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Interference-Aware RZF Precoding for Multicell Downlink Systems

机译:多小区下行链路系统的可感知干扰的RZF预编码

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Recently, a structure of an optimal linear precoder for multi cell downlink systems has been described, and many other references have used simplified versions of this precoder to obtain promising performance gains. These gains have been hypothesized to stem from the additional degrees of freedom that allow for interference mitigation through interference relegation to orthogonal subspaces. However, no conclusive or rigorous understanding has yet been developed. In this paper, we build on an intuitive interference induction trade-off and the aforementioned preceding structure to propose an interference aware RZF (iaRZF) preceding scheme for multi cell downlink systems, and we analyze its rate performance. Special emphasis is placed on the induced interference mitigation mechanism of iaRZF. For example, we will verify the intuitive expectation that the precoder structure can either completely remove induced inter-cell or intra-cell interference. We state new results from large-scale random matrix theory that make it possible to give more intuitive and insightful explanations of the precoder behavior, also for cases involving imperfect channel state information (CSI). We remark especially that the interference-aware precoder makes use of all available information about interfering channels to improve performance. Even very poor CSI allows for significant sum-rate gains. Our obtained insights are then used to propose heuristic precoder parameters for arbitrary systems, whose effectiveness are shown in more involved system scenarios. Furthermore, calculation and implementation of these parameters does not require explicit inter base station cooperation.
机译:最近,已经描述了用于多小区下行链路系统的最佳线性预编码器的结构,并且许多其他参考文献已经使用该预编码器的简化版本来获得有希望的性能增益。假设这些增益来自允许通过将干扰降级到正交子空间来减轻干扰的附加自由度。但是,尚未形成结论性或严格的理解。在本文中,我们基于直观的干扰诱导折衷和上述先前的结构,为多小区下行链路系统提出了一种干扰感知的RZF(iaRZF)先前方案,并对其速率性能进行了分析。特别强调了iaRZF的诱导干扰缓解机制。例如,我们将验证对预编码器结构可以完全消除引起的小区间干扰或小区间干扰的直观期望。我们陈述了大规模随机矩阵理论的新结果,这使得有可能对预编码器的行为给出更直观,更深刻的解释,对于涉及不完善信道状态信息(CSI)的情况也是如此。我们特别指出,意识到干扰的预编码器会利用有关干扰信道的所有可用信息来提高性能。甚至非常差的CSI也可以显着提高总和。然后,我们将获得的见解用于为任意系统提出启发式预编码器参数,其有效性在更多涉及的系统场景中得以展示。此外,这些参数的计算和实现不需要明确的基站间协作。

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