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首页> 外文期刊>IEEE Transactions on Vehicular Technology >A Random Beamforming Technique for Omnidirectional Coverage in Multiple-Antenna Systems
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A Random Beamforming Technique for Omnidirectional Coverage in Multiple-Antenna Systems

机译:多天线系统全向覆盖的随机波束成形技术

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摘要

A random beamforming (RBF) technique is proposed to achieve omnidirectional coverage for broadcast channels in multiple-antenna systems. In the proposed scheme, the time and frequency resources for communication are divided into many time-frequency blocks (TFBs). A random pattern is employed on each TFB, with the average power in all directions over many TFBs being equal. The design criteria and detailed design of the random pattern sequence are given. We propose a basic RBF scheme and an Alamouti-enhanced scheme, as well as the corresponding structures of the transmitter and the receiver. Simulations are carried out for an eight-element unitary linear array with half-waveform separation in a fast-fading channel, showing that the proposed scheme greatly outperforms the cyclic delay diversity scheme and is robust to calibration errors and failures of radio-frequency chains.
机译:提出了一种随机波束成形(RBF)技术,以实现多天线系统中广播信道的全向覆盖。在所提出的方案中,用于通信的时间和频率资源被分成许多时频块(TFB)。在每个TFB上采用随机模式,许多TFB的所有方向上的平均功率均相等。给出了随机模式序列的设计准则和详细设计。我们提出了基本的RBF方案和Alamouti增强方案,以及发射机和接收机的相应结构。在快速衰落信道中对具有半波形分离的八元素单一线性阵列进行了仿真,结果表明,该方案大大优于循环延迟分集方案,并且对校准误差和射频链的故障具有鲁棒性。

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