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首页> 外文期刊>IEEE Transactions on Power Delivery >Transmission delay variations in OPGW and overhead fiber-optic cable links
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Transmission delay variations in OPGW and overhead fiber-optic cable links

机译:OPGW和架空光缆链路中的传输延迟变化

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摘要

Round-trip transmission delays in a 128.5-km optical ground wire (OPGW) link and 12.5-km and 12-km overhead fiber-optic cable links were measured to clarify the effect of meteorological conditions, dominantly atmospheric temperature, on the delay variation. Transmission delays measured at 5 a.m. can be well expressed only in terms of atmospheric temperature along the links, while those at 1 p.m. can be expressed using four meteorological parameters of atmospheric temperature, sunshine duration or solar radiation, wind speed and precipitation. The coefficients of delay variation with respect to atmospheric temperature range approximately from 60 to 100 ps/km//spl deg/C where the cable links are more affected by temperature than the OPGW link, and delays in the daytime vary more than in the nighttime due to solar radiation. The results could be used for estimating the increase of cable temperature due to solar radiation and for designing fiber-optic time transfer networks effective for power system protection.
机译:测量了128.5公里的光地线(OPGW)链路以及12.5公里和12公里的架空光缆链路中的往返传输延迟,以阐明气象条件(主要是大气温度)对延迟变化的影响。在上午5点测量的传输延迟只能用沿链路的大气温度来表示,而在下午1点则可以很好地表示。可以使用大气温度,日照时间或太阳辐射,风速和降水这四个气象参数来表示。相对于大气温度的延迟变化系数约为60至100 ps / km // spl deg / C,其中电缆链路比OPGW链路受温度影响更大,白天的延迟比夜间的变化大由于太阳辐射。该结果可用于估计由于太阳辐射引起的电缆温度升高,以及可用于设计对电力系统保护有效的光纤时间传输网络。

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