State space modeling of dimensional variation propagation in multistage machining process using differential motion vectors

Shiyu Zhou, Qiang Huang, Jianjun Shi
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引用次数: 256

Abstract

In this paper, a state space model is developed to describe the dimensional variation propagation of multistage machining processes. A complicated machining system usually contains multiple stages. When the workpiece passes through multiple stages, machining errors at each stage will be accumulated and transformed onto the workpiece. Differential motion vector, a concept from the robotics field, is used in this model as the state vector to represent the geometric deviation of the workpiece. The deviation accumulation and transformation are quantitatively described by the state transition in the state space model. A systematic procedure that builds the model is presented and an experimental validation is also conducted. The validation result is satisfactory. This model has great potential to be applied to fault diagnosis and process design evaluation for complicated machining processes.
基于微分运动矢量的多级加工过程中尺寸变化传播的状态空间建模
本文建立了一种状态空间模型来描述多阶段加工过程的尺寸变化传播。一个复杂的加工系统通常包含多个阶段。当工件经过多个加工阶段时,每一阶段的加工误差都会累积并转化到工件上。该模型采用机器人领域的微分运动矢量作为状态矢量来表示工件的几何偏差。在状态空间模型中,用状态转移来定量描述偏差的积累和转换。给出了建立模型的系统步骤,并进行了实验验证。验证结果令人满意。该模型在复杂加工过程的故障诊断和工艺设计评价中具有很大的应用潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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