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501.
高校图书流通的5M1E管理法 总被引:1,自引:1,他引:0
兰林蓉 《桂林航天工业高等专科学校学报》2009,14(1)
借鉴质量管理中的"人机料法环测"(5M1E)因果分析管理方法,提出了高校图书流通管理的5M1E分析管理方法.在分析高校图书流通过程中诸要素的作用及其相互关系的基础上,阐述了"以读者为核心,以网络为平台,以图书为对象,依规程做约束.依测量做评价,依环境做创新"的高校图书流通管理指导思想及分析管理方法. 相似文献
502.
介绍了512×512高速帧转移面阵CCD器件时序设计的方法。在分析器件结构和时序关系的’基础上,确定了时序设计的主要参数,并利用复杂可编程逻辑器件(CPLD)EPM7256AETC100—5实现了CCD器件工作所需的各种时序信号。通过时序仿真证明,设计方法正确可行,运行稳定。 相似文献
503.
504.
嫦娥一号卫星的制导、导航与控制 总被引:1,自引:0,他引:1
嫦娥一号卫星是中国首颗月球卫星。卫星制导、导航与控制(GNC)任务复杂多变,对系统实时性、可靠性和精度要求较高。文章介绍嫦娥一号卫星GNC系统组成、控制方法、系统特点和典型飞行结果。 相似文献
505.
506.
Yongchun Zheng Shijie Wang Ziyuan Ouyang Yongliao Zou Jianzhong Liu Chunlai Li Xiongyao Li Junming Feng 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2009
Lunar soil simulant is a geochemical reproduction of lunar regolith, and is needed for lunar science and engineering researches. This paper describes a new lunar soil simulant, CAS-1, prepared by the Chinese Academy of Sciences, to support lunar orbiter, soft-landing mission and sample return missions of China’s Lunar Exploration Program, which is scheduled for 2004–2020. Such simulants should match the samples returned from the Moon, all collected from the lunar regolith rather than outcrops. The average mineral and chemical composition of lunar soil sample returned from the Apollo 14 mission, which landed on the Fra Mauro Formation, is chosen as the model for the CAS-1 simulant. Source material for this simulant was a low-Ti basaltic scoria dated at 1600 years from the late Quaternary volcanic area in the Changbai Mountains of northeast China. The main minerals of this rock are pyroxene, olivine, and minor plagioclase, and about 20–40% modal glass. The scoria was analyzed by XRF and found to be chemically similar to Apollo 14 lunar sample 14163. It was crushed in an impact mill with a resulting median particle size 85.9 μm, similar to Apollo soils. Bulk density, shear resistance, complex permittivity, and reflectance spectra were also similar to Apollo 14 soil. We conclude that CAS-1 is an ideal lunar soil simulant for science and engineering research of future lunar exploration program. 相似文献
507.
Zhen Li Marek Ziebart Santosh Bhattarai David Harrison Stuart Grey 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(9):2352-2365
Physics based SRP (Solar Radiation Pressure) models using ray tracing methods are powerful tools when modelling the forces on complex real world space vehicles. Currently high resolution (1?mm) ray tracing with secondary intersections is done on high performance computers at UCL (University College London). This study introduces the BVH (Bounding Volume Hierarchy) into the ray tracing approach for physics based SRP modelling and makes it possible to run high resolution analysis on personal computers. The ray tracer is both general and efficient enough to cope with the complex shape of satellites and multiple reflections (three or more, with no upper limit). In this study, the traditional ray tracing technique is introduced in the first place and then the BVH is integrated into the ray tracing. Four aspects of the ray tracer were tested for investigating the performance including runtime, accuracy, the effects of multiple reflections and the effects of pixel array resolution.Test results in runtime on GPS IIR and Galileo IOV (In Orbit Validation) satellites show that the BVH can make the force model computation 30–50 times faster. The ray tracer has an absolute accuracy of several nanonewtons by comparing the test results for spheres and planes with the analytical computations. The multiple reflection effects are investigated both in the intersection number and acceleration on GPS IIR, Galileo IOV and Sentinel-1 spacecraft. Considering the number of intersections, the 3rd reflection can capture , and of the total reflections for GPS IIR, Galileo IOV satellite bus and the Sentinel-1 spacecraft respectively. In terms of the multiple reflection effects on the acceleration, the secondary reflection effect for Galileo IOV satellite and Sentinel-1 can reach 0.2? and 0.4? respectively. The error percentage in the accelerations magnitude results show that the 3rd reflection should be considered in order to make it less than . The pixel array resolution tests show that the dimensions of the components have to be considered when choosing the spacing of the pixel in order not to miss some components of the satellite in ray tracing. This paper presents the first systematic and quantitative study of the secondary and higher order intersection effects. It shows conclusively the effect is non-negligible for certain classes of misson. 相似文献
508.
Operation and Application of A, B Satellites for Environment and Disaster Monitoring and Forecasting
Wang Jianyu Liu Yinnian Fang Zhiyon Yang Siquan Nie Juan Wu Wei Liu Sanchao Wang Lei Wang Qiao Wei Bin Wang Changzuo Zhang Feng Yu Jin Li Zhaozhou 《空间科学学报》2010,30(5):486-492
Environment and disaster monitoring and forecasting small satellite constellation A and B satellites (HJ-1-A, B) are called "environment and disaster reduction satellites A and B' for short. The constellation adopts a 10:30 LT sun-synchronous circular orbit, with orbit altitude of 649 km. HJ-1-A and HJ-1-B are distributed with a phase difference of 180o in the same orbital plane, so as to enhance the time resolution of earth observation. The satellites have orbit maintenance capability, the lifetime is 3 years. Both satellites adopt CAST968 platforms. Two wide-coverage multispectral CCD cameras with resolution 30 m and width 700 km, a super-spectral imager with resolution 100 m and width 50 km as well as a data transmission subsystem of 120 Mbit/s are deployed on HJ-1-A, which also carries Ka communication testing equipment of Thailand. HJ-1-B has two wide-coverage multispectral CCD cameras (the same as satellite A), one infrared camera with resolution 150 m and width 720 km and a data transmission subsystem of 60 Mbit/s. The coverage period of the wide-coverage multispectral CCD camera is 48 hours. The revisit period of super-spectral imager is 96 hours and the coverage period of infrared camera is 96 hours. 相似文献
509.
自动化测试系统在环境减灾-1A、1B卫星中的应用 总被引:1,自引:1,他引:0
在环境减灾-1A、1B(HJ-1A、1B)卫星的研制中,双星并行电性能综合测试是一个非常复杂和细致的过程,为此应用了卫星自动化测试系统,实现了测试信息的集中管理、测试数据的综合利用和测试流程的自动化,提高了测试工作的效率和质量。文章介绍HJ-1A、1B双星并行自动化综合测试系统,主要阐述测试实时数据库、自动化测试控制台、参数自动化监视软件等。 相似文献
510.