含有串联补偿的电力系统中,在某些情况下有可能发生次同步谐振(SSR),损坏发电机轴系。运用Gate-Controlled Series Capacitors(GCSC)可以有效的抑制或消除次同步谐振。本文将基于IEEE Frist BenchmarkModel和轴系扭曲模型,运用过零检测...含有串联补偿的电力系统中,在某些情况下有可能发生次同步谐振(SSR),损坏发电机轴系。运用Gate-Controlled Series Capacitors(GCSC)可以有效的抑制或消除次同步谐振。本文将基于IEEE Frist BenchmarkModel和轴系扭曲模型,运用过零检测装置控制GCSC的关断脉冲,从而改变串联补偿线路的等值电抗,破坏次同步谐振的发生条件,达到抑制次同步谐振的目的。并且运用Matlab Simulink仿真系统对轴系参数进行仿真对比,仿真结果表明在串补线路中运用GCSC可以有效地抑制次同步谐振。展开更多
The n-γ discrimination performance of two experimental arrangements based on the rise-time method and the zero-crossing method was compared for a 50.8 mm-diametered and 50.8 mm-high BC501A liquid scintillator coupled...The n-γ discrimination performance of two experimental arrangements based on the rise-time method and the zero-crossing method was compared for a 50.8 mm-diametered and 50.8 mm-high BC501A liquid scintillator coupled to a 50.8 mm-diametered 9807B photomultiplier in this work. The low energy limitation of the detected neutron with different detector high voltages and the figure of merit of the n-γ discrimination in four neutron energy regions (1–2 MeV, 0.75–1 MeV, 0.5–0.75 MeV and below 0.5 MeV) were studied by using the Am-Be neutron source. Under a time statistical model of the photoelectron emission process in scintillation counters, the intrinsic capability of the n-γ discrimination performance under the optimal condition was evaluated. The experimental results of the zero-crossing method demonstrate a better n-γ. discrimination performance than those of the rise-time method, which is consistent with the calculated results.展开更多
文摘The n-γ discrimination performance of two experimental arrangements based on the rise-time method and the zero-crossing method was compared for a 50.8 mm-diametered and 50.8 mm-high BC501A liquid scintillator coupled to a 50.8 mm-diametered 9807B photomultiplier in this work. The low energy limitation of the detected neutron with different detector high voltages and the figure of merit of the n-γ discrimination in four neutron energy regions (1–2 MeV, 0.75–1 MeV, 0.5–0.75 MeV and below 0.5 MeV) were studied by using the Am-Be neutron source. Under a time statistical model of the photoelectron emission process in scintillation counters, the intrinsic capability of the n-γ discrimination performance under the optimal condition was evaluated. The experimental results of the zero-crossing method demonstrate a better n-γ. discrimination performance than those of the rise-time method, which is consistent with the calculated results.