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Sequence Estimation with Transmit Diversity for Wireless Communications

机译:无线通信中具有发射分集的序列估计

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摘要

In this paper, an optimum sequence estimation algorithm for wireless systems with Alamouti's two transmitter diversity in the presence of multipath fading is proposed. The algorithm is based on a jointly integrative channel and sequence estimation according to the maximum likelihood (ML) criterion, using the Expectation-Maximization (EM) algorithm employing an M-level phase-shift keying (M-PSK) modulation scheme with additive Gaussian noise. The discrete multipath channel is represented in terms of the channel gains from each transmit antenna to the receive antenna. EM algorithm estimates jointly the complex channel parameters of each channel and the data sequence transmitted, iteratively, which converges to the true ML solution. The channel estimation is achieved in a simple way through the iterative equations by decoupling of the signals transmitted from different antennas. The algorithm is applied to the trellis coded modulation systems and the efficiency of the algorithm proposed has been shown with computer simulations. THe simulation results show that the EM algorithm converges quickly for fast fading channels. The performance of the EM-based decoder approaches that of the ML receive which has perfect knowledge of the channel.
机译:本文提出了一种在存在多径衰落的情况下,具有Alamouti的两个发射机分集的无线系统的最佳序列估计算法。该算法基于根据最大似然(ML)准则的联合集成信道和序列估计,使用期望最大化(EM)算法,该算法采用M级相移键控(M-PSK)调制方案和加性高斯噪声。离散多径信道用从每个发射天线到接收天线的信道增益表示。 EM算法可以迭代地共同估算每个通道的复杂通道参数和传输的数据序列,从而收敛到真正的ML解决方案。通过对从不同天线发射的信号进行解耦,可以通过迭代方程式以简单的方式实现信道估计。该算法被应用于网格编码调制系统,并通过计算机仿真证明了该算法的有效性。仿真结果表明,EM算法在快速衰落信道下收敛迅速。基于EM的解码器的性能接近ML接收的性能,而ML接收对通道具有完全的了解。

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