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The fuzzy transformation and its applications in image processing

机译:模糊变换及其在图像处理中的应用

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The spatial and rank (SR) orderings of samples play a critical role in most signal processing algorithms. The recently introduced fuzzy ordering theory generalizes traditional, or crisp, SR ordering concepts and defines the fuzzy (spatial) samples, fuzzy order statistics, fuzzy spatial indexes, and fuzzy ranks. Here, we introduce a more general concept, the fuzzy transformation (FZT), which refers to the mapping of the crisp samples, order statistics, and SR ordering indexes to their fuzzy counterparts. We establish the element invariant and order invariant properties of the FZT. These properties indicate that fuzzy spatial samples and fuzzy order statistics constitute the same set and, under commonly satisfied membership function conditions, the sample rank order is preserved by the FZT. The FZT also possesses clustering and symmetry properties, which are established through analysis of the distributions and expectations of fuzzy samples and fuzzy order statistics. These properties indicate that the FZT incorporates sample diversity into the ordering operation, which can be utilized in the generalization of conventional filters. Here, we establish the fuzzy weighted median (FWM), fuzzy lower-upper-middle (FLUM), and fuzzy identity filters as generalizations of their crisp counterparts. The advantage of the fuzzy generalizations is illustrated in the applications of DCT coded image deblocking, impulse removal, and noisy image sharpening.
机译:样本的空间和秩(SR)排序在大多数信号处理算法中起着至关重要的作用。最近引入的模糊排序理论概括了传统的或清晰的SR排序概念,并定义了模糊(空间)样本,模糊顺序统计信息,模糊空间索引和模糊等级。在这里,我们引入了一个更笼统的概念,即模糊变换(FZT),它是指将清晰的样本,订单统计信息和SR排序索引映射到其模糊副本。我们建立了FZT的元素不变性和阶不变性。这些性质表明,模糊空间样本和模糊阶次统计量构成相同的集合,并且在普遍满足的隶属函数条件下,样本排序次序由FZT保留。 FZT还具有聚类和对称性,这是通过分析模糊样本的分布和期望以及模糊阶数统计来建立的。这些特性表明FZT将样本多样性纳入排序操作中,可以在常规过滤器的通用化中使用。在这里,我们建立模糊加权中值(FWM),模糊下上中部(FLUM)和模糊身份过滤器作为其清晰对应物的概括。在DCT编码图像去块,脉冲去除和噪声图像锐化的应用中说明了模糊概括的优点。

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