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Opto-electronic camera for noninvasive investigation of arcing in short-circuit current-carrying conductors and HRC fuse elements

机译:光电照相机,用于无创研究短路载流导体和HRC熔断器中的电弧

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The emergence of fast opto-electronic pixel-array chip technology enables development of optical systems for investigating arc ignition and arc extension in HRC fuses. A black-box slit-aperture camera design, based on such a sensor, is presented together with relevant data capture techniques and test procedures. Good data crosscorrelation of the camera-light-source attributes with circuit temporal and spatial arc-disposition attributes were achieved and evaluated. The camera is able to operate at approximately 15 000 frame/s in single-light-beam mode and at a maximum of 30 000 frame/s in two-beam mode. The results from the presented high-rupturing-capacity (HRC) fuse wire and element test procedures demonstrate good acuity of individual arc ignition data capture and multiple delayed arc capture. The results also demonstrate that the camera is able to distinguish the intensity, position and dimensions and correlate the attributes of extant fulgurites for arc ignitions occurring within 5 /spl mu/s and for multiple arcs extending beyond 5 ms.
机译:快速光电像素阵列芯片技术的出现促进了光学系统的开发,该光学系统用于研究HRC熔断器中的引弧和引弧。提出了一种基于这种传感器的黑匣子裂口相机设计,以及相关的数据捕获技术和测试程序。相机光源属性与电路时间和空间电弧布置属性之间的良好数据互相关性得到了评估。在单光束模式下,摄像机能够以大约15000帧/秒的速度运行,而在双光束模式下,则能够以30000帧/秒的速度运行。提出的高破裂容量(HRC)保险丝和元件测试程序的结果表明,单独的电弧点火数据捕获和多次延迟的电弧捕获均具有良好的敏锐度。结果还表明,该摄像机能够区分强度,位置和尺寸,并关联在5个/ spl mu / s内发生的引弧和延伸超过5 ms的多个电弧的现存微晶石的属性。

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