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Predicting Charpy Impact Energy for Heat-Treated Steel using a Quantum-Membership-Function-based Fuzzy Model

机译:使用基于量子隶属函数的模糊模型预测热处理钢的简支梁冲击能

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Abstract: This study employs quantum membership functions in a neuro-fuzzy modelling structure to model a complex data set derived from the Charpy impact test of heat treated steel for predicting Charpy energy. This is a challenging modelling problem because although the test is governed by a specific standard, several sources of disturbance give rise to uncertainty in the data. The data are also multidimensional, sparsely distributed and the relation between the variables and the output is highly nonlinear. Results are encouraging, with further investigation necessary to better understand quantum membership functions and the effect that quantum intervals have when modelling highly uncertain data.
机译:摘要: 本研究利用神经模糊建模结构中的量子隶属函数,对热处理钢简支梁冲击试验得出的复杂数据集进行建模,用于预测简支梁能量。这是一个具有挑战性的建模问题,因为尽管测试受特定标准的约束,但多个干扰源会导致数据的不确定性。数据也是多维的,稀疏分布的,变量和输出之间的关系是高度非线性的。结果令人鼓舞,需要进一步研究以更好地理解量子隶属函数以及量子区间在模拟高度不确定数据时的影响。

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