综述斯特劳斯-戈夫平台标定方法,助力高精度机械系统
A Literature Review On Stewart-Gough Platform Calibrations A Literature Review On Stewart-Gough Platform Calibrations
- 基于逆运动学的标定方法更高效,优于正运动学方法
- 多源误差(如结构、运动学)影响定位精度,需综合校正
- 适合精密制造、医疗设备等对空间控制要求极高的领域
斯特劳斯-戈夫平台因具备高精度运动控制能力,被广泛应用于医疗、工程装备、航天研究、芯片制造和汽车生产等领域。在需要微米乃至纳米级三维空间运动精度的应用中,平台自身精度必须高于任务需求,因此标定至关重要。相比复杂的正运动学标定,逆运动学方法能更简便地完成标定任务。研究通过外部仪器、运动约束及附加传感器等手段实现自动或自标定。本综述聚焦于逆运动学驱动的并联机器人标定技术,总结了多种方法及其效果,重点分析了由单一或多重来源引起的误差,包括运动学、结构参数及环境因素,但多数实验在无负载条件下进行。本文旨在梳理当前该领域的研究进展,明确关键标定流程与主要误差来源。
原文摘要 · Abstract (English)
Researchers have studied Stewart-Gough platforms, also known as Gough-Stewart platforms or hexapod platforms extensively for their inherent fine control characteristics. Their studies led to the potential deployment opportunities of Stewart-Gough Platforms in many critical applications such as the medical field, engineering machines, space research, electronic chip manufacturing, automobile manufacturing, etc. Some of these applications need micro and nano-level movement control in 3D space for the motions to be precise, complicated, and repeatable; a Stewart-Gough platform fulfills these challenges smartly. For this, the platform must be more accurate than the specified application accuracy level and thus proper calibration for a parallel robot is crucial. Forward kinematics-based calibration for these hexapod machines becomes unnecessarily complex and inverse kinematics complete this task with much ease. To experiment with different calibration techniques, various calibration approaches were implemented by using external instruments, constraining one or more motions of the system, and using extra sensors for auto or self-calibration. This survey paid attention to those key methodologies, their outcome, and important details related to inverse kinematic-based parallel robot calibrations. It was observed during this study that the researchers focused on improving the accuracy of the platform position and orientation considering the errors contributed by one source or multiple sources. The error sources considered are mainly kinematic and structural, in some cases, environmental factors also are reviewed, however, those calibrations are done under no-load conditions. This study aims to review the present state of the art in this field and highlight the processes and errors considered for the calibration of Stewart-Gough platforms.
Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。