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Bionic Vision-Based Pantograph-Catenary Contact Point Detection Study in China High-Speed Railway

机译:基于仿真视觉的Pantograph-Catenary接触点检测研究在中国高速铁路

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The pantograph-catenary system of high-speed electric multiple units (EMU) is the only way to get electric power for high-speed trains. Over the past several years, video frames taken from traditional cameras have been used to analyze pantograph-catenary arcs. A traditional camera is built on mimicking human vision; thus, the natural phenomenon that an object will appear smaller if it is far from an observer but will become larger as it moves toward the observer will be reflected in the pictures that are taken. This is analogous to an implicit depth. Based on this observation, a bionic vision-based algorithm that utilizes the implicit depth is proposed in the present work to extract the touch point between the contact wire and pantograph slide under interference from the messenger wire. Experiments indicate that the proposed algorithm works quite well, with only marginal errors occurring, thus providing a strong base for future research activities.
机译:高速电动多单位(EMU)的电压仪 - 凸起系统是获得高速列车电力的唯一方法。 在过去几年中,从传统摄像机获取的视频帧已被用于分析Pantograph-Cateary弧。 建立了一种传统的相机,建立在模仿人体视野之上; 因此,如果它远离观察者,则物体的自然现象将变小,但随着它朝向观察者的移动将变大,将反映在所采取的图片中。 这类似于隐含深度。 基于该观察,提出了一种利用隐式深度的基于仿真视觉的算法,该算法在本作工作中提取在与信使线的干扰下提取接触线和映射仪滑块之间的触摸点。 实验表明,所提出的算法很好,只有边缘误差发生,从而为未来的研究活动提供了强大的基础。

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