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首页> 外文期刊>IEEE Transactions on Signal Processing >Noncoherent Communication in Multiple-Antenna Systems: Receiver Design and Codebook Construction
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Noncoherent Communication in Multiple-Antenna Systems: Receiver Design and Codebook Construction

机译:多天线系统中的非相干通信:接收机设计和代码本构建

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In this paper, we address the problem of space-time codebook design for noncoherent communications in multiple-antenna wireless systems. In contrast with other approaches, the channel matrix is modeled as an unknown deterministic parameter at both the receiver and the transmitter, and the Gaussian observation noise is allowed to have an arbitrary correlation structure, known by the transmitter and the receiver. In order to handle the unknown deterministic space-time channel, a generalized likelihood ratio test (GLRT) receiver is considered. A new methodology for space-time codebook design under this noncoherent setup is proposed. It optimizes the probability of error of the GLRT receiver''s detector in the high signal-to-noise ratio (SNR) regime by solving a high-dimensional nonlinear nonsmooth optimization problem in a two-step approach. First, a convex semidefinite programming (SDP) relaxation of the codebook design problem yields a rough estimate of the optimal codebook. This is then refined through a geodesic descent optimization algorithm that exploits the Riemannian geometry imposed by the power constraints on the space-time codewords. The results obtained through computer simulations illustrate the advantages of our method. For the specific case of spatio-temporal white observation noise, our codebook constructions replicate the performance of state-of-the-art known solutions. The main point here is that our methodology permits extending the codebook construction to any given correlated noise environment. The simulation results show good performance of these new designed codes in colored noise setups.
机译:在本文中,我们解决了多天线无线系统中非相干通信的时空码本设计问题。与其他方法相比,信道矩阵在接收器和发射器处均被建模为未知的确定性参数,并且高斯观测噪声被允许具有发射器和接收器已知的任意相关结构。为了处理未知的确定性时空信道,考虑了通用似然比测试(GLRT)接收器。提出了一种在这种非相干设置下进行时空码本设计的新方法。通过采用两步法解决高维非线性非平滑优化问题,它可以在高信噪比(SNR)情况下优化GLRT接收器检测器的错误概率。首先,对码本设计问题的凸半定规划(SDP)松弛产生了对最佳码本的粗略估计。然后通过测地线下降优化算法对此进行完善,该算法利用了功率约束对时空码字施加的黎曼几何。通过计算机仿真获得的结果说明了我们方法的优势。对于时空白色观测噪声的特定情况,我们的代码本结构可复制最新解决方案的性能。这里的重点是我们的方法允许将码本构造扩展到任何给定的相关噪声环境。仿真结果显示了这些新设计代码在彩色噪声设置中的良好性能。

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