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Adaptive parallel interference cancellation for CDMA systems-A weight selection and filtering scheme

机译:CDMA系统的自适应并行干扰消除-权重选择和滤波方案

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Parallel interference cancellation (PIC) is a well-known multiuser detection algorithm in direct-sequence code-division multiple-access (DS-CDMA) systems. It is typically implemented with a multi-stage architecture. One problem associated with the PIC is that unreliable interference cancellation may occur in the early stages and the system performance may be degraded. Thus, the partial PIC detector was developed to control the cancellation level by use of interference cancellation factors. Partial PIC can be implemented with an adaptive form, in which optimal weights are derived using the least mean square (LMS) algorithm. In this paper, we propose an algorithm improving the conventional adaptive partial PIC. The main idea is to reduce the number of active weights in the LMS algorithm, and to perform weight post-filtering such that the resultant excess mean square error can be reduced. We also analyze the performance of the proposed algorithm and derive the bit error rate of the second stage output. Simulation results verify that the proposed algorithm outperforms the conventional partial PIC, and derived analytical results are accurate.
机译:并行干扰消除(PIC)是直接序列码分多址(DS-CDMA)系统中众所周知的多用户检测算法。它通常以多阶段体系结构实现。与PIC相关的一个问题是,在早期阶段可能会发生不可靠的干扰消除,并且系统性能可能会下降。因此,开发了部分PIC检测器以通过使用干扰消除因子来控制消除水平。可以采用自适应形式来实现部分PIC,其中使用最小均方(LMS)算法得出最佳权重。在本文中,我们提出了一种改进常规自适应局部PIC的算法。主要思想是减少LMS算法中的有效权重数,并执行权重后滤波,以便可以减少最终的均方误差。我们还分析了所提出算法的性能,并得出了第二级输出的误码率。仿真结果表明,该算法优于传统的局部PIC算法,分析结果准确。

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