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System Level Study of the Performance Losses Caused by Inaccurate Interference Modeling for Indirect Linear Equalizers Utilized in Cellular Downlinks

机译:系统级研究,由间接线性均衡器中使用的间接线性均衡器引起的性能损失研究

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Adaptive equalization of time variant and frequency selective channels is a crucial task of advanced mobile radio receivers. Channel-estimate based methods and direct methods are the two main strategies for automatic equalization. Even though several performance comparisons between the two implementation choices are available (see the full text for references), they have all been performed at the "link level" and their results cannot be extrapolated to the "system level" because the noise models typically used in link level simulations do not faithfully reflect the actual interference characteristics observed in cellular downlinks. This is of redoubled significance since most channel-estimate based methods make use of some of those same model simplifications during the calculation of the equalizer coefficients. Traditional square error minimization algorithms (referred to as direct methods) make no assumptions about noise characteristics and are thus more general. Consequently, only a full system level experiment can appropriately evaluate possible performance differences between these two classes of algorithms. This paper is an experimental evaluation of the losses that typical channel-estimate based equalization methods would experience in cellular downlinks due to their modeling assumptions. The results are relevant when choosing a filter adaptation strategy since direct methods do not suffer from this effect
机译:时间变量和频率选择通道的自适应均衡是高级移动无线电接收器的一个重要任务。基于频道估计的方法和直接方法是自动均衡的两个主要策略。尽管有两个实现选择之间的多种性能比较可用(请参阅完整的文本以供参考),但它们都在“链接级别”中进行了所有,并且它们的结果不能推断为“系统级”,因为通常使用的噪声模型在链接水平中,模拟不忠实地反映在蜂窝下行链路中观察到的实际干扰特性。这是一种加强的意义,因为基于大多数基于频道估计的方法在计算均衡器系数期间利用一些相同的模型简化。传统的方形误差最小化算法(称为Direct方法)对噪声特性没有假设,因此更为一般。因此,只有完整的系统级别实验可以适当地评估这两类算法之间可能的性能差异。本文是对典型信道估计的均衡方法的损失的实验评估,由于其建模假设,典型的均衡方法将在蜂窝下行链路中经历。 The results are relevant when choosing a filter adaptation strategy since direct methods do not suffer from this effect

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