现如今,各领域对时间统一系统的性能要求越来越高。以往的时间统一系统大多使用网络时间协议(Network Time Protocol, NTP)进行授时,但该协议只能提供毫秒级的同步精度,且主时钟一般为固定不变的,无法满足测控等应用领域的高精度、高鲁...现如今,各领域对时间统一系统的性能要求越来越高。以往的时间统一系统大多使用网络时间协议(Network Time Protocol, NTP)进行授时,但该协议只能提供毫秒级的同步精度,且主时钟一般为固定不变的,无法满足测控等应用领域的高精度、高鲁棒性的要求。基于此,对基于IEEE1588标准(Precision Time Protocol,PTP)授时的高可靠时间统一系统的应用进行了深入研究。本系统采用PTP协议进行授时,可使系统时间同步精度达到纳秒级,并以最佳主时钟算法(Best Master Clock,BMC)为理论基础,设计并实现手动设置与自动选择两种模式的双机热备功能,满足了测控等应用领域对时间统一系统的高性能要求。相比较以往的时间统一系统,本系统大大提升了系统的授时精度与鲁棒性。展开更多
The pedestal characteristic is an important basis for high confinement mode (H- mode) research. Because of the finite spatial resolution of Thomson scattering (TS) diagnostic on Experimental Advanced Superconducti...The pedestal characteristic is an important basis for high confinement mode (H- mode) research. Because of the finite spatial resolution of Thomson scattering (TS) diagnostic on Experimental Advanced Superconducting Tokamak (EAST), it is necessary to characterize the pedestal with a suitable functional form. Based on simulated and experimental data of EAST, it is shown that the two-line method with a bilinear fitting has better reproducibility of pedestal parameters than hyperbolic tangent (tanh) and modified hyperbolic tangent (mtanh) methods. This method has been applied to EAST type I edge localized mode (ELM) discharges, and the electron pedestal density is found to be proportional to the line-averaged density and the edge pressure gradient is found to be proportional to the pedestal pressure. Furthermore, the ion poloidal gyro-radius has been identified as the suitable parameter to describe the pedestal pressure width.展开更多
A visible light imaging Thomson scattering (VIS-TVTS) diagnostic system has been developed for the measurement of plasma electron temperature on the HT-7 tokamak. The system contains a Nd:YAG laser (A = 532 nm, re...A visible light imaging Thomson scattering (VIS-TVTS) diagnostic system has been developed for the measurement of plasma electron temperature on the HT-7 tokamak. The system contains a Nd:YAG laser (A = 532 nm, repetition rate 10 Hz, total pulse duration ≈ 10 ns, pulse energy 〉 1.0 J), a grating spectrometer, an image intensifier (I.I.) lens coupled with an electron multiplying CCD (EMCCD) and a data acquisition and analysis system. In this paper, the measurement capability of the system is analyzed. In addition to the performance of the system, the capability of measuring plasma electron temperature has been proved. The profile of electron temperature is presented with a spatial resolution of about 0.96 cm (seven points) near the center of the plasma.展开更多
文摘现如今,各领域对时间统一系统的性能要求越来越高。以往的时间统一系统大多使用网络时间协议(Network Time Protocol, NTP)进行授时,但该协议只能提供毫秒级的同步精度,且主时钟一般为固定不变的,无法满足测控等应用领域的高精度、高鲁棒性的要求。基于此,对基于IEEE1588标准(Precision Time Protocol,PTP)授时的高可靠时间统一系统的应用进行了深入研究。本系统采用PTP协议进行授时,可使系统时间同步精度达到纳秒级,并以最佳主时钟算法(Best Master Clock,BMC)为理论基础,设计并实现手动设置与自动选择两种模式的双机热备功能,满足了测控等应用领域对时间统一系统的高性能要求。相比较以往的时间统一系统,本系统大大提升了系统的授时精度与鲁棒性。
基金supported by National Natural Science Foundation of China(Nos.11275233 and 11405206)the National Magnetic Confinement Fusion Science Program of China(No.2013GB112003)Science Foundation of Institute of Plasma Physics,Chinese Academy of Sciences(No.DSJJ-15-JC01)
文摘The pedestal characteristic is an important basis for high confinement mode (H- mode) research. Because of the finite spatial resolution of Thomson scattering (TS) diagnostic on Experimental Advanced Superconducting Tokamak (EAST), it is necessary to characterize the pedestal with a suitable functional form. Based on simulated and experimental data of EAST, it is shown that the two-line method with a bilinear fitting has better reproducibility of pedestal parameters than hyperbolic tangent (tanh) and modified hyperbolic tangent (mtanh) methods. This method has been applied to EAST type I edge localized mode (ELM) discharges, and the electron pedestal density is found to be proportional to the line-averaged density and the edge pressure gradient is found to be proportional to the pedestal pressure. Furthermore, the ion poloidal gyro-radius has been identified as the suitable parameter to describe the pedestal pressure width.
基金supported by National Natural Science Foundation of China(Nos.11075187,11275233)National Magnetic Confinement Fusion Science Program of China(Nos.2013GB112003,2011GB101003)
文摘A visible light imaging Thomson scattering (VIS-TVTS) diagnostic system has been developed for the measurement of plasma electron temperature on the HT-7 tokamak. The system contains a Nd:YAG laser (A = 532 nm, repetition rate 10 Hz, total pulse duration ≈ 10 ns, pulse energy 〉 1.0 J), a grating spectrometer, an image intensifier (I.I.) lens coupled with an electron multiplying CCD (EMCCD) and a data acquisition and analysis system. In this paper, the measurement capability of the system is analyzed. In addition to the performance of the system, the capability of measuring plasma electron temperature has been proved. The profile of electron temperature is presented with a spatial resolution of about 0.96 cm (seven points) near the center of the plasma.