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SINR Balancing Techniques in Coordinated Multi-Cell Downlink Systems

机译:协作多小区下行链路系统中的SINR平衡技术

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摘要

In this paper, we study coordinated multi-cell downlink systems where multiple base stations jointly design a transmission strategy by sharing channel state information. Particularly, we tackle the signal-to-interference-plus-noise ratio (SINR) balancing problem to maximize the worst-user rate. We consider single-input single-output (SISO) interference channels (IFC) where all nodes are equipped with a single antenna, and there is one active user in each cell. First, achievable rate regions with symmetric complex (SC) and asymmetric complex (AC) signaling techniques are investigated. Then, we present the optimal and near-optimal SINR balancing algorithms with the SC signaling for two and three user SISO IFC. Due to residual interference, the worst-user rate of the SC signaling is saturated at high signal-to-noise-ratio region. To alleviate this problem, we also propose efficient balancing schemes based on the AC signaling for both two and three-user cases. Simulation results confirm effectiveness of the proposed SINR balancing algorithms and show that a substantial gain of the AC signaling is achieved over the SC signaling in terms of the maximum worst-user rate.
机译:在本文中,我们研究协作式多小区下行链路系统,其中多个基站通过共享信道状态信息共同设计传输策略。特别是,我们解决了信号干扰加噪声比(SINR)的平衡问题,以最大限度地提高最差用户使用率。我们考虑单输入单输出(SISO)干扰信道(IFC),其中所有节点都配备有单个天线,并且每个小区中只有一个活跃用户。首先,研究了采用对称复数(SC)和非对称复数(AC)信令技术可实现的速率区域。然后,我们针对两个和三个用户SISO IFC提出了带有SC信令的最佳和接近最佳SINR平衡算法。由于残留干扰,SC信令的最坏用户速率在高信噪比区域达到饱和。为了缓解此问题,我们还针对两个和三个用户的情况提出了基于AC信令的有效平衡方案。仿真结果证实了所提出的SINR平衡算法的有效性,并表明就最大最坏用户速率而言,在SC信令上可以实现AC信令的显着增益。

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