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A Novel High Resolution Optical Time Delay Cable Measurement System Utilized in Fiber Verification in Radio Interferometry

机译:一种用于无线电干涉仪光纤验证的新型高分辨率光时延电缆测量系统

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A long distance optical fiber cable measurement is described that delivers ~0.2 picosecond (ps) delay resolution with capability for high accuracy relative distance extraction over 10's of microseconds of delay. This is necessary in radio interferometry, for verification, but has general applicability to many situations found in optical fiber transport. For radio interferometry one can use direct RF over fiber to transport the hydrogen maser clock source, and measurement of fiber to certain points in the cable system is very important. The long distance measurements are used to show that the thermal stability of the buried optical fiber cable keeps the propagation delay changes on the optical fiber link stable to less than 9.5 ps over 20 minutes, meeting a key requirement for phase margins for interferometry. The measurement method shows great promise in general optical fiber measurement for optical cables over long distances, with high resolution and dynamic range, enabling capabilities better than those offered by normal OTDR (Optical Time Domain Reflectometer) or OFDR (Optical Frequency Domain Reflectometer) methods.
机译:描述了一种长距离光纤电缆测量,该测量可提供〜0.2皮秒(ps)的延迟分辨率,并具有在10微秒的延迟内进行高精度相对距离提取的能力。对于验证,这在无线电干涉测量中是必需的,但对于在光纤传输中发现的许多情况具有普遍适用性。对于无线电干涉仪,可以使用直接的RF光纤传输氢微波激振器时钟源,并且将光纤测量到电缆系统中的某些点非常重要。长距离测量结果表明,埋入式光缆的热稳定性可将光纤链路上的传播延迟变化​​在20分钟内稳定保持在9.5 ps以下,从而满足干涉测量相位裕度的关键要求。该测量方法在长距离的普通光纤测量中具有广阔的前景,具有高分辨率和动态范围,与普通的OTDR(光时域反射仪)或OFDR(光频域反射仪)方法相比,具有更好的测量能力。

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