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Channel estimation for a discrete-time RAKE receiver in a WCDMA downlink: algorithms and repercussions on SINR

机译:WCDMA下行链路中离散时间RAKE接收机的信道估计:SINR的算法和影响

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The conventional receiver for DS-CDMA communications is the RAKE receiver which is a matched filter (MF), matched to the operations of spreading, pulse shape filtering and channel filtering. The RAKE receiver assumes a sparse/pathwise channel model so that the channel matched filtering gets done pathwise, with delay adjustment and decorrelation per path and maximum-ratio combining of path contributions at the symbol rate. Original RAKE receivers work with continuous delays, which are tracked by an early-late scheme. This requires signal interpolation and leads to suboptimal treatment of diffuse portions in the channel impulse response. These disadvantages can be avoided by a discrete-time RAKE, operating at a certain oversampled rate. Proper sparse modeling of the channel is an approximation problem that requires exploitation of the limited bandwidth of the pulse shape. We propose and simulate a number of sparse channel approximation algorithms along the lines of matching pursuit, of which the recursive early-late (REL) approach appears most promising. We also analyze and simulate the effect of channel estimation on the RAKE output SINR.
机译:用于DS-CDMA通信的常规接收机是RAKE接收机,它是一个匹配滤波器(MF),与扩频,脉冲形状滤波和信道滤波操作相匹配。 RAKE接收器采用稀疏/按路径的信道模型,以便按路径进行信道匹配的滤波,并按符号进行每路径的延迟调整和去相关以及路径贡献的最大比率组合。原始的RAKE接收器具有连续的延迟,这些延迟可以通过早期方案进行跟踪。这需要信号插值,并导致对信道脉冲响应中的扩散部分进行次优处理。这些缺点可以通过以一定的过采样率运行的离散时间RAKE来避免。通道的正确稀疏建模是一个近似问题,需要利用脉冲形状的有限带宽。我们按照匹配追踪的方式提出并模拟了许多稀疏信道近似算法,其中递归早晚(REL)方法看来是最有前途的。我们还分析和模拟了信道估计对RAKE输出SINR的影响。

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