引发高压断路器的故障的原因主要集中在其机械特性方面,而断路器的分合闸线圈及储能电机的电流波形可以反应卡滞等机械特性方面的异常。基于分合闸线圈电流信号的高压断路器在线监测系统,实时监测断路器分合闸线圈及储能电机的电流波形...引发高压断路器的故障的原因主要集中在其机械特性方面,而断路器的分合闸线圈及储能电机的电流波形可以反应卡滞等机械特性方面的异常。基于分合闸线圈电流信号的高压断路器在线监测系统,实时监测断路器分合闸线圈及储能电机的电流波形,分析计算出断路器的机械特性参数,显示高压断路器操动系统的性能状态,从而诊断出断路器潜伏性机械故障,为实现高压断路器的状态检修提供了一种有效的技术手段。通过功能测试、可靠性测试和现场对比试验,结果表明该系统各项性能均达到设计要求。系统被装备在平高集团公司生产的252 k V智能GIS上,有效地提高了该产品的智能化技术水平。展开更多
In this paper, based on the constructive interference of plasmonic dipolar and quadrupolar modes, a classical analogue of electromagnetically induced absorption (EIA) is demonstrated theoretically in a stacked metam...In this paper, based on the constructive interference of plasmonic dipolar and quadrupolar modes, a classical analogue of electromagnetically induced absorption (EIA) is demonstrated theoretically in a stacked metamaterial consisting of a short metal strip (which acts as a bright resonator) and a long metal strip (acting as a dark resonator), which has been reported to support the electromagnetically induced transparency (EIT) effect. The transition from EIA to EIT can be clearly observed in the absorbance spectra via varying the vertical spacing between two resonant oscillators. With the help of the coupled two-oscillator model, the phase shift between the bright and dark resonance modes is calculated by fitting the simulated absorbance spectra, which reveals the physical mechanisms behind constructive and destructive interference effects in EIT/EIA metamaterials.展开更多
文摘引发高压断路器的故障的原因主要集中在其机械特性方面,而断路器的分合闸线圈及储能电机的电流波形可以反应卡滞等机械特性方面的异常。基于分合闸线圈电流信号的高压断路器在线监测系统,实时监测断路器分合闸线圈及储能电机的电流波形,分析计算出断路器的机械特性参数,显示高压断路器操动系统的性能状态,从而诊断出断路器潜伏性机械故障,为实现高压断路器的状态检修提供了一种有效的技术手段。通过功能测试、可靠性测试和现场对比试验,结果表明该系统各项性能均达到设计要求。系统被装备在平高集团公司生产的252 k V智能GIS上,有效地提高了该产品的智能化技术水平。
基金Project supported by the Research Project for Basic&Forefront Technology of Henan Province,China(Grant No.132300410301)the Key Research Project for Science and Technology of the Education Department of Henan Province,China(Grant No.13B430181)
文摘In this paper, based on the constructive interference of plasmonic dipolar and quadrupolar modes, a classical analogue of electromagnetically induced absorption (EIA) is demonstrated theoretically in a stacked metamaterial consisting of a short metal strip (which acts as a bright resonator) and a long metal strip (acting as a dark resonator), which has been reported to support the electromagnetically induced transparency (EIT) effect. The transition from EIA to EIT can be clearly observed in the absorbance spectra via varying the vertical spacing between two resonant oscillators. With the help of the coupled two-oscillator model, the phase shift between the bright and dark resonance modes is calculated by fitting the simulated absorbance spectra, which reveals the physical mechanisms behind constructive and destructive interference effects in EIT/EIA metamaterials.