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首页> 外文期刊>IEEE transactions on wireless communications >Minimum probability of error-based methods for adaptive multiuser detection in multipath DS-CDMA channels
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Minimum probability of error-based methods for adaptive multiuser detection in multipath DS-CDMA channels

机译:多径DS-CDMA通道中自适应多用户检测的基于误差的最小概率

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Direct-sequence code-division multiple-access (DS-CDMA) is a popular multiple-access technology for wireless communications. However, its performance is limited by multiple-access interference and multipath distortion. Multiuser detection and space-time processing are two signal processing techniques employed to improve the performance of DS-CDMA. Two minimum probability of error-based space-time multiuser detection algorithms are proposed in this paper. The first algorithm, minimum joint probability of error (MJPOE), aims to minimize the joint probability of error for all users. The second algorithm, minimum conditional probability of error (MCPOE), minimizes the probability of error of each user conditioned on the transmitted bit vector, for each user individually. In both the algorithms, the optimal filter weights are computed adaptively using a gradient descent approach. The MJPOE algorithm is blind and offers a bit-error-rate (BER) performance better than the nonadaptive minimum mean squared error (MMSE) algorithm, at the cost of higher computational complexity. An approach for reducing the computational overheads of MJPOE using Gram-Schmidt orthogonalization is suggested. The BER performance of the MCPOE algorithm is slightly inferior to MMSE, however, it has a computational complexity linear in the number of users. Both blind and training-based implementations for MCPOE are proposed. Both MJPOE and MCPOE have a convergence rate much faster than earlier known adaptive implementations of the MMSE detector, viz. least mean square and recursive least squares. Simulation results are presented for synchronous single path channels as well as asynchronous multipath channels, with multiple antennas employed at the receiver.
机译:直接序列码分多访问(DS-CDMA)是一种流行的无线通信技术。但是,其性能受到多访问干扰和多径失真的限制。多用户检测和时空处理是用于提高DS-CDMA的性能的两个信号处理技术。本文提出了两个基于误差的时空多用户检测算法的最小概率。第一算法,误差的最小关节概率(mjpoe),旨在最大限度地减少所有用户的误差的关节概率。第二算法,误差的最小条件概率(MCPoE),为每个用户单独地,最小化每个用户在发送的比特向量上调节的每个用户的误差的概率。在两个算法中,最佳滤波器权重自适应地使用梯度下降方法来计算。 MJPoE算法是盲目的,并且提供比不适度的最小均方误差(MMSE)算法更好的位误差率(BER)性能,以更高的计算复杂度。提出了一种利用克施密特正交化降低MJPoE的计算开销的方法。 McPoe算法的BER性能略逊于MMSE,但是,它在用户数量中具有计算复杂性线性。提出了对McPoe的盲人和基于培训的实现。 MJPOE和MCPOE都具有比早期已知的MMSE探测器,VIZ的自适应实现更快的收敛速度。最小均线和递归最小二乘法。仿真结果呈现用于同步单路径通道以及异步多径信道,在接收器处采用多个天线。

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