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Thermal Error Modeling of a Machining Center Using Grey System Theory and Adaptive Network-Based Fuzzy Inference System

机译:基于灰色系统理论和基于自适应网络的模糊推理系统的加工中心热误差建模

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摘要

Thermal effect on machine tools is a well-recognized problem in an environment of increasing demand for product quality. The performance of a thermal error compensation system typically depends on the accuracy and robustness of the thermal error model. This work presents a novel thermal error model utilizing two mathematic schemes: the grey system theory and the adaptive network-based fuzzy inference system (ANFIS). First, the measured temperature and deformation results are analyzed via the grey system theory to obtain the influence ranking of temperature ascent on thermal drift of spindle. Then, using the highly ranked temperature ascents as inputs for the ANFIS and training these data by the hybrid learning rule, a thermal compensation model is constructed. The grey system theory effectively reduces the number of temperature sensors needed on a machine structure for prediction, and the ANFIS has the advantages of good accuracy and robustness. For testing the performance of proposed ANFIS model, a real-cutting operation test was conducted. Comparison results demonstrate that the modeling schemes of the ANFIS coupled with the grey system theory has good predictive ability.
机译:在对产品质量的需求不断增加的环境中,对机床的热效应是一个公认的问题。热误差补偿系统的性能通常取决于热误差模型的准确性和鲁棒性。这项工作提出了一种利用两种数学方案的新型热误差模型:灰色系统理论和基于自适应网络的模糊推理系统(ANFIS)。首先,通过灰色系统理论对测得的温度和变形结果进行分析,以获得温度上升对主轴热漂移的影响等级。然后,使用排名较高的温度上升作为ANFIS的输入,并通过混合学习规则训练这些数据,从而构建热补偿模型。灰色系统理论有效地减少了用于预测的机器结构上所需的温度传感器的数量,并且ANFIS具有良好的准确性和鲁棒性的优点。为了测试所提出的ANFIS模型的性能,进行了实际切割操作测试。比较结果表明,ANFIS的建模方案结合灰色系统理论具有良好的预测能力。

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