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A Power Control Method for Channel Non驴Reciprocity Compensation in Hybrid Duplexing

机译:混合双工中信道非驴互易补偿的功率控制方法

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This paper proposes a power control method for a hybrid duplexing scheme which has both time division duplex (TDD) and frequency division duplex (FDD) components. In the proposed method, the base station (BS) adaptively and continuously changes the transmission power for a mobile station (MS) whose transmission parameters have been scheduled by exploiting channel state information (CSI) obtained through channel reciprocity. The TDD component in hybrid duplexing makes it possible for the BS to exploit the channel reciprocity and the FDD component enables fast feed-back from MS to BS. By using the proposed power control method, the BS can quickly change the transmission power for a MS during a down-link (DL) frame. This counteracts the change in link condition due to MS mobility and/or burst interference (i.e. channel non-reciprocity problem). This allows the scheduling of BS made in the beginning of DL frame to be valid for the whole DL frame since the MS can experience almost constant link quality during a DL frame. Our simulation results show that the proposed power control method can significantly improve bit error rate (BER) performance
机译:本文提出了一种用于混合双工方案的电力控制方法,其具有时间分配双工(TDD)和频分双工(FDD)组件。在所提出的方法中,基站(BS)自适应地和连续地改变移动站(MS)的传输功率,其通过利用通过信道互惠获得的信道状态信息(CSI)来调度传输参数。混合双工中的TDD分量使得BS可以利用信道互惠,并且FDD组件能够从MS到BS的快速反馈。通过使用所提出的功率控制方法,BS可以在下链路(DL)帧期间快速改变MS的传输功率。这抵消了由于MS移动性和/或突发干扰引起的链接条件的变化(即频道非互惠问题)。这允许在DL帧的开头进行的BS调度对于整个DL帧有效,因为MS可以在DL帧期间经历几乎恒定的链路质量。我们的仿真结果表明,所提出的功率控制方法可以显着提高误码率(BER)性能

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