快反镜作为高精度光学系统的核心执行机构,其控制策略的优劣直接影响系统性能。传统的快反镜控制策略依赖独立的控制盒和线性功放模块,导致快反镜控制系统体积大、热量高、应用受限。而基于金属-氧化物半导体场效应晶体管(metal-oxide-s...快反镜作为高精度光学系统的核心执行机构,其控制策略的优劣直接影响系统性能。传统的快反镜控制策略依赖独立的控制盒和线性功放模块,导致快反镜控制系统体积大、热量高、应用受限。而基于金属-氧化物半导体场效应晶体管(metal-oxide-semiconductor field-effect transistor,MOSFET)开关量驱动的快反镜在控制上难以达到精度要求。通过对快反镜的建模扫频分析,提出了开环零极点配置与比例积分控制(proportional integral derivative,PID)相结合的控制策略,并在快反镜的硬件平台上进行了仿真验证。实验结果表明,该控制策略在不依赖额外控制器和驱动模块的前提下,能够保证快反镜控制的高精度要求。展开更多
A fast-sweep Langmuir probe (FSLP) diagnostic system was designed and applied to obtain the electron temperature fluctuations of a transient plasma. The diagnostic system consists of a single Langmuir probe driven b...A fast-sweep Langmuir probe (FSLP) diagnostic system was designed and applied to obtain the electron temperature fluctuations of a transient plasma. The diagnostic system consists of a single Langmuir probe driven by a high frequency sinusoidal voltage. The current-voltage I- V characteristics can be recorded by sweeping the voltage and measuring the current with an appropriate circuit. This new instrument is based on a dual channel circuit that compensates for stray capacitance. The current and voltage spectra were acquired from the probe synchronously by a digital oscilloscope. The aim of this work was to apply the FSLP diagnostic system to a time- dependent plasma generated by a hypervelocity impact between the LY12 Aluminum projectile and LY12 Aluminum target.展开更多
文摘快反镜作为高精度光学系统的核心执行机构,其控制策略的优劣直接影响系统性能。传统的快反镜控制策略依赖独立的控制盒和线性功放模块,导致快反镜控制系统体积大、热量高、应用受限。而基于金属-氧化物半导体场效应晶体管(metal-oxide-semiconductor field-effect transistor,MOSFET)开关量驱动的快反镜在控制上难以达到精度要求。通过对快反镜的建模扫频分析,提出了开环零极点配置与比例积分控制(proportional integral derivative,PID)相结合的控制策略,并在快反镜的硬件平台上进行了仿真验证。实验结果表明,该控制策略在不依赖额外控制器和驱动模块的前提下,能够保证快反镜控制的高精度要求。
基金National Natural Science Foundation of China(No.10772028)
文摘A fast-sweep Langmuir probe (FSLP) diagnostic system was designed and applied to obtain the electron temperature fluctuations of a transient plasma. The diagnostic system consists of a single Langmuir probe driven by a high frequency sinusoidal voltage. The current-voltage I- V characteristics can be recorded by sweeping the voltage and measuring the current with an appropriate circuit. This new instrument is based on a dual channel circuit that compensates for stray capacitance. The current and voltage spectra were acquired from the probe synchronously by a digital oscilloscope. The aim of this work was to apply the FSLP diagnostic system to a time- dependent plasma generated by a hypervelocity impact between the LY12 Aluminum projectile and LY12 Aluminum target.