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Optimum and Suboptimum 2D Channel Estimation for UTRA LTE and LTE-Advanced

机译:UTRA LTE和LTE-Advance的最佳和余功率2D信道估计

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In this work a space-frequency block coding (SFBC) system is considered, which is compliant to the Long-Term-Evolution (LTE) specification. The uncoded bit error ratio (BER) of the linear Alamouti SFBC detector with BPSK modulation in the presence of 2-dimensional (2D) channel estimation is analyzed. The work in this paper comprises frequency-selective and Doppler fading. The quality of robust and optimum channel estimation is investigated by derivation of the Cramer-Rao Lower Bound (CRLB) for the complex-valued channel estimates. The BER performance of the LTE SFBC receiver is studied considering channel estimation with robust and optimum Wiener intepolation. The paper shows the effect of key system parameters on the SFBC performance, such as the anticipated power delay profile and Doppler spectrum at the channel estimator, the actual, i.e. true, power delay and Doppler spectrum, the pilot spacing and the Wiener filter length.
机译:在这项工作中,考虑了空间频块编码(SFBC)系统,该编码符合长期演进(LTE)规范。分析了在存在二维(2D)信道估计的情况下具有BPSK调制的线性Alamouti SFBC检测器的未编码的比特误差比(BER)。本文的工作包括频率选择性和多普勒褪色。通过推导到复值通道估计的Cramer-Rao下限(CRLB)来研究稳健和最佳信道估计的质量。研究了LTE SFBC接收器的BER性能,考虑了具有鲁棒和最佳维纳界面的信道估计。本文显示了关键系统参数对SFBC性能的影响,例如信道估计器处的预期功率延迟曲线和多普勒频谱,实际,即功率延迟和多普勒频谱,导频间距和维纳滤波器长度。

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