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Virtual MIMO in Multi-Cell Distributed Antenna Systems: Coordinated Transmissions with Large-Scale CSIT

机译:多小区分布式天线系统中的虚拟MIMO:大规模CSIT的协调传输

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摘要

The virtual multiple input multiple output (MIMO) technique can dramatically improve the performance of a multi-cell distributed antenna system (DAS), thanks to its great potentials for inter-cell interference mitigation. One of the most challenging issues for virtual MIMO is the acquisition of channel state information at the transmitter (CSIT), which usually leads to an overwhelming amount of system overhead. In this work, we focus on the case that only the slowly-varying large-scale channel state is required at the transmitter, and explore the performance gain that can be achieved by coordinated transmissions for virtual MIMO with large-scale CSIT. Aiming at maximizing the achievable ergodic sum rate, the input covariances for all the mobile terminals (MTs) are jointly optimized, which turns out to be a complicated non-convex problem with a non-closed-form objective function. Further analysis reveals that the coordinated transmission problem can be recast as a Max-Min problem with a closed-form objective function and linear constraints. Then, by appealing to the successive approximation method and the saddle-point theory of concave-convex functions, we propose an iterative algorithm for coordinated transmissions with large-scale CSIT and establish its convergence. Simulation results corroborate that the proposed scheme converges quickly, and it yields significant performance gains compared to the existing schemes. Moreover, it is observed that the proposed scheme can achieve a nearly globally-optimal point under the diagonal input covariance constraint. Since the acquisition of large-scale CSIT is far less demanding than that of full CSIT, we believe that the proposed coordinated transmissions with large-scale CSIT in DASs shed some light on virtual MIMO in the making.
机译:虚拟多输入多输出(MIMO)技术由于具有缓解小区间干扰的巨大潜力,因此可以显着提高多小区分布式天线系统(DAS)的性能。虚拟MIMO最具挑战性的问题之一是在发射机(CSIT)上获取信道状态信息,这通常会导致大量的系统开销。在这项工作中,我们关注发射机仅需要缓慢变化的大规模信道状态的情况,并探索通过大规模CSIT的虚拟MIMO的协调传输可以实现的性能增益。为了最大化可达到的遍历总和率,共同优化了所有移动终端(MT)的输入协方差,这是一个复杂的非凸问题,具有非封闭形式的目标函数。进一步的分析表明,协调传递问题可以重现为具有封闭形式目标函数和线性约束的最大-最小问题。然后,利用逐次逼近法和凹凸函数的鞍点理论,提出了一种大规模CSIT协调传输的迭代算法,并建立了收敛性。仿真结果证实了所提出的方案收敛迅速,并且与现有方案相比,产生了显着的性能提升。此外,可以观察到,在对角输入协方差约束下,该方案可以实现几乎全局最优的点。由于获取大型CSIT的需求远远少于完整CSIT的需求,因此我们认为在DAS中提议的与大型CSIT的协调传输为虚拟MIMO提供了一些启示。

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