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Automatic Design of Orthogonal or Near-Orthogonal Linear Dispersive Space-Time Block Codes

机译:正交或近正交线性色散时空分组码的自动设计

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This paper considers a wireless multiple-input multiple-output (MIMO) communication system in a frequency-non-selective scenario with spatially uncorrelated Rayleigh fading channel coefficients and investigates the design of linear dispersive (LD) space-time block codes. Efficient LD codes are obtained by optimizing the constituent weight matrices so that an upper bound on the union bound of the codeword error probability is minimized. Interestingly, the proposed design procedure automatically generates LD codes that either correspond to, or are close to, the well-known class of orthogonal space-time block (OSTB) codes. A theoretical analysis confirms this by proving that OSTB codes are indeed optimal, when the setup under study permits their existence. Simulation results demonstrate the excellent performance of the designed codes. In particular, the importance of the codes' near-orthogonal property is illustrated by showing that low-complexity linear equalizer techniques can be used for decoding purposes while incurring a relatively moderate performance loss compared with optimal maximum-likelihood (ML) decoding.
机译:本文考虑了一种在空间非相关瑞利衰落信道系数为非频率选择的情况下的无线多输入多输出(MIMO)通信系统,并研究了线性分散(LD)时空分组码的设计。通过优化组成权重矩阵可以获得有效的LD码,从而使码字错误概率的并集边界的上限最小。有趣的是,提出的设计程序会自动生成与众所周知的正交空时块(OSTB)码相对应或相近的LD码。理论分析通过证明在研究设置允许存在的情况下,OSTB代码确实是最佳的,从而证实了这一点。仿真结果证明了所设计代码的出色性能。尤其是,通过显示低复杂度线性均衡器技术可用于解码目的,同时与最佳最大似然(ML)解码相比,会造成相对适度的性能损失,从而说明了码的近正交属性的重要性。

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