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Near-Far Resistance of Optimum and Suboptimum CDMA Detectors Under Multipath

机译:最佳和次最佳CDMA检测器在多径下的近远电阻

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Near-far resistance is one of the most important performance measures in a multiuser communication system, especially in a code division multiple access (CDMA) system. The optimum multiuser detector can achieve the optimum near-far resistance. However, due to its high computational complexity, the optimum detector is impractical to implement. Nevertheless, computation of the near-far resistance of the optimum multiuser detector is still important since it is the least upper bound on the near-far resistance of any detector, as well as a benchmark for relative performance of any suboptimum detector. Lupas et al. and Zvonar et al. provided the computation of the optimum near-far resistance in the asynchronous AWGN and unipath channel case. In this paper, we extend the above results to the asynchronous multipath channel case. We derive the optimum near-far resistance under the assumption of a common identifiability condition in the blind multiuser detection/equalization literature. We also derive the ideal near-far resistance of three typical methods in blind multiuser detection/equalization (subspace, linear prediction, and constrained optimization) and compare them with that of the optimum detector. Two methods to enhance near-far resistance of suboptimum detectors are also presented. Furthermore, one possible cause that may affect the near-far resistance in a practical setting is analyzed. The computational complexity of the proposed methods is analyzed and compared. Simulations confirm the theoretical findings.
机译:在多用户通信系统中,特别是在码分多址(CDMA)系统中,近距离电阻是最重要的性能指标之一。最佳的多用户检测器可以实现最佳的远距离电阻。但是,由于其高计算复杂性,因此无法实现最佳检测器。然而,最佳多用户检测器的远距离电阻的计算仍然很重要,因为它是任何检测器的远距离电阻的最小上限,也是任何次优检测器相对性能的基准。卢帕斯等。和Zvonar等。提供了在异步AWGN和单路径信道情况下最佳近距离电阻的计算。在本文中,我们将上述结果扩展到异步多路径信道的情况。我们在盲多用户检测/均衡化文献中以共同的可识别性条件为前提,推导出了最佳的远近抵抗力。我们还得出了盲多用户检测/均衡(子空间,线性预测和约束优化)中三种典型方法的理想近距离电阻,并将它们与最佳检测器进行比较。还提出了两种增强次佳探测器近距离电阻的方法。此外,分析了在实际环境中可能影响远距离电阻的一种可能原因。分析并比较了所提出方法的计算复杂度。模拟证实了理论发现。

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