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Suboptimal multiple-input multiple-output (MIMO) channel detection with sequential Monte Carlo

机译:具有顺序蒙特卡洛的次优多输入多输出(MIMO)信道检测

摘要

A class of soft-input soft-output demodulation schemes for multiple-input multiple-output (MIMO) channels, based on the sequential Monte Carlo (SMC) framework under both stochastic and deterministic settings. The stochastic SMC sampler generates MIMO symbol samples based on importance sampling and resampling techniques, while the deterministic SMC approach recursively performs exploration and selection steps in a greedy manner. By exploiting the artificial sequential structure of the existing simple Bell Labs Layered Space Time (BLAST) detection method based on nulling and cancellation, the proposed algorithms achieve an error probability performance that is orders of magnitude better than the traditional BLAST detection schemes while maintaining a low computational complexity. Performance is comparable with that of the sphere decoding algorithm, with a much lower complexity. Both the stochastic and deterministic SMC detectors can be employed as the first-stage demodulator in an iterative or turbo receiver in coded MIMO systems.
机译:基于随机和确定性设置下的顺序蒙特卡洛(SMC)框架,针对多输入多输出(MIMO)通道的一类软输入软输出解调方案。随机SMC采样器基于重要性采样和重采样技术生成MIMO符号样本,而确定性SMC方法以贪婪的方式递归执行探索和选择步骤。通过利用现有的基于归零和抵消的简单贝尔实验室分层时空(BLAST)检测方法的人工顺序结构,所提出的算法在保持较低误码率的同时,其错误概率性能比传统BLAST检测方案高出几个数量级。计算复杂度。性能可以与球形解码算法相媲美,复杂度要低得多。随机和确定性SMC检测器都可用作编码MIMO系统中迭代或Turbo接收机中的第一级解调器。

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