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Adaptive RAKE-blind source recovery algorithms for 3GPP UMTS/WCDMA downlink receivers

机译:用于3GPP UMTS / WCDMA下行链路接收机的自适应RAKE盲源恢复算法

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Wideband code division multiple access (WCDMA) is the dominant air interface for the Universal Mobile Telephone Services (UMTS) frequency domain duplex (FDD) mode and for future IMTS wireless networks. The transmitted CDMA signals from based station (BS) propagate through noisy multipath fading communication channels before arriving at the receiver of the mobile station (MS). In contrast to classical single-user detection (SUD) algorithms, which do not provide the requisite performance for modern high data rate applications, optimal multi-user detection (MUD) approaches require a lot of a-priori information not available to the user equipment (UE). We propose two adaptive approaches namely Rake-blind source recovery (RAKE-BSR) and RAKE-principal component analysis (RAKE-PCA) that fuse an info-theoretic stage into a standard RAKE receiver. This results in robust detection algorithms with performance exceeding the standard LMMSE detectors for WCDMA systems under conditions of congestion, imprecise channel estimation and unmodeled multiple access interference (MAI).
机译:宽带码分多址(WCDMA)是通用移动电话服务(UMTS)频域双工(FDD)模式的主导空中接口,以及未来IMTS无线网络。在到达移动站(MS)的接收器之前,来自基于站的站(BS)的发送的CDMA信号通过噪声多径衰落通信信道传播。与经典单用户检测(SUD)算法相比,这不提供现代高数据速率应用的必要性能,最佳的多用户检测(MUD)方法需要许多不适用于用户设备的A-PRESTI信息(UE)。我们提出了两个自适应方法,即耙盲源恢复(Rake-BSR)和Rake-PCA),并将信息定理级熔断到标准Rake接收器中。这导致鲁棒检测算法,性能超过了在拥塞条件下的WCDMA系统的标准LMMSE探测器,不精确的信道估计和未拼接的多址干扰(MAI)。

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