高速轮廓机的预滤波设计

B.C.H. Chang, R. C. Ko, S. Halgamuge
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引用次数: 4

摘要

高速、高精度的跟踪控制是未来轮廓机床的发展要求。已知,通过对命令轨迹进行适当的预滤波,可以有效地减小轮廓误差。本文介绍了一种应用于预滤波器设计的混合方法的结果,该方法结合了MLP(多层感知器)神经网络来增强最近提出的自适应校准控制器的性能。由于存在摩擦和信号量化等非线性,该方法利用神经网络的非线性和学习特性进一步减小了轮廓误差。给出了商用激光仿形机动力学模型的仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pre-filter design for high speed contouring machines
High-speed and high-precision tracking control is required for future contouring machine tools. It is known that, by pre-filtering the command trajectory in an appropriate way, the contouring error can be effectively reduced. This paper presents the result of a hybrid approach applied to pre-filter design, which incorporates a MLP (multilayer perceptron) neural network to enhance the performance of a recently-proposed adaptive calibrating controller. Due to the presence of nonlinearities, such as friction and signal quantization, the proposed method further reduces the contouring error by taking advantage of the nonlinear and learning nature of the neural network. Simulation results on a dynamic model of a commercial laser profiling machine are demonstrated.
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