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181.
空间相机相对辐射定标精度分析   总被引:2,自引:0,他引:2  
文章介绍了CCD相机辐射定标概念;分析对比了平均行标准差法、平均标准差法和广义噪声法三种计算相对辐射定标精度的算法;对归一化系数法、最小二乘法进行相对定标的数学原理进行了介绍;并采用中巴地球资源卫星02B CCD相机辐射定标数据计算三种定标精度,验证了理论分析的正确性,并指出了现有定义算法的不足处。  相似文献   
182.
航天器虚拟热试验平台的软件架构及其应用   总被引:2,自引:1,他引:1  
针对我国目前航天领域型号试验任务重、成本高的特点,文章提出搭建航天器虚拟热试验平台以缩短型号研制周期、减少研发成本。虚拟热试验平台结构拟由5个单独模块组成:试验系统描述及边界条件输入模块,虚拟试验运算模块,模型修正模块,结果报表及经济性分析模块和虚拟试验数据库。另外提出了虚拟热试验平台在航天器真空热试验中的应用。  相似文献   
183.
文章研究了不同注量与辐照能量的质子对JGS3石英玻璃辐照前后光学性能的影响,并对其规律进行了初步探讨。实验中采用UV-3101PC分光光度计对辐照前后石英玻璃的光学性质进行测量。研究结果表明:质子辐照使该玻璃产生着色现象,在200~800 nm波长范围内产生了明显的光吸收;辐照注量和辐照能量均对石英玻璃光吸收有影响,其中辐照注量的影响更加明显。  相似文献   
184.
基于RCS观测序列的空间目标识别算法   总被引:1,自引:0,他引:1  
针对低分辨率雷达体制下的空间目标识别问题,提出了基于RCS观测序列的空间目标识别算法.该算法首先对空间目标的低分辨雷达RCS观测序列进行离散小波变换,然后在时间-尺度平面上提取十个有效的统计特征,最后基于模糊分类来识别空间目标.应用四类空间目标的实测数据进行了仿真实验,取得了比较好的识别效果.  相似文献   
185.
为解决微纳聚合体卫星变构过程中,聚合体各部分之间的动力学耦合导致的卫星整体姿态翻转或紊乱,提出了一种对称式变构规划算法。首先建立了铰链约束下的漂浮基多刚体系统动力学模型,研究了重构过程中各运动模块对本体姿态的影响,提出当每两个运动模块位置与转动方向满足对称性条件时,两者对本体姿态的影响可在一定程度上相互抵消。基于上述理论,在A*算法中引入最优分配度量和对称性判定,设计了并行对称重构规划算法。仿真结果表明,该规划算法可实现重构过程中多模块并行、对称运动,重构过程总步数较少,运动模块对本体姿态的影响小。  相似文献   
186.
周觐  雷虎民  侯峰  赵炜 《宇航学报》2018,39(9):1003-1012
针对拦截高速目标的作战特点,分析了比例导引(PN)与反比例导引(RPN)的捕获区。首先,通过分析拦截弹与目标的相对运动关系,推导得到了顺轨和逆轨的零控拦截条件,此条件由目标和拦截弹的速度前置角以及二者速度比确定;其次,以拦截弹和目标速度前置角为坐标系,推导得到了PN以及RPN捕获区以及各自导航比设置范围。PN的捕获区由逆轨零控拦截条件以及与其相切且斜率为1/(N-1)的两条直线构成,RPN的捕获区由顺轨零控拦截条件以及与其相切且斜率为1/(-N-1)的两条直线构成;然后,利用函数对称性将PN与RPN捕获区转换到同一坐标区间,得到了相同条件下RPN捕获区要大于PN捕获区的结论;最后,开展了四种情形下的仿真,验证了本文捕获区分析的合理性及有效性。  相似文献   
187.
叙述了一种新型转速激光干涉测量方法,详细分析了这种方法的工作原理,确定了本测量方法的转速测量范围,给出了实验结果。  相似文献   
188.
