Triplexers are designed based on SOl flattop arrayed waveguide gratings (AWGs). Three wavelengths (1310, 1490,and 1550nm) operate at three diffraction orders of AWGs. Simulation shows that the 3dB bandwidth,crosst...Triplexers are designed based on SOl flattop arrayed waveguide gratings (AWGs). Three wavelengths (1310, 1490,and 1550nm) operate at three diffraction orders of AWGs. Simulation shows that the 3dB bandwidth,crosstalk, and loss are 6nm,less than -40dB, and 5dB, respectively. The output optical fields of the device fabricated in our laboratory are clear and show a good triplexing function.展开更多
全光纤电流互感器FOCT(fiber optical current transducer)被广泛应用于电力系统,对其进行故障诊断和分析,能够提高其运行可靠性。基于全光纤电流互感器故障数据构建故障模式与影响分析FMEA(fault mode and effect analysis)表格,建立...全光纤电流互感器FOCT(fiber optical current transducer)被广泛应用于电力系统,对其进行故障诊断和分析,能够提高其运行可靠性。基于全光纤电流互感器故障数据构建故障模式与影响分析FMEA(fault mode and effect analysis)表格,建立故障树,构造故障特征空间。利用FMEA表格、故障树和故障特征空间聚类中心构造故障诊断专家系统,从而实现对故障类型、模式和部件的准确诊断。利用某区域电网中全光纤电流互感器故障数据和故障案例对所提方法进行验证,结果表明:基于故障诊断专家系统对故障全光纤电流互感器进行诊断的结果与现场实际结果一致,验证了本方法准确性和可靠性。展开更多
文摘Triplexers are designed based on SOl flattop arrayed waveguide gratings (AWGs). Three wavelengths (1310, 1490,and 1550nm) operate at three diffraction orders of AWGs. Simulation shows that the 3dB bandwidth,crosstalk, and loss are 6nm,less than -40dB, and 5dB, respectively. The output optical fields of the device fabricated in our laboratory are clear and show a good triplexing function.
文摘全光纤电流互感器FOCT(fiber optical current transducer)被广泛应用于电力系统,对其进行故障诊断和分析,能够提高其运行可靠性。基于全光纤电流互感器故障数据构建故障模式与影响分析FMEA(fault mode and effect analysis)表格,建立故障树,构造故障特征空间。利用FMEA表格、故障树和故障特征空间聚类中心构造故障诊断专家系统,从而实现对故障类型、模式和部件的准确诊断。利用某区域电网中全光纤电流互感器故障数据和故障案例对所提方法进行验证,结果表明:基于故障诊断专家系统对故障全光纤电流互感器进行诊断的结果与现场实际结果一致,验证了本方法准确性和可靠性。