Autonomous beam coordination for the downlink of an IMT-Advanced cellular system

Jan Ellenbeck, M. Hammoud, B. Lazarov, C. Hartmann
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引用次数: 6

Abstract

Cellular systems like Long Term Evolution Advanced (LTE-Advanced) aim at reusing the whole spectrum in each cell which leads to high inter-cell interference and thus low signal to interference and noise ratio (SINR) conditions for users at the cell edge. One way to utilize multiple antennas at the base station is to perform downlink transmit beamforming which besides increasing the received power at the mobile also has the potential to reduce interference when collisions of beams from different base stations are avoided. To this end we propose an autonomous coordination mechanism that allows cells to coordinate their beams in the frequency domain. In addition to increasing the SINR, it reduces interference fluctuations (the “flash light” effect) due to uncoordinated scheduling in neighbor cells thus making the interference situation more predictable. This further boosts the throughput potential. The proposed scheme is based on feedback from mobiles to their serving base station but does not require inter-cell signaling. By means of system level simulations we show that our autonomous approach converges after few iterations and yields significant cell mean and cell-edge throughput improvements.
IMT-Advanced蜂窝系统下行链路的自主波束协调
像LTE-Advanced这样的蜂窝系统旨在重用每个小区中的整个频谱,这导致小区间的高干扰,从而使小区边缘的用户的信噪比(SINR)较低。在基站上利用多天线的一种方法是执行下行链路发射波束成形,其除了增加在移动设备上的接收功率外,还具有在避免来自不同基站的波束碰撞时减少干扰的潜力。为此,我们提出了一种自主协调机制,允许小区在频域协调其波束。除了增加信噪比外,它还减少了由于相邻单元不协调调度而产生的干扰波动(“闪光”效应),从而使干扰情况更可预测。这进一步提高了吞吐量潜力。所提出的方案基于手机对其服务基站的反馈,但不需要小区间信令。通过系统级仿真,我们证明了我们的自治方法在几次迭代后收敛,并产生了显着的小区平均和小区边缘吞吐量改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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