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首页> 外文期刊>IEEE Transactions on Communications >Transmit power allocation for successive interference cancellation in multicode MIMO systems
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Transmit power allocation for successive interference cancellation in multicode MIMO systems

机译:多码MIMO系统中用于连续干扰消除的发射功率分配

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Multiple-input multiple-output (MIMO) system with multicode transmission can provide high speed data services by transmitting independent parallel substreams from multiple antennas and through multicode channelization. In this paper, we first introduce an iterative two-stage successive interference cancellation (SIC) detection scheme for a multicode MIMO system. The proposed technique cancels the interference signals successively in the space domain followed by the code domain. Next, we develop various transmit power allocation schemes over different data substreams for the proposed detection process to improve error rate performance. The joint transmit power allocation is derived to make the post-detection signal-to-interferenceplus- noise ratio (SINR) become the same for all substreams in both the space and code domains. As a computationally efficient scheme, we propose a two-stage power allocation scheme, which allocates the total transmit power to the substreams in the code domain at the first stage, and allocates this code domain power to the substreams in the space domain at the second stage. Furthermore, variable and constant power ratio (PR) schemes are derived to reduce the feedback overhead. In particular, the constant PR scheme utilizes the transmit power ratio determined by the long-term statistical properties of the fading channel amplitudes, and achieves significantly reduced feedback rate. Numerical results show that the proposed transmit power allocation schemes for the two-stage SIC significantly outperform the equal power allocation scheme.
机译:具有多码传输功能的多输入多输出(MIMO)系统可以通过从多个天线传输独立的并行子流并通过多码信道化来提供高速数据服务。在本文中,我们首先介绍一种用于多码MIMO系统的迭代两阶段连续干扰消除(SIC)检测方案。所提出的技术在空域中随后在码域中相继消除干扰信号。接下来,我们针对不同的数据子流开发了各种发射功率分配方案,以提高检测率性能。得出联合发射功率分配,以使后检测信号与干扰加噪声之比(SINR)对于空间域和代码域中的所有子流都相同。作为一种计算有效的方案,我们提出了一种两阶段的功率分配方案,该方案在第一阶段将总发射功率分配给代码域中的子流,然后在第二阶段将这一代码域功率分配给空间域中的子流阶段。此外,推导了可变和恒定功率比(PR)方案以减少反馈开销。特别地,恒定PR方案利用由衰落信道幅度的长期统计特性确定的发射功率比,并实现显着降低的反馈速率。数值结果表明,所提出的两级SIC的发射功率分配方案明显优于等功率分配方案。

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