和MIMO正交频分多址(MIMO OFDMA)系统之间的误码率性能,并通过成对错误概率(PEP)分析证明了比较的合理性。在低系统负载下,MIMO MC-CDMA表现出比MIMO OFDMA更好的性能,而在高系统负载下,MIMO OFDMA优于MIMO MC-CDMA。但是,如果所有用户的扩频序列都在所需的用户接收器处使用,则在所有系统负载下,MIMO MC-CDMA的性能均优于MIMO OFDMA。在本工作的第二部分,提出了用户分组算法以在分组的MC- CDMA和空时分组码(STBC)MC-CDMA系统。当在没有公平数据速率要求的情况下执行分配时,将提供针对最小化问题的最佳解决方案。然而,当考虑到一些公平性时,最优解需要很高的计算复杂度,因此我们通过提出两个次优算法来解决此问题。仿真结果表明,与其他技术相比,功耗显着降低。

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