静压气浮轴承是惯性器件测试平台回转支撑轴系的关键部件,其承载能力和回转精度对惯性器件测试的准确性有着重要的影响,目前,静压气浮轴承设计、计算过程复杂,为提高设计效率,简化设计方法,在满足静压气浮轴承性能的条件下,推导了静压气浮轴承工程计算公式,在此基础上,设计了一款双向止推空气轴承,确定了几何参数,计算了空气静压径向轴承、空气静压止推轴承的轴承承载力、刚度、耗气量及摩擦力矩,并与有限元仿真结果进行了对比分析,验证了该设计方法的有效性。  相似文献   
189.
The GRACE (Gravity Recovery And Climate Experiment) monthly gravity models have been independently produced and published by several research institutions, such as Center for Space Research (CSR), GeoForschungsZentrum (GFZ), Jet Propulsion Laboratory (JPL), Centre National d’Etudes Spatiales (CNES) and Delft Institute of Earth Observation and Space Systems (DEOS). According to their processing standards, above institutions use the traditional variational approach except that the DEOS exploits the acceleration approach. The background force models employed are rather similar. The produced gravity field models generally agree with one another in the spatial pattern. However, there are some discrepancies in the gravity signal amplitude between solutions produced by different institutions. In particular, 10%–30% signal amplitude differences in some river basins can be observed. In this paper, we implemented a variant of the traditional variational approach and computed two sets of monthly gravity field solutions using the data from January 2005 to December 2006. The input data are K-band range-rates (KBRR) and kinematic orbits of GRACE satellites. The main difference in the production of our two types of models is how to deal with nuisance parameters. This type of parameters is necessary to absorb low-frequency errors in the data, which are mainly the aliasing and instrument errors. One way is to remove the nuisance parameters before estimating the geopotential coefficients, called NPARB approach in the paper. The other way is to estimate the nuisance parameters and geopotential coefficients simultaneously, called NPESS approach. These two types of solutions mainly differ in geopotential coefficients from degree 2 to 5. This can be explained by the fact that the nuisance parameters and the gravity field coefficients are highly correlated, particularly at low degrees. We compare these solutions with the official and published ones by means of spectral analysis. It is found that our solutions are, in general, consistent with others in the spatial pattern. The water storage variations of the Amazon, Chari and Ganges river basins have also been computed. The variations computed with the NPARB approach are closer to those produced by JPL and DEOS solutions, while the variations produced with the NPESS approach are in good agreement with those produced by the CSR and GFZ solutions. A simulation study is implemented with considering realistic noise and low-frequency error. The two approaches are used to recover the true model. The NPESS solution appears closer to the true one. Therefore we are inclined to estimate the nuisance parameters simultaneously with the geopential coefficients.  相似文献   
190.
This article summarizes a conceptual design of a bioregenerative life support system for permanent lunar base or planetary exploration. The system consists of seven compartments – higher plants cultivation, animal rearing, human habitation, water recovery, waste treatment, atmosphere management, and storages. Fifteen kinds of crops, such as wheat, rice, soybean, lettuce, and mulberry, were selected as main life support contributors to provide the crew with air, water, and vegetable food. Silkworms fed by crop leaves were designated to produce partial animal nutrition for the crew. Various physical-chemical and biological methods were combined to reclaim wastewater and solid waste. Condensate collected from atmosphere was recycled into potable water through granular activated carbon adsorption, iodine sterilization, and trace element supplementation. All grey water was also purified though multifiltration and ultraviolet sterilization. Plant residue, human excrement, silkworm feces, etc. were decomposed into inorganic substances which were finally absorbed by higher plants. Some meat, ingredients, as well as nitrogen fertilizer were prestored and resupplied periodically. Meanwhile, the same amount and chemical composition of organic waste was dumped to maintain the steady state of the system. A nutritional balanced diet was developed by means of the linear programming method. It could provide 2721 kcal of energy, 375.5 g of carbohydrate, 99.47 g of protein, and 91.19 g of fat per capita per day. Silkworm powder covered 12.54% of total animal protein intakes. The balance of material flows between compartments was described by the system of stoichiometric equations. Basic life support requirements for crews including oxygen, food, potable and hygiene water summed up to 29.68 kg per capita per day. The coefficient of system material closure reached 99.40%.  相似文献   
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