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Blind adaptive noncoherent multiuser detection for nonlinear modulation

机译:用于非线性调制的盲自适应非相干多用户检测

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摘要

Noncoherent multiuser detection for nonlinear modulation was previously studied and the idea of phase-independent noncoherent decorrelation was introduced and three post-decorrelative detectors were obtained and analyzed. However, their implementation requires the knowledge of the signature waveforms of all the users, which may be available only for centralized implementation. In this paper, we obtain a blind adaptive noncoherent decorrelative detector for nonlinear modulation that is suitable for distributed implementation with the knowledge of only the normalized signals of the desired user and the additive noise variance. This detector is based on the stochastic approximation method and does not require the overhead of any kind of "training." Two adaptive algorithms are developed, one guided by every signal in the desired user's signal set individually, and the other by the user's entire signal space. While this paper focuses on the particular problem of blind adaptive noncoherent decorrelative detection, it addresses a more general adaptation issue, namely, that of improving the convergence properties of an adaptive scheme by effectively using all the information that is known, and adapting only to the part of the desired solution that is truly unknown. Convergence is shown in the mean squared error sense for both the fixed step-size and time-varying step-size versions of the two algorithms.
机译:先前已经研究了用于非线性调制的非相干多用户检测,并引入了相位无关的非相干去相关的思想,并获得并分析了三个解相关后检测器。但是,它们的实现需要了解所有用户的签名波形,这仅可用于集中实现。在本文中,我们仅了解所需用户的归一化信号和附加噪声方差,从而获得了一种适用于分布式实现的盲调制非相干去相干解相关非线性检测器。该检测器基于随机近似方法,不需要任何“训练”的开销。开发了两种自适应算法,一种算法由所需用户信号集中的每个信号单独引导,另一种由用户的整个信号空间引导。虽然本文着重于盲自适应非相干解相关检测的特定问题,但它解决了一个更笼统的自适应问题,即通过有效地利用所有已知信息来改进自适应方案的收敛特性,并且仅适应于真正未知的所需解决方案的一部分。对于两种算法的固定步长和时变步长版本,均方根误差均表示收敛。

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