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Discriminant operators: emulation of visual receptive fields for the extraction of transitions in signals and images

机译:判别算子:模拟视觉感受域以提取信号和图像中的跃迁

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The theory of discriminant operators, a robust mathematical framework for the extraction of transitions, gradients, and edges from signals and images in the presence of noise, is introduced. The discriminant operator, which is briefly introduced, is an attempt to emulate the robust information extraction properties of the receptive fields found in the retina and the visual channel leading to the visual cortex. The discriminant operator (or the Theta operator) has differential properties with inherent aggregation. The differentiation properties help to extract the transition and edge information while the aggregation operation provides noise immunity. Also introduced is the differential operator, and then the Theta operator is used in both the continuous and discrete domains. The robustness of the theory is illustrated by means of a set of simulation studies on one-dimensional signals. This theory will be used in the development of robust algorithms for robotics and feedback control problems.
机译:引入了判别算子的理论,一个强大的数学框架,用于在存在噪声的情况下从信号和图像中提取跃迁,梯度和边缘。简要介绍的判别算子是一种尝试模仿在视网膜和通向视觉皮层的视觉通道中发现的感受野的鲁棒信息提取特性的尝试。判别算子(或Theta算子)具有固有聚合的差分属性。差异属性有助于提取过渡和边缘信息,而聚合操作可提供抗扰性。还介绍了微分算子,然后在连续域和离散域中都使用Theta算符。通过对一维信号进行一组仿真研究,说明了该理论的鲁棒性。该理论将用于针对机器人技术和反馈控制问题的鲁棒算法的开发。

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