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An Analysis of the Eigenbeamformer technique in a simulated WCDMA Network

机译:模拟WCDMA网络中的特征媒体信息技术分析

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In this paper, we present an analysis of the Eigenbeamformer (EB) technique in WCDMA cells using the single antenna transmission technique and the two-antenna Space Time Transmit Diversity (STTD) technique [6] as the references and utilizing the Dedicated Physical Channel (DPCH) for speech service as the traffic model. The EB [4] is a closed loop beamforming technique, with terminal assisted feedback, designed for multiple Tx-antennas, where the data is transmitted via orthogonal Eigenbeams. The beams are pre-calculated at each terminal by long-term integration of the correlation matrix that is diagonalized, and the Eigenvectors of this correlation matrix are sent to the base station, which then creates the beams for each terminal respectively. STTD is an open loop diversity scheme given by the orthogonal Alamouti matrix. EB is a candidate for four transmit (Tx) antenna diversity extension, and STTD is a well-known diversity technique in the 3GPP release'99 specifications. We will show some system performance results using a dynamic network simulator: the effect of some important non-idealities are included in the assumptions and they are expected to cause some degradation in performance e.g. because of the increased interference.
机译:在本文中,我们在使用单天天线传输技术和双天线空间时间传输分集(STTD)技术[6]作为参考并利用专用物理信道(STTD)技术[6]展示了WCDMA单元中的特征格式(EB)技术的分析。 DPCH)作为流量模型的语音服务。 EB [4]是闭环波束成形技术,终端辅助反馈,专为多个TX-天线设计,其中数据通过正交特征来传输。通过对角度的相关矩阵的长期积分在每个终端处预先计算光束,并且将该相关矩阵的特征向量被发送到基站,然后将其分别为每个终端创建光束。 STTD是由正交Alamouti矩阵给出的开环分集方案。 EB是四个传输(TX)天线分集扩展的候选者,STTD是3GPP释放的99种规范中的知名分集技术。我们将使用动态网络模拟器显示一些系统性能结果:一些重要的非理想的效果包括在假设中,并且预计它们将导致性能降低。由于干扰增加。

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