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Performance Analysis of an MC-CDMA/TDD Uplink System with Pre-Equalizatlon In a Highly Time-Varying Channel

机译:高时变信道中具有预均衡的MC-CDMA / TDD上行系统的性能分析

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摘要

We deal with channel estimation for an MC-CDMA/TDD uplink system with pre-equalization in a highly time-varying channel. First, the time variation of the channel state information (CSI) during a downlink slot is approximated to a polynomial with a proper order. Then, the CSI during the consecutive uplink slot is estimated by simply extending the polynomial to the uplink slot interval. The time variation of the downlink CSI can be approximated to a 1st, 2nd, or 3rd-order polynomial by using the minimum mean squared error (MMSE) curve fitting method or the Lagrange interpolation method. We use the bit error rate as a proper system performance measure. Through extensive simulations, we conclude that the 2nd-order polynomial approximation scheme based on the MMSE curve fitting works well under various system and channel conditions, and is quite robust to the downlink channel estimation error.
机译:我们在高度时变的信道中处理带有预均衡的MC-CDMA / TDD上行链路系统的信道估计。首先,在下行链路时隙期间信道状态信息(CSI)的时间变化近似为具有适当阶数的多项式。然后,通过简单地将多项式扩展到上行链路时隙间隔来估计连续的上行链路时隙期间的CSI。通过使用最小均方误差(MMSE)曲线拟合方法或Lagrange插值方法,可以将下行链路CSI的时间变化近似为一阶,二阶或三阶多项式。我们将误码率用作适当的系统性能指标。通过广泛的仿真,我们得出结论,基于MMSE曲线拟合的二阶多项式逼近方案在各种系统和信道条件下均能很好地工作,并且对下行链路信道估计误差具有很强的鲁棒性。

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