闭环下行本征波束形成的天线权重验证

A. Seeger, M. Sikora, W. Utschick
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引用次数: 6

摘要

在WCDMA系统中,基站的自适应天线在增加下行链路容量和覆盖范围方面具有很大的潜力。闭环发射分集是自适应天线控制中最有前途的技术之一。该方法通过从移动站到基站的下行快衰落特性反馈来实现波束形成增益和分集增益。由于反馈速率有限,通常从限制集合中选择最佳的天线权向量进行报告。如果这种反馈受到传输错误的影响,则会出现两种性能下降效应:使用次优权重向量和在移动站发生信道估计错误。产生后一种效应是因为移动站从报告的权重向量和基于公共导频信道的每个天线的信道估计中导出专用信道的信道估计。实际上,反馈误差严重地扭曲了这个估计,并导致误差下限效应。然而,信道估计也可以基于专用信道本身的导频符号。该估计具有较高的方差,但不受反馈误差的影响。如果在一个称为天线重量验证的过程中结合这两个估计,性能可以显着提高。本文提出了一种具有最大估计精度和消除误差层的特征波束形成器天线权值验证方案。理论分析和链路级仿真证明了这一点。结果表明,在1%的帧错误率下,这种天线重量验证将性能下降到0.2 dB。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antenna weight verification for closed-loop downlink eigenbeamforming
Adaptive antennas at the base stations have a big potential to increase downlink capacity and coverage in WCDMA systems. One of the most promising techniques of adaptive antenna control is closed-loop transmit diversity. This method achieves beamforming gain as well as diversity gain by feedback of downlink fast fading characteristics from mobile station to base station. Due to the limited feedback rate, typically the best antenna weight vector chosen from a restricted set is reported. If this feedback is subject to transmission errors, two performance degrading effects occur: a suboptimal weight vector is used and channel estimation errors take place at the mobile station. The latter effect arises because the mobile station derives the channel estimate for the dedicated channel from the reported weight vector and the channel estimate per antenna based on the common pilot channel. In effect, feedback errors severely distort this estimate and lead to an error floor effect. However, channel estimation can also be based on the pilot symbols in the dedicated channel itself. This estimate has high variance, but is not distorted by feedback errors. If both estimates are combined in a process called antenna weight verification, performance can be dramatically increased. Within this paper an antenna weight verification scheme for eigenbeamformer is presented, which maximizes the estimation accuracy and eliminates the error floor. This is demonstrated by theoretical analysis and link-level simulations. It is shown that this antenna weight verification reduces the performance degradation to 0.2 dB at 1% frame error rate.
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