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Error Compensation on a NC-machine Tool Based on Integrated Intelligent Computation

机译:基于集成智能计算的数控机床误差补偿

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This paper is a study of the application of integrated intelligent computation to solve the problems of error compensation for high-precision a NC machining system.The primary focus is on the development of integrated intelligent computation approach to get an error compensation system which is a dynamic feedback neural network embedded in a NC machine tool.Optimization of error measurement points of a NC machine tool is realized by way of application of error variable attribute reduction on rough set theory.A principal component analysis is used for data compression and feature extraction to reduce the input dimension of a dynamic feedback neural network and reduce training time of the network.Taking advantage of ant colony algorithm on training of a dynamic feedback neural network does the global search so that network can converge to get a global optimum.Positioning error caused in thermal deformation compensation capabilities were tested using industry standard equipment and procedures.The results obtained shows that this approach can effectively improve compensation precision and real time of error compensation on machine tools.
机译:本文研究了集成智能计算在解决高精度数控加工系统误差补偿方面的应用。主要研究方向是集成智能计算方法的发展,以获得动态的误差补偿系统。反馈神经网络嵌入数控机床中。通过将误差变量属性约简应用于粗糙集理论,实现了数控机床误差测量点的优化。主成分分析用于数据压缩和特征提取以减少误差。利用蚁群算法训练动态反馈神经网络进行全局搜索,使网络可以收敛以获得全局最优值。使用行业标准的设备对热变形补偿能力进行了测试,并对其进行了处理。结果表明,该方法可以有效提高机床的补偿精度和误差补偿的实时性。

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