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Multiuser MIMO Systems with Random Transmit Beamforming

机译:具有随机发射波束成形的多用户MIMO系统

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This paper considers the wireless downlink transmissions in a single cell environment, for which the base station (BS) is assumed to schedule its transmission to each mobile station (MS) on a time-slot basis. Only one MS is selected for transmission during each time-slot and the selected MS possibly changes from one time-slot to another. This transmission scheme is thus referred to as dynamic time-division multiple-access (D-TDMA). Random transmit beamforming with the feedback of effective signal-to-noise ratio (ESNR) was proposed by Viswanath and Tse [IEEE Transactions on Information Theory, Vol. 48, No. 6, pp. 1277-1294, 2002] for D-TDMA-based systems in which multiple transmit antennas are equipped at the BS but only single receive antenna is equipped at each MS, or the so-called "MISO" systems. It was also shown in [Viswanath and Tse, 2002] that when the number of MSs in the system becomes large, the system throughput achieved by random transmit beamforming converges to that by coherent transmit beamforming which, however, requires the complete channel state information (CSI) of each MS at the BS. This paper extends upon the work in [Viswanath and Tse, 2002] to a more general scenario for which multiple transmit antennas and multiple receive antennas are equipped at the BS and each MS, respectively, or the so-called "MIMO" systems. We also consider several linear and nonlinear receiver structures and propose novel power allocation schemes to further improve the achievable system throughput. The throughput performance of the proposed receivers and power allocations schemes is compared through computer simulations and their fast convergence to the system throughput by coherent transmit beamforming is demonstrated.
机译:本文考虑了单小区环境中的无线下行链路传输,假定基站(BS)在一个时隙的基础上调度其向每个移动台(MS)的传输。在每个时隙期间仅选择一个MS进行传输,并且所选择的MS可能从一个时隙改变为另一个时隙。因此,该传输方案称为动态时分多址(D-TDMA)。 Viswanath和Tse提出了带有有效信噪比(ESNR)反馈的随机发射波束成形。 [第48卷,第6期,第1277-1294页,2002年],用于基于D-TDMA的系统,其中在BS处装有多个发射天线,而在每个MS处仅装有单个接收天线,即所谓的“ MISO”系统。在[Viswanath和Tse,2002]中还显示,当系统中的MS数量变大时,通过随机发射波束成形实现的系统吞吐量会收敛到通过相干发射波束成形获得的系统吞吐量,然而,这需要完整的信道状态信息( BS中每个MS的CSI)。本文将在[Viswanath and Tse,2002]中的工作扩展到一个更通用的场景,在该场景中,分别在BS和每个MS或所谓的“ MIMO”系统上配备多个发射天线和多个接收天线。我们还考虑了几种线性和非线性接收器结构,并提出了新颖的功率分配方案,以进一步提高可实现的系统吞吐量。通过计算机仿真比较了所提出的接收机的吞吐量性能和功率分配方案,并证明了它们通过相干发射波束成形快速收敛到系统吞吐量。

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