An enhanced V-BLAST with non-stationary interference avoidance capability

Younghoon Jo, Dapeng Oliver Wu
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引用次数: 1

Abstract

Reliable communication under interferences is desired by both military and commercial parties. This paper proposes a vertical-Bell Laboratories Layered Space-Time (V-BLAST) architecture with non-stationary interference avoidance capability. A transform domain processing (TDP) and minimum mean square error (MMSE) detector are combined with the V-BLAST to enhance performance in a narrow band interference (NBI) environment. A key idea of TDP is to generate an adaptive modulated information-bearing signal avoiding spectrally crowded regions in the transform domain at both transmitters and receivers of the V-BLAST system. The adaptive interference-free signal is synthesized by a non-parametric spectral estimator, called Caponpsilas method (CM). The proposed V-BLAST system also incorporates the MMSE detector. These approaches offer better bit error performance than other interference mitigation methodologies that process signals at the receiver only, and better than other similar systems that use a parametric spectral estimator with zero-forcing detector. Our simulation results indicate that the proposed system mitigates not only stationary interferences but also non-stationary interferences. Therefore, the proposed system is a viable option for the highly reliable multiple-input multiple-output (MIMO) system.
增强型V-BLAST,具有非静止干扰避免能力
军事和商业各方都希望在干扰下实现可靠的通信。本文提出了一种具有非平稳干扰避免能力的垂直-贝尔实验室分层时空(V-BLAST)结构。V-BLAST结合了变换域处理(TDP)和最小均方误差(MMSE)检测器,以提高在窄带干扰(NBI)环境下的性能。TDP的一个关键思想是在V-BLAST系统的发射机和接收机的变换域中产生自适应调制的信息承载信号,避免频谱拥挤区域。该自适应无干扰信号是由一种非参数谱估计器Caponpsilas方法合成的。提出的V-BLAST系统还集成了MMSE探测器。这些方法比其他仅在接收机处理信号的干扰缓解方法提供更好的误码性能,并且比其他使用参数谱估计器和零强迫检测器的类似系统更好。仿真结果表明,该系统不仅能抑制平稳干扰,还能抑制非平稳干扰。因此,该系统是高可靠性多输入多输出(MIMO)系统的可行选择。
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