首页> 外文会议>IEEE International Conference on Acoustics, Speech, and Signal Processing >MULTI-USER MIMO ANTENNA SYSTEMS USING SEMI-ORTHOGONAL SPACE DIVISION MULTIPLEXING AND SINGLE-USER QR-TRIANGULAR DETECTION
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MULTI-USER MIMO ANTENNA SYSTEMS USING SEMI-ORTHOGONAL SPACE DIVISION MULTIPLEXING AND SINGLE-USER QR-TRIANGULAR DETECTION

机译:多用户MIMO天线系统使用半正交空间分割多路复用和单用户QR-Trigular检测

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Orthogonal space division multiplexing (OSDM) can be achieved by utilizing multiple antennas at the base station (BS) and all mobile stations (MS) (or multi-user MIMO) jointly. Recently in [1, 2], two iterative methods have been proposed to obtain the antenna weighting for realizing OSDM in the downlink. However, both suffer from high complexity if the number of BS antennas or users involved is large, as the computational complexity grows with the number of users to the fourth power. In this paper, by allowing the signal streams for a user to be non-orthogonal, we propose a semi-OSDM system for complexity reduction. In the proposed semi-OSDM system, the signals of multiple users are still orthogonal, but for each user, the multiple signaling streams are made triangular instead so that a simple backward substitution with symbol cancellation can be performed to maintain an accurate signal detection. Remarkably, the antenna weighting for semi-OSDM can be expressed in a closed form. Simulation results show that semi-OSDM has mild performance degradation, but it requires much lower computational complexity (by an order of magnitude) when compared with existing OSDM systems.
机译:通过在基站(BS)和所有移动台(或MS)(或多用户MIMO)中利用多个天线来实现正交空间多路复用(OSDM)。最近在[1,2]中,已经提出了两个迭代方法以获得用于在下行链路中实现OSDM的天线加权。然而,如果所涉及的BS天线或用户的数量大,则患有高复杂性,因为计算复杂性随着用户的数量增加到第四个电源。在本文中,通过允许用户的信号流是非正交的,我们提出了一个半OSDM系统以进行复杂性。在所提出的半OSDM系统中,多个用户的信号仍然是正交的,但对于每个用户,所述多个信令流被制成三角形,而不是使之与符号消除的简单后向代入可以被执行以保持精确的信号检测。值得注意的是,半osdm的天线加权可以以封闭的形式表示。仿真结果表明,与现有OSDM系统相比,半OSDM具有温和的性能下降,但它需要更低的计算复杂性(按幅度顺序)。

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