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A Stereo-Vision System for Measuring the Ram Speed of Steam Hammers in an Environment with a Large Field of View and Strong Vibrations

机译:视野大且振动强烈的环境中用于测量蒸汽锤的夯速度的立体视觉系统

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摘要

The ram speed of a steam hammer is an important parameter that directly affects the forming performance of forgers. This parameter must be monitored regularly in practical applications in industry. Because of the complex and dangerous industrial environment of forging equipment, non-contact measurement methods, such as stereo vision, might be optimal. However, in actual application, the field of view (FOV) required to measure the steam hammer is extremely large, with a value of 2–3 m, and heavy steam hammer, at high-speed, usually causes a strong vibration. These two factors combine to sacrifice the accuracy of measurements, and can even cause the failure of measurements. To solve these issues, a bundle-adjustment-principle-based system calibration method is proposed to realize high-accuracy calibration for a large FOV, which can obtain accurate calibration results when the calibration target is not precisely manufactured. To decrease the influence of strong vibration, a stationary world coordinate system was built, and the external parameters were recalibrated during the entire measurement process. The accuracy and effectiveness of the proposed technique were verified by an experiment to measure the ram speed of a counterblow steam hammer in a die forging device.
机译:蒸汽锤的冲头速度是直接影响锻造件成形性能的重要参数。在工业上的实际应用中必须定期监视此参数。由于锻造设备复杂而危险的工业环境,因此非接触式测量方法(例如,立体视觉)可能是最佳的。但是,在实际应用中,测量蒸汽锤所需的视场(FOV)非常大,值为2-3 m,而重型蒸汽锤在高速下通常会引起强烈的振动。这两个因素共同牺牲了测量的准确性,甚至可能导致测量失败。为了解决这些问题,提出了一种基于束调整原理的系统标定方法,以实现对大视场的高精度标定,当标定目标不精确时,可以获得准确的标定结果。为了减少强烈振动的影响,建立了一个固定的世界坐标系,并在整个测量过程中重新校准了外部参数。通过测量模锻装置中的反吹蒸汽锤的闸板速度的实验,验证了所提出技术的准确性和有效性。

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