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QoS-based space-frequency prefiltering for TDD MC-CDMA systems in slowly time-varying channels

机译:时变缓慢信道中TDD MC-CDMA系统的基于QoS的空频预滤波

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This work presents a space-frequency prefiltering scheme for slowly time-varying TDD MC-CDMA downlink communications with multiple antennas at the base station (BS). Unlike the conventional spatially uncorrelated block fading channel model, both channel variation in each packet and spatial correlation are considered in the design. In the TDD mode, the mobile terminals (MTs) transmit training signals at the end of each uplink packet. In the following downlink packet, the BS computes the signal weights on different antennas and subcarriers for each MT in each symbol period based on the channel state predicted from the received training signals. The goal is to minimize the total required transmit power while keeping the received signal-to-interference-plus-noise ratio (SINR) as the target for each MT. Moreover, the maximum packet length for satisfying the SINR requirements has been determined. The results indicate that the total required transmit power can be reduced by a lower mobile speed or more BS antennas. As a result, the maximum packet length can be extended in virtue of the power reduction.
机译:这项工作提出了一种空频预滤波方案,用于在基站(BS)与多个天线缓慢时变的TDD MC-CDMA下行链路通信。与常规的空间不相关的块衰落信道模型不同,设计中考虑了每个数据包中的信道变化和空间相关性。在TDD模式下,移动终端(MT)在每个上行链路分组的末尾发送训练信号。在随后的下行链路分组中,BS基于从接收到的训练信号预测的信道状态,针对每个符号周期中的每个MT,计算不同天线和子载波上的信号权重。目标是在使接收到的信号干扰加噪声比(SINR)保持为每个MT的目标的同时,将总所需的发射功率降至最低。而且,已经确定了满足SINR要求的最大分组长度。结果表明,较低的移动速度或更多的BS天线可以降低总的所需发射功率。结果,可以通过降低功率来扩展最大分组长度。

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