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Selection vector filters framework

机译:选择矢量过滤器框架

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摘要

We provide a unified framework of nonlinear vector techniques outputting the lowest ranked vector. The proposed framework constitutes a generalized filter class for multichannel signal processing. A new class of nonlinear selection filters are based on the robust order-statistic theory and the minimization of the weighted distance function to other input samples. The proposed method can be designed to perform a variety of filtering operations including previously developed filtering techniques such as vector median, basic vector directional filter, directional distance filter, weighted vector median filters and weighted directional filters. A wide range of filtering operations is guaranteed by the filter structure with two independent weight vectors for angular and distance domains of the vector space. In order to adapt the filter parameters to varying signal and noise statistics, we provide also the generalized optimization algorithms taking the advantage of the weighted median filters and the relationship between standard median filter and vector median filter. Thus, we can deal with both statistical and deterministic aspects of the filter design process. It will be shown that the proposed method holds the required properties such as the capability of modelling the underlying system in the application at hand, the robustness with respect to errors in the model of underlying system, the availability of the training procedure and finally, the simplicity of filter representation, analysis, design and implementation. Simulation studies also indicate that the new filters are computationally attractive and have excellent performance in environments corrupted by bit errors and impulsive noise.
机译:我们提供输出最低排名向量的非线性矢量技术的统一框架。所提出的框架构成用于多通道信号处理的广义过滤器类。一类新的非线性选择过滤器基于稳健的订单统计理论和对其他输入样本的加权距离功能的最小化。所提出的方法可以设计成执行各种滤波操作,包括预先开发的滤波技术,例如矢量中值,基本矢量定向滤波器,方向距离滤波器,加权矢量中值和加权定向滤波器。通过用于矢量空间的角度和距离域的两个独立权重向量,通过滤波器结构保证各种滤波操作。为了使滤波器参数适应变化的信号和噪声统计,我们还提供了通过加权中值滤波器的优点和标准中值滤波器与矢量中值滤波器的关系的广义优化算法。因此,我们可以处理过滤器设计过程的统计和确定性方面。将表明,该方法具有所需的属性,例如在手头应用中建模底层系统的能力,对底层系统模型中的错误的鲁棒性,培训程序的可用性,最后,过滤器表示,分析,设计和实现的简单性。仿真研究还表明,新滤波器在计算上具有很强的吸引力,并且在损坏的环境中具有出色的性能和脉冲损坏和脉冲噪声。

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