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An adaptive kernel width convex combination method for maximum correntropy criterion

机译:用于最大正轮堆标准的自适应核宽度凸组合方法

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Recently, the maximum correntropy criterion (MCC) has been successfully applied in numerous applications regarding nonGaussian data processing. MCC employs a free parameter called kernel width, which affects the convergence rate, robustness, and steady-state performance of the adaptive filtering. However, determining the optimal value for such parameter is not always a trivial task. Within this context, this paper proposes a novel method called adaptive convex combination maximum correntropy criterion (ACCMCC), which combines an adaptive kernel algorithm with convex combination techniques. ACCMCC takes advantage from a convex combination of two adaptive MCC-based filters, whose kernel widths are adjusted iteratively as a function of the minimum error value obtained in a predefined estimation window. Results obtained in impulsive noise environment have shown that the proposed approach achieves equivalent convergence rates but with increased accuracy and robustness when compared with other similar algorithms reported in literature.
机译:最近,最大的正管复合标准(MCC)已成功应用于关于非ussian数据处理的许多应用程序。 MCC采用一个名为内核宽度的免费参数,影响自适应滤波的收敛速率,稳健性和稳态性能。但是,确定此类参数的最佳值并不总是一个微不足道的任务。在此背景下,本文提出了一种称为自适应凸组合最大控制标准(ACCMCC)的新方法,其将自适应内核算法与凸组合技术相结合。 ACCMCC从两个自适应MCC的滤波器的凸起组合利用,其内核宽度被迭代地调整,作为在预定义估计窗口中获得的最小误差值的函数。在冲动噪声环境中获得的结果表明,该方法可实现相同的收敛速率,但与文献中报告的其他类似算法相比,具有提高的准确性和鲁棒性。

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