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A new family of optimized orthogonal Space-Times codes for PPM-based MIMO systems with imperfect channel estimates

机译:具有不完善信道估计的基于PPM的MIMO系统的优化正交空时码新系列

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In this contribution, we develop a single Multiple-Input Multiple Output (MIMO) transceiver for Orthogonal PPM (OPPM) data transmitted over (baseband) faded MIMO channels with a priori unknown path-gains. The signaling-scheme we adopt allows to equip the Maximum-Likelihood receiver with reliable estimates of the (possibly time-varying) MIMO channel, without reducing the conveyed information throughput. Hence, after evaluating the performance of the proposed transceiver via a suitable version of the Union-Chernoff Bound, we introduce a novel family of unitary orthogonal Space-Times Block Codes (e.g., the Space-Time OPPM codes), that are able to attain both maximum diversity and coding gains. Afterwards, we present closed-form formulas for evaluating the SNR loss induced by mistiming effects possibly impairing the received signals. Lastly, we report several numerical results supporting both the medium/long coverage ranges attained by the proposed transceiver in outdoor applications and its performance robustness against correlated channel fading, mistiming effects and degradation induced by dense-multipath fading.
机译:在此贡献中,我们开发了单个多输入多输出(MIMO)收发器,用于通过先验未知路径增益在(基带)衰落MIMO信道上传输的正交PPM(OPPM)数据。我们采用的信令方案允许为最大似然接收器配备MIMO信道(可能随时间变化)的可靠估计,而不会降低传送的信息吞吐量。因此,在通过Union-Chernoff Bound的合适版本评估了提议的收发器的性能之后,我们介绍了一个新颖的of正交空时分组码系列(例如,空时OPPM码),能够实现最大分集和编码增益。此后,我们提出了封闭形式的公式,用于评估由于可能影响接收信号的雾化效应而引起的SNR损失。最后,我们报告了一些数值结果,这些数据支持拟议的收发器在室外应用中实现的中/长覆盖范围,以及针对相关信道衰落,雾化效应和由密集多径衰落引起的劣化的性能鲁棒性。

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