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首页> 外文期刊>Wireless Communications, IEEE Transactions on >Coordinated Port Selection and Beam Steering Optimization in a Multi-Cell Distributed Antenna System using Semidefinite Relaxation
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Coordinated Port Selection and Beam Steering Optimization in a Multi-Cell Distributed Antenna System using Semidefinite Relaxation

机译:半定松弛法在多小区分布式天线系统中协调端口选择和波束转向优化

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In this paper, we consider coordinated downlink transmission in a cellular system wherein each base station (BS) has multiple geographically dispersed antenna ports. Each port uses a fixed transmit power and the goal of the BSs is to collectively determine the subset of ports and the corresponding beam steering coefficients that maximize the minimum signal-to-interference-plus-noise ratio observed by the user terminals. This problem is NP-hard. To circumvent this difficulty, a two-stage polynomial-complexity technique that relies on semidefinite relaxation and Gaussian randomization is developed. It is shown that, for the considered scenarios, the port state vectors and beam steering coefficients generated by the proposed technique yield a performance comparable to that yielded by exhaustive search, but with a significantly less computational complexity. It is also shown that the proposed technique results in significant power savings when compared with other transmission strategies proposed in the literature.
机译:在本文中,我们考虑了蜂窝系统中的协调下行链路传输,其中每个基站(BS)具有多个地理位置分散的天线端口。每个端口使用固定的发射功率,并且BS的目标是共同确定端口子集和相应的波束控制系数,以最大程度地提高用户终端观察到的最小信号干扰加噪声比。这个问题是NP难题。为了克服这一困难,开发了一种基于半确定松弛和高斯随机化的两阶段多项式复杂性技术。结果表明,对于所考虑的场景,所提出的技术所产生的端口状态矢量和波束转向系数所产生的性能可与穷举搜索所产生的性能相媲美,但计算复杂度却大大降低。还表明,与文献中提出的其他传输策略相比,提出的技术可节省大量功率。

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