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TOPSIS method based on a fuzzy covering approximation space: An application to biological nano-materials selection

机译:基于模糊覆盖近似空间的Topsis方法:对生物纳米材料选择的应用

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摘要

The applications of nanomaterials in biomedicine have received increasing attentions. Therefore, how to choose the most suitable material among a variety of bio-nanomaterials with similar properties is a significant problem. Aiming at this problem, we describe it as a multi-criteria decision-making problem in a fuzzy covering approximation space and solve it via the TOPSIS method. Firstly, combining fuzzy neighborhood operators with fuzzy rough set models, we propose two pairs of covering-based fuzzy rough set models and study the basic properties together with classifications of these two pairs of models. Subsequently, we reveal a new method for determining objective weights using the first pair of covering-based fuzzy rough set models. Combining the objective criteria weight determination method with the TOPSIS method, we provide a solution to solve the problem of bone transplant replacement materials selection. Then, we discuss the experimental effects of our proposed method and the other eight different decision-making methods in practical problems to explain the rationality and enforceability of our approach. Finally, we validate the performance of our approach with the support of ideas of cross-validation and hypothesis testing. (C) 2019 Elsevier Inc. All rights reserved.
机译:纳米材料在生物医学中的应用得到了增加的注意。因此,如何选择具有相似性质的各种生物纳米材料中最合适的材料是一个重大问题。针对这个问题,我们将其描述为在模糊覆盖近似空间中的多标准决策问题,并通过Topsis方法解决。首先,将模糊邻域运营商与模糊粗糙集模型组合,我们提出了两对基于覆盖的模糊粗糙集模型,并将基本属性与这两对模型的分类一起研究。随后,我们揭示了一种使用第一对基于覆盖的模糊粗糙集模型来确定客观权重的新方法。将客观标准重量测定方法与Topsis方法相结合,我们提供解决骨移植替代材料选择问题的解决方案。然后,我们讨论了我们提出的方法和其他八种不同决策方法的实际问题的实验效果,以解释我们方法的合理性和可执行性。最后,我们通过支持交叉验证和假设检测的思想来验证我们的方法的表现。 (c)2019 Elsevier Inc.保留所有权利。

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