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首页> 外文期刊>IEEE Transactions on Vehicular Technology >A Two-Dimensional RAKE Receiver Architecture With an FFT-Based Matched Filtering
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A Two-Dimensional RAKE Receiver Architecture With an FFT-Based Matched Filtering

机译:具有基于FFT的匹配滤波的二维RAKE接收器架构

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This paper proposes a two-dimensional (2-D) RAKE receiver, which is a spatial-temporal matched filter implemented in the frequency domain. To form a beam pattern, we calculate the spatial frequency spectra of received signals on the antenna array using fast Fourier transform (FFT). After FFT beamforming, a bank of FFT-based matched filters is used to perform code matching. Afterward, the code-matched signals are summed up with maximal-ratio combining through a spatial-temporal channel-matched filter implemented in the frequency domain. This 2-D RAKE receiver includes a channel sounder that is used to estimate the spatial and temporal channel impulse response parameters, such as delays, directions of arrivals, and complex gains of multipath components. Monte Carlo simulations have been used to evaluate the receiver bit-error rate performance in both static channel and mobile radio channel environments. Simulation results show that the RAKE receiver performs well in both kinds of channels.
机译:本文提出了一种二维(2-D)RAKE接收机,它是在频域中实现的时空匹配滤波器。为了形成波束方向图,我们使用快速傅里叶变换(FFT)计算天线阵列上接收信号的空间频谱。在进行FFT波束成形之后,将使用一组基于FFT的匹配滤波器来执行代码匹配。然后,通过在频域中实现的时空信道匹配滤波器,将码匹配信号与最大比合并在一起。该2-D RAKE接收机包括一个信道探测仪,用于估计空间和时间信道冲激响应参数,例如延迟,到达方向和多径分量的复数增益。蒙特卡洛模拟已用于评估静态信道和移动无线电信道环境中的接收机误码率性能。仿真结果表明,RAKE接收机在两种信道上均表现良好。

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