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Optimization of the STEP-NC compliant online toolpath generation for T-spline surfaces using convoiutional neural network and random forest classifier

机译:使用梳理神经网络和随机林分类器优化T条状表面的STEP-NC标准的在线刀具路径

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Deep implementation of principals of the intelligent STEP-NC compliant manufacturing implies enabling a CNC system with integrated CAM functionality to perform all tasks autonomously.This means that most of the responsibilities of a CAM engineer need to be delegated to the CNC system.When it comes to manufacturing of freeform surfaces,the implementation of this approach becomes very challenging.One of the most important issues is the autonomous online toolpath generation.Making a choice of optimal machining strategies and other manufacturing parameters,that might be a trivial task for an expert,turns out to be not an easy problem for a machine,and often can be hardly solved using the traditional approach of explicit programming.Therefore,this paper proposes a method to optimize toolpath generation for T-spline surfaces,in particular,the process of choosing an optimal machining strategy for a given surface region using Machine Learning.The selection model has been trained to make a choice of the appropriate freeform machining strategy(two different strategies have been considered)based on the shape of an input surface.
机译:深入实现智能步骤 - NC兼容制造的原则意味着能够实现具有集成CAM功能的CNC系统,以自动执行所有任务。这意味着CAM工程师的大多数责任需要将委托CNC系统委托。当它来临时为了制造自由形状表面,这种方法的实现变得非常具有挑战性。最重要的问题是自主在线刀具路径生成。制作最佳加工策略和其他制造参数的选择,这可能是专家的琐碎任务,事实证明,对于机器来说不是一个简单的问题,并且通常可以使用传统的明确编程方法来解决。因此,本文提出了一种优化T条状表面的刀具路径的方法,特别是选择的过程使用机器学习的给定表面区域的最佳加工策略。选择模型已训练以制作Choi基于输入表面的形状,适当的自由形式加工策略(已经考虑了两种不同的策略)。

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