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Robust and fast visual tracking for a ball and plate control system: design, implementation and experimental verification

机译:球和板控制系统的强大而快速的视觉跟踪:设计,实施和实验验证

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摘要

The ball and plate System (BPS) is a two-dimensional electromechanical system with multiple variables, non-linearity and strong coupling. The BPS control problem is to hold the rolling ball in a specific position on the plate by adjusting the plate inclination. Ball tracking is therefore the fundamental step in BPS control, which can largely influence the control effectiveness and efficiency. The segmented path planning based on the sequential thinning algorithm is one popular tracking technology. However, it suffers from high dependence on the operating environment, complex operation and slow speed. This paper innovatively proposes a robust and fast visual tracking solution for BPS. A novel hardware structure has been designed. The sensing camera is rigidly connected to the plate, which avoids the coordinate transformation and thus reduces the complexity. In path recognition, a parallel thinning algorithm is used to improve the processing speed. Additionally, in path planning, a window searching algorithm combining the slope order matching method is proposed to establish the linked list that describes the movement path. A cascaded structure of the BPS tracking controller is also designed. Experiments have shown the effectiveness of the whole system, exhibiting shorter travelling time, smaller tracking errors as well as better stability compared to conventional systems.
机译:球和板系统(BPS)是具有多个变量,非线性和强耦合的二维机电系统。 BPS控制问题是通过调整板的倾斜度将滚动球保持在板上的特定位置。因此,滚珠跟踪是BPS控制中的基本步骤,它会在很大程度上影响控制效果和效率。基于顺序稀疏算法的分段路径规划是一种流行的跟踪技术。但是,它高度依赖于操作环境,操作复杂且速度慢。本文创新地提出了一种强大且快速的BPS视觉跟踪解决方案。设计了一种新颖的硬件结构。感测相机牢固地连接到板上,避免了坐标转换,从而降低了复杂性。在路径识别中,使用并行稀疏算法来提高处理速度。另外,在路径规划中,提出了一种结合坡度顺序匹配方法的窗口搜索算法来建立描述运动路径的链表。还设计了BPS跟踪控制器的级联结构。实验证明了整个系统的有效性,与传统系统相比,其运行时间更短,跟踪误差更小且稳定性更高。

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