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首页> 外文期刊>IEICE Transactions on Communications >Link Performance Modeling of Interference Rejection Combining Receiver in System Level Evaluation for LTE-Advanced Downlink
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Link Performance Modeling of Interference Rejection Combining Receiver in System Level Evaluation for LTE-Advanced Downlink

机译:LTE-Advanced下行链路系统级评估中的干扰抑制合并接收机的链路性能建模

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摘要

The interference rejection combining (IRC) receiver, which can suppress inter-cell interference, is effective in improving the cell-edge user throughput. The IRC receiver is typically based on the minimum mean square error (MMSE) criteria, and requires a covariance matrix including the interference signals, in addition to a channel matrix from the serving cell. Therefore, in order to clarify the gain from the IRC receiver, the actual estimation error of these matrices should be taken into account. In a system performance evaluation, the link performance modeling of the IRC receiver, i.e., the output signal-to-interference-plus-noise power ratio (SINR) after IRC reception including the estimation errors, is very important in evaluating the actual performance of the IRC receiver in system level simulations. This is because these errors affect the suppression of the interference signals for the IRC receiver. Therefore, this paper investigates and proposes IRC receiver modeling schemes for the covariance matrix and channel estimation errors. As the modeling scheme for the covariance matrix, we propose a scheme that averages the conventional approximation using the complex Wishart distribution in the frequency domain to address issues that arise in a frequency selective fading channel. Furthermore, we propose a modeling scheme for the channel estimation error according to the ideal channel response of all cells and a channel estimation filter to address channel fading fluctuations. The results of simulations assuming the LTE/LTE-Advanced downlink with two transmitter and receiver antenna branches show that the proposed modeling scheme for the covariance matrix estimation error accurately approximates the performance of a realistic IRC receiver, which estimates the covariance matrix and channel matrix of the serving cell based on the demodulation reference signal (DM-RS), even in a frequency selective fading channel. The results also show that the proposed modeling scheme for the channel estimation error is a robust scheme in terms of the r.m.s. delay spread of a channel model compared to the scheme using the mean square error (MSE) statistic of the estimated channel coefficients based on a channel estimation filter.
机译:可以抑制小区间干扰的抗干扰合并(IRC)接收器有效地提高了小区边缘用户的吞吐量。 IRC接收器通常基于最小均方误差(MMSE)标准,并且除了来自服务小区的信道矩阵之外,还需要包括干扰信号的协方差矩阵。因此,为了澄清来自IRC接收器的增益,应考虑这些矩阵的实际估计误差。在系统性能评估中,IRC接收器的链路性能模型,即包含估计误差的IRC接收后的输出信号干扰加噪声功率比(SINR),对于评估系统的实际性能非常重要。系统级仿真中的IRC接收器。这是因为这些错误影响了IRC接收器对干扰信号的抑制。因此,本文研究并提出了针对协方差矩阵和信道估计误差的IRC接收机建模方案。作为协方差矩阵的建模方案,我们提出一种方案,该方案使用频域中的复杂Wishart分布对常规近似值求平均,以解决在频率选择性衰落信道中出现的问题。此外,我们针对所有小区的理想信道响应提出了一种信道估计误差的建模方案,并提出了一种信道估计滤波器来解决信道衰落的波动。假设具有两个发射器和接收器天线分支的LTE / LTE-Advanced下行链路的仿真结果表明,所提出的协方差矩阵估计误差建模方案可以精确地逼近实际IRC接收机的性能,后者可以估算IRC协方差矩阵和信道矩阵。即使在频率选择性衰落信道中,也基于解调参考信号(DM-RS)来确定服务小区。结果还表明,就均方根而言,所提出的信道估计误差建模方案是一种鲁棒的方案。与使用基于信道估计滤波器的估计信道系数的均方误差(MSE)统计信息的方案相比,信道模型的延迟扩展。

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