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Joint channel estimation and decoding of space-time block codes in AF MIMO relay networks

机译:AF MIMO中继网络中空时分组码的联合信道估计和解码

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In this paper, we discuss methods of channel estimation and decoding in amplify-and-forward (AF) based multiple-input multiple-output (MIMO) relay networks. We derive three different decoders, namely decoder-I, decoder-II, and decoder-III, for orthogonal space-time block codes using pilot symbol-aided channel estimation over Rayleigh fading MIMO channels in an AF based cooperative communication system. Decoder-I is a decoupled decoder which uses estimated channel gains in decoding. The other two decoders jointly process the received pilot signals and data samples through vector derivative (decoder-II) and probability density function marginalization (decoder-III). Simulation results show that decoder-II and decoder-III have almost the same performance. However, decoder-II is computationally less complex as compared to decoder-III. We also derive an expression for the moment generating function (m.g.f.) of the received signal-to-noise ratio at the destination for decoder-I and by using this m.g.f. the analytical symbol error rate is obtained.
机译:在本文中,我们讨论了基于放大转发(AF)的多输入多输出(MIMO)中继网络中的信道估计和解码方法。我们在基于AF的协作通信系统中使用瑞利衰落MIMO信道上的导频符号辅助信道估计,为正交空时分组码推导了三种不同的解码器,即解码器I,解码器II和解码器III。解码器-I是解耦的解码器,它在解码中使用估计的信道增益。另外两个解码器通过矢量导数(解码器II)和概率密度函数边缘化(解码器III)共同处理接收到的导频信号和数据样本。仿真结果表明,解码器II和解码器III具有几乎相同的性能。然而,与解码器-III相比,解码器-II在计算上不那么复杂。我们还通过使用该m.g.f来导出接收器在目的地的接收信噪比的矩量生成函数(m.g.f.)的表达式。获得分析符号错误率。

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