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System level modeling and evaluation of advanced linear interference aware receivers

机译:高级线性干扰感知接收机的系统级建模和评估

摘要

To cope with the growth of data traffic through mobile networks, efficient utilization of the available radio spectrum is needed. In densely deployed radio networks, User Equipments (UE) will experience high levels of interference which limits the achievable spectral efficiency. In this case, a way to improve the achievable performance is by mitigating interference at the UE side.Advanced linear interference aware receivers are linear receivers able to mitigate external co-channel interference. Optimum linear interference rejection is obtained with the Interference Rejection Combining (IRC) receiver which relies on the ideal knowledge of the interference covariance matrix. The IRC interference covariance matrix is the sum of all interference channel covariance matrices. In practical radio networks, like LTE-Advanced, the knowledge of interference channel covariance matrices might not always be available. However, the IRC interference covariance matrix estimation can be done with a data-based or reference-symbol-based interference covariance matrix estimation algorithm.In this thesis, the modeling and evaluation of advanced linear interference aware receivers for LTE-Advanced downlink are studied. In particular, the data-based and reference-symbol-based covariance matrix estimation algorithms are modeled by using the Wishart distribution. This modeling allows the evaluation of advanced linear receivers without explicit need for baseband signals. The evaluation is done with a system level simulator. Later, a comparison of performance between advanced linear interference aware receivers and 3GPP baseline linear receivers for multiple homogeneous and heterogeneous deployment scenarios is presented.Finally, it is shown that advanced linear interference aware receivers can provide spectral efficiency improvements specially to UEs located at cell borders.
机译:为了应对通过移动网络的数据流量的增长,需要有效利用可用的无线电频谱。在密集部署的无线电网络中,用户设备(UE)将遭受高水平的干扰,这限制了可达到的频谱效率。在这种情况下,一种改善可实现性能的方法是通过减轻UE端的干扰。高级线性干扰感知接收机是能够减轻外部同信道干扰的线性接收机。使用干扰抑制组合(IRC)接收机可以获得最佳的线性干扰抑制,该接收机依赖于干扰协方差矩阵的理想知识。 IRC干扰协方差矩阵是所有干扰信道协方差矩阵的总和。在诸如LTE-Advanced的实际无线电网络中,干扰信道协方差矩阵的知识可能并不总是可用。然而,IRC干扰协方差矩阵估计可以采用基于数据或基于参考符号的干扰协方差矩阵估计算法来完成。本文研究了用于LTE-Advanced下行链路的高级线性干扰感知接收机的建模和评估。特别地,通过使用Wishart分布对基于数据和基于参考符号的协方差矩阵估计算法进行建模。这种建模无需评估基带信号即可评估高级线性接收机。评估是通过系统级模拟器完成的。稍后,针对多种同质和异构部署场景,对高级线性干扰感知接收机与3GPP基准线性接收机之间的性能进行了比较。最后,表明高级线性干扰感知接收机可以为位于小区边界的UE提供频谱效率方面的改进。

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