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首页> 外文期刊>IEEE Transactions on Communications >A Unified Capacity Analysis for Wireless Systems With Joint Multiuser Scheduling and Antenna Diversity in Nakagami Fading Channels
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A Unified Capacity Analysis for Wireless Systems With Joint Multiuser Scheduling and Antenna Diversity in Nakagami Fading Channels

机译:Nakagami衰落信道中具有联合多用户调度和天线分集的无线系统的统一容量分析

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A Unified Capacity Analysis for Wireless Systems With Joint Multiuser Scheduling and Antenna Diversity in Nakagami Fading Channels In this paper, we present a cross-layer analytical framework to jointly investigate antenna diversity and multiuser scheduling under the generalized Nakagami fading channels. We derive a unified capacity formula for the multiuser scheduling system with different multiple-input multiple-output antenna schemes, including: 1) selective transmission/selective combining (ST/SC); (2) maximum ratio transmission/maximum ratio combining (MRT/MRC); 3) ST/MRC; and 4) space–time block codes (STBC). Our analytical results lead to the following four observations regarding the interplay of multiuser scheduling and antenna diversity. First, the higher the Nakagami fading parameter, the lower the multiuser diversity gain for all the considered antenna schemes. Second, from the standpoint of multiuser scheduling, the multiple antennas with the ST/SC method can be viewed as virtual users to amplify multiuser diversity order. Third, the boosted array gain of the MRT/MRC scheme can compensate the detrimental impact of the reduced amount of fading gain on multiuser scheduling, thereby resulting in greater capacity than the ST/SC method. Last, employing the STBC scheme together with multiuser diversity may cause capacity loss due to the reduced amount of fading gain, but without the supplement of array gain.
机译:在Nakagami衰落信道中具有联合多用户调度和天线分集的无线系统的统一容量分析在本文中,我们提出了一个跨层分析框架,以联合研究广义Nakagami衰落信道下的天线分集和多用户调度。我们推导了针对具有不同多输入多输出天线方案的多用户调度系统的统一容量公式,包括:1)选择性传输/选择性组合(ST / SC); (2)最大比传输/最大比合并(MRT / MRC); 3)ST / MRC; 4)时空分组码(STBC)。我们的分析结果得出以下有关多用户调度和天线分集相互作用的四个结论。首先,Nakagami衰落参数越高,所有考虑的天线方案的多用户分集增益就越低。其次,从多用户调度的角度来看,可以将采用ST / SC方法的多个天线视为虚拟用户,以放大多用户分集顺序。第三,MRT / MRC方案的增加的阵列增益可以补偿衰落增益减少对多用户调度的不利影响,从而产生比ST / SC方法更大的容量。最后,将STBC方案与多用户分集一起使用可能会由于减少的衰落增益量而导致容量损失,但不增加阵列增益。

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