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In ground-based extensive air shower experiments, the direction and energy are reconstructed by measuring the relative arrival time of secondary particles, and the energy they deposit. The measurement precision of the arrival time is crucial for determination of the angular resolution. For this purpose, we need to obtain a precise relative time offset for each detector and to apply the calibration process. The time offset is associated with the photomultiplier tube, cable, relevant electronic circuits, etc. In view of the transit time through long cables being heavily dependent on the ambient temperature, a real-time calibration method for the cable transit time is investigated in this paper. Even with a poor-resolution time-to-digital converter, this method can achieve high precision. This has been successfully demonstrated with the Front-End-Electronic board used in the Daya Bay neutrino experiment.  相似文献
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基于对PULSE系统的应用开发研究,建立了矢量水听器实时校准可视化系统,利用ActiveX技术解决了PULSE系统与MATLAB实时通讯问题,这是实时校准的基础。并以矢量水听器理论基础为依据,用比较校准法原理通过MATLAB语言完成编程,同时解决了数据转化问题,通过建立的可视化界面实现对矢量水听器实时校准,提高了校准精度和可靠性,为矢量水听器使用前进行快速高效的校准创造了条件,同时也为其它声学设备校准提供了测量平台。  相似文献
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