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Accuracy of sequential sub-field synchronization of multiple digital camcorders through numerical optimization

机译:通过数值优化实现多台数字摄录机顺序子场同步的准确性

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The use of digital camcorders in biomechanical analyses can introduce errors due to inter-camera time offsets. The faster the motion being recorded the greater the error. A sequential synchronization method was developed in this study to achieve sub-field camera synchronization for multiple camcorders through numerical optimization. A recreational golfer performed ten drives while being recorded with four digital camcorders (60-Hz sampling rate). Video signals were sampled at 10,000 Hz to determine the actual inter-camera time offsets. The optimized inter-camera time offsets were computed based on three markers placed on the shaft, each separated by 200 mm. The inter-camera time offset error was computed as the difference between the optimized and actual inter-camera time offsets. The inter-camera time offset error reduced on average from 0.518 to 0.019 fields (1 field = 16.7 ms) or less due to sequential optimization. The optimized global reconstruction errors were less than 19% of the unadjusted values. It was concluded that the ability to synchronize multiple (two or more) cameras using a sequential sub-field optimization strategy promises to extend the use of relatively inexpensive digital camcorders to motions considered too fast for the low field rates of such cameras. The sequential approach presented provides a balance between computation time and reconstruction accuracy.
机译:在生物力学分析中使用数码摄录机会由于相机间的时间偏移而产生误差。运动记录得越快,误差越大。在这项研究中开发了一种顺序同步方法,以通过数值优化实现多台摄录机的子场摄像机同步。一名休闲高尔夫球手用四个数码摄像机(60 Hz采样率)记录了十次击球。以10,000 Hz采样视频信号,以确定实际的摄像机间时间偏移。基于放置在轴上的三个标记(每个标记之间相隔200毫米)计算出最佳的摄像机间时间偏移。相机间时间偏移误差被计算为最佳和实际相机间时间偏移之间的差。由于顺序优化,相机间时间偏移误差平均从0.518减少到0.019场(1场= 16.7 ms)或更小。优化的全局重建误差小于未调整值的19%。结论是,使用顺序子场优化策略同步多台(两台或更多台)摄像机的能力有望将相对便宜的数码摄像机的使用扩展到对于此类摄像机的低场速而言太快的运动。提出的顺序方法在计算时间和重建精度之间取得了平衡。

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