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Novel Techniques to Reduce Performance Sensitivity to Spatial Correlation and Timing Offset in Space-Time Coded MIMO Turbo Equalization

机译:降低空时编码MIMO Turbo均衡中对空间相关性和时序偏移的性能敏感性的新技术

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摘要

Spatial correlation among antenna elements both at transmitter and receiver sides in MIMO communications is known to have a crucial impact on system performances. Another factor that can severely degrade receiver performances is the timing offset relative to the channel delay profile. In this paper we derive a novel receiver for turbo MIMO equalization in space-time-trellis-coded (STTrC) system to jointly address the problems described above. The equalizer is based on low complexity MMSE filtering. A joint detection technique of the several transmit antennas is used to reduce the receiver's sensitivity to the spatial correlation at the transmitter and receiver sides. Furthermore, only the significant portion of the channel impulse response (CIR) is taken into account while detecting signals. The remaining portion of CIR is regarded as the unknown interference which is effectively suppressed by estimating its covariance matrix. By doing this the receiver's complexity can be reduced since only a portion of the CIR has to be estimated and used for signal detection. Furthermore, by suppressing the interference from the other paths outside the equalizers coverage the receiver's sensitivity to the timing offset can be reduced. The proposed receiver's performance is evaluated using field measurement data obtained through multidimensional channel sounding. It is verified through computer simulations that the performance sensitivity of the joint detection-based receiver to the spatial correlation is significantly lower than with the receiver that detects only one antenna at a time. Furthermore, the performance sensitivity to the timing offset of the proposed receiver is shown to be significantly lower than that of the receiver that ignores the existence of the remaining multipath CIR components.
机译:已知在MIMO通信中,发射机和接收机端的天线元件之间的空间相关性对系统性能具有至关重要的影响。可能严重降低接收机性能的另一个因素是相对于信道延迟曲线的时序偏移。在本文中,我们推导了一种新颖的空时网格编码(STTrC)系统中用于Turbo MIMO均衡的接收机,以共同解决上述问题。均衡器基于低复杂度MMSE过滤。几个发射天线的联合检测技术用于降低接收器对发射器和接收器侧的空间相关性的敏感性。此外,在检测信号时仅考虑信道脉冲响应(CIR)的重要部分。 CIR的其余部分被视为未知干扰,可以通过估计其协方差矩阵来有效地抑制它。通过这样做,由于仅CIR的一部分必须被估计并且用于信号检测,因此可以降低接收机的复杂度。此外,通过抑制来自均衡器覆盖范围之外的其他路径的干扰,可以降低接收机对定时偏移的灵敏度。使用通过多维信道探测获得的现场测量数据来评估建议的接收机的性能。通过计算机仿真证明,基于联合检测的接收器对空间相关性的性能敏感性明显低于一次仅检测一根天线的接收器。此外,所提出的接收器对定时偏移的性能敏感性显示为显着低于忽略其余多径CIR分量的存在的接收器。

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