首页> 外文会议>Electrical and Computer Engineering, 2009. CCECE '09 >Improved layered space time architecture over quasi-static fading channels with unequal power allocation and multistage decoding
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Improved layered space time architecture over quasi-static fading channels with unequal power allocation and multistage decoding

机译:具有不相等的功率分配和多级解码的准静态衰落信道上的改进分层时空架构

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The Bell labs layered space-time (BLAST) architecture pioneered by Foschini was found to achieve high spectral efficiency with moderate complexity. However, the redundancy in error correcting codes in BLAST receiver is not used in detection improvement, as detection and decoding are carried out separately. In this paper, we investigate a new approach for improved performance of BLAST based on multi-stage decoding (MSD) and unequal transmit power allocation among layers, for transmission over flat quasi-static Rayleigh fading channels. The use of MSD exploits the inherent redundancy in the employed channel codes to improve detection in BLAST without the need for complex iterative decoding approaches. In addition, we investigate unequal transmit power allocation among layers for transmission over flat quasi-static Rayleigh fading channels. We first derive a theorem for power allocation that maximizes outage capacity. We then find the unequal power allocation required to guarantee equal outage capacities among layers in BLAST combined with MSD detection. The proposed power allocation simplifies implementation and improves error performance. Simulation results show that the proposed architecture significantly outperforms existing BLAST schemes in terms of error performance for transmission over flat quasi-static Rayleigh fading channels.
机译:由Foschini开创的Bell实验室分层时空(BLAST)体系结构被发现具有中等复杂度的高频谱效率。但是,由于检测和解码是分开进行的,因此BLAST接收机中的纠错码中的冗余没有用于检测改进中。在本文中,我们研究了一种基于多级解码(MSD)和层间不平等发射功率分配的BLAST改进性能的新方法,用于在平坦的准静态瑞利衰落信道上进行传输。 MSD的使用可利用所用信道代码中的固有冗余来改善BLAST中的检测,而无需复杂的迭代解码方法。另外,我们研究了在平坦的准静态瑞利衰落信道上进行传输的各层之间不相等的传输功率分配。我们首先导出功率分配定理,以最大化停电容量。然后,我们发现结合MSD检测在BLAST中保证各层之间相等的中断容量所需的不相等功率分配。建议的电源分配简化了实现并提高了错误性能。仿真结果表明,在平坦的准静态瑞利衰落信道上传输时,在误码性能方面,所提出的架构明显优于现有的BLAST方案。

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