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首页> 外文期刊>IEEE Transactions on Communications >A matrix-algebraic approach to linear parallel interference cancellation in CDMA
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A matrix-algebraic approach to linear parallel interference cancellation in CDMA

机译:CDMA中线性并行干扰消除的矩阵-代数方法

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摘要

Linear parallel interference cancellation (PIC) schemes are described and analyzed using matrix algebra. It is shown that the linear PIC, whether conventional or weighted, can be seen as a linear matrix filter applied directly to the chip-matched filtered received signal vector. An expression for the exact bit-error rate (BER) is obtained, and conditions on the eigenvalues of the code correlation matrix and the weighting factors to ensure convergence are derived. The close relationship between the linear multistage PIC and the steepest descent method (SDM) for minimizing the mean squared error (MSE) is demonstrated. A modified weighted PIC structure that resembles the SDM is suggested which approaches the minimum MSE (MMSE) detector rather than the decorrelator. It is shown that for a K-user system, only K PIC stages are required for the equivalent matrix filter to be identical to the the MMSE filter. For fewer stages, techniques are devised for optimizing the choice of weights with respect to the MSE. One unique optimal choice of weights is found, which will lead to the minimum achievable MSE at the final stage. Simulation results show that a few stages are sufficient for near-MMSE performance.
机译:使用矩阵代数描述和分析线性并行干扰消除(PIC)方案。示出了线性PIC,无论是常规的还是加权的,都可以看作是直接应用于码片匹配的滤波后的接收信号矢量的线性矩阵滤波器。获得精确的误码率(BER)的表达式,并得出码相关矩阵的特征值和确保收敛的加权因子的条件。说明了线性多级PIC与最速下降法(SDM)之间的紧密关系,该方法用于最小化均方误差(MSE)。提出了一种类似于SDM的改进的加权PIC结构,该结构接近最小MSE(MMSE)检测器,而不是去相关器。结果表明,对于K用户系统,等效矩阵滤波器与MMSE滤波器相同,只需要K个PIC级。对于较少的阶段,设计了用于针对MSE优化权重选择的技术。找到了权重的唯一最佳选择,这将在最后阶段导致最小可实现的MSE。仿真结果表明,只有几个阶段足以实现接近MMSE的性能。

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