下行链路MC-CDMA系统不同MIMO配置的性能比较

Xiaoming Peng, Z. Lei, F. Chin
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引用次数: 3

摘要

多输入多输出(MIMO)多载波码分多址(MC-CDMA)系统是未来移动分组传输的一种有潜力的方案。不同MIMO系统配置对性能和计算复杂度的考虑导致了不同的应用。本文研究了V-BLAST方案在编码MC-CDMA系统中的性能,并对不同MIMO MC-CDMA系统配置(如V-BLAST方案和穿刺STBC方案)的性能进行了比较。结果表明,在相同传输速率(相同带宽效率)下,穿孔STBC方案在性能和复杂度方面都优于V-BLAST方案。这是因为与V-BLAST方案相比,穿刺STBC方案在没有流间干扰的情况下获得了更高的分集增益,而V-BLAST方案存在严重的流间干扰,分集增益较低。然而,被刺穿的STBC方案只能在较低速率的信道编码下工作(用于被刺穿),对于两个以上天线的复杂数据,STBC编码速率小于1。因此,它适用于数据速率适中的廉价实时应用程序
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance comparison of different MIMO configurations for downlink MC-CDMA systems
The multiple-input-multiple-output (MIMO) multicarrier-code division multiple access (MC-CDMA) system is a potential scheme for future mobile packet transmission. The consideration of performance and computational complexity of different MIMO system configurations leads to various applications. In this paper, the performance of V-BLAST scheme for coded MC-CDMA system and performance comparison of different MIMO MC-CDMA system configurations such as V-BLAST scheme and punctured STBC scheme have been investigated. The results show that punctured STBC scheme is better than V-BLAST scheme at the same transmitted data rate (same bandwidth efficiency) in terms-of performance and complexity. This is because punctured STBC scheme achieves higher diversity gain without inter-stream interference compared to V-BLAST scheme which has severe inter-stream interference and lower diversity gain. However, the punctured STBC scheme can only work with lower rate channel coding (for puncturing) and STBC coding rate for complex data is less than one for antennas more than two. Hence, it is suitable for inexpensive real-time applications with moderate data rate
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