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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信道中基于误差的自适应多用户检测方法的最小概率

摘要

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:直接序列码分多址(DS-CDMA)是一种流行的无线通信多址技术。但是,其性能受到多址干扰和多径失真的限制。多用户检测和空时处理是用来改善DS-CDMA性能的两种信号处理技术。提出了两种基于错误的时空多用户检测算法的最小概率。第一种算法是最小联合错误概率(MJPOE),旨在最小化所有用户的联合错误概率。第二种算法是最小条件错误概率(MCPOE),它针对每个用户分别将以传输的比特向量为条件的每个用户的错误概率最小化。在这两种算法中,最佳滤波器权重都是使用梯度下降法自适应计算的。 MJPOE算法是盲目的,并且比非自适应最小均方误差(MMSE)算法具有更好的误码率(BER)性能,但代价是计算复杂度更高。建议使用Gram-Schmidt正交化来减少MJPOE的计算开销的方法。 MCPOE算法的BER性能略逊于MMSE,但是,它的计算复杂度与用户数量呈线性关系。提出了盲目的和基于培训的MCPOE实施方案。 MJPOE和MCPOE的收敛速度都比MMSE检测器的早期已知自适应实现快得多。最小均方和递归最小二乘。给出了针对同步单路径信道以及异步多路径信道的仿真结果,其中在接收机处使用了多个天线。

著录项

  • 作者

    DUA A; DESAI UB; MALLIK RK;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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