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71.
Binary or multiple stellar systems, constituting almost a third of the content of the Milky Way, represent a high priority astronomical target due to their repercussions on the stellar dynamical and evolutionary parameters. Moreover the spectral study of such class of stars allows to better constrain the evolutionary theories of the Galactic stellar populations. By resolving the members of stellar systems through photometric observations we are able to perform more detailed measurements to infer their mass. In this paper we investigate the feasibility of a cubesat based mission including an optical payload to directly optically discriminate the members of a selected sample of binary systems. The scientific targets, consisting 11?M class dwarf stars binary systems, have been extracted from the already studied Riaz catalogue. These subset has been selected considering the star distance, the members angular separation, and the distance from the Galactic plane (due to limit the background and foreground contamination). The satellite concept is based on a 6 unit Cubesat embedding some commercial off the shelf components and an ad hoc designed optical payload occupying almost 4 units. The optical configuration has been chosen in order to fit the angular resolution requirements, as derived from the target characteristics. Moreover, according to the optical analysis and the computed field of view some requirements on the attitude control system have been inferred and fulfilled by the component selection. The paper is organized as in the following: a brief scientific introduction is made; consequently the project is described with particular attention to the optical design and the standard sub-systems; finally the conclusions are drawn and the future perspectives are investigated.  相似文献   
72.
针对飞机装配过程质量评价对数字化测量技术的需求,开展了面向飞机装配的数字化测量特征设计、测量方案设计、多系统异构测量场构建、测量误差分析与修正等技术研究,并以表面类、内部结构特征、大部件对接和活动部件装配质量的控制为例,阐述了测量设备选型、整体测量场的构建方法及其应用效果.  相似文献   
73.
《中国航空学报》2020,33(12):3027-3038
Hypersonic and high-enthalpy wind tunnels and their measurement techniques are the cornerstone of the hypersonic flight era that is a dream for human beings to fly faster, higher and further. The great progress has been achieved during the recent years and their critical technologies are still in an urgent need for further development. There are at least four kinds of hypersonic and high-enthalpy wind tunnels that are widely applied over the world and can be classified according to their operation modes. These wind tunnels are named as air-directly-heated hypersonic wind tunnel, light-gas-heated shock tunnel, free-piston-driven shock tunnel and detonation-driven shock tunnel, respectively. The critical technologies for developing the wind tunnels are introduced in this paper, and their merits and weakness are discussed based on wind tunnel performance evaluation. Measurement techniques especially developed for high-enthalpy flows are a part of the hypersonic wind tunnel technology because the flow is a chemically reacting gas motion and its diagnosis needs specially designed instruments. Three kinds of the measurement techniques considered to be of primary importance are introduced here, including the heat flux sensor, the aerodynamic balance, and optical diagnosis techniques. The techniques are developed usually for conventional wind tunnels, but further improved for hypersonic and high-enthalpy tunnels. The hypersonic ground test facilities have provided us with most of valuable experimental data on high-enthalpy flows and will play a more important role in hypersonic research area in the future. Therefore, several prospects for developing hypersonic and high-enthalpy wind tunnels are presented from our point of view.  相似文献   
74.
《中国航空学报》2020,33(12):3082-3091
Owing to the strong coupling among the hydrodynamic forces, aerodynamic forces and motion of amphibious aircraft during the water takeoff process, the water takeoff performance is difficult to calculate accurately and quickly. Based on an analysis of the dynamics and kinematics characteristics of amphibious aircraft and the hydrodynamic theory of high-speed planing hulls, a suitable mathematical model is established for calculating the hydrodynamics of aircraft during water takeoff. A pilot model is designed to illustrate how pilots are affected by the lack of visual reference and the necessity to simultaneously control the pitch angle, flight velocity and other parameters during water takeoff. Combined with the aerodynamic model, engine thrust model and aircraft motion model, a digital virtual flight simulation model is developed for amphibious aircraft during water takeoff, and a calculation method for the water takeoff performance of amphibious aircraft is proposed based on digital virtual flight. Typical performance indicators, such as the liftoff time and liftoff distance, can be obtained via digital virtual flight calculations. A comparison of the measured flight test data and the calculation results shows that the calculation error is less than 10%, which verifies the correctness and accuracy of the proposed method. This method can be used for the preliminary evaluation of airworthiness compliance of amphibious aircraft design schemes, and the relevant calculation results can also provide a theoretical reference for the formulation of flight test plans for airworthiness certification.  相似文献   
75.
复合材料构件设计、分析、制造一体化   总被引:1,自引:0,他引:1       下载免费PDF全文
给出了复合材料构件一体化研制环境基本要素和一体化研制流程,并对几项关键技术进行了探讨。复合材料构件数字化定义包括几何建模和材料结构建模,总结了建模过程和数据的组成。根据当前复合材料构件分析无法基于最终真实纤维路径进行的现状,总结了接口数据的内容和组织,探讨了通过纤维路径数据到有限元网格的自动映射实现材料铺放数据的自动传递。研究了设计到自动下料系统和激光投影系统的接口数据和集成方式。  相似文献   
76.
通过介绍高精度秒脉冲信号的实现原理以及实现中的关键技术,分析了如何减小由码跟踪环路测量误差导致的秒脉冲信号随机抖动误差,提出了减小由直接数字频率合成器导致的秒脉冲信号系统钟模糊误差的实现方法。最后给出了在"北斗"一号卫星标校机工程应用中的实际性能,统计精度(1倍标准差)为1.7ns,保证了标校设备能高精度地服务于BD-1导航定位系统。  相似文献   
77.
干涉测量宽带相关处理算法与验证   总被引:1,自引:0,他引:1  
阐述了一种用于航天器精确角位置测量的干涉测量宽带相关信号处理算法,通过仿真验证了算法的有效性,并搭建卫星干涉测量实验系统,采集某地球同步卫星信号进行宽带相关信号处理,获得清晰干涉条纹,准确估计出反映测站与卫星位置关系的时延观测量。结果表明宽带相关信号处理的估计时延与卫星信号链路标定时延、测距时延组成系统时延闭合回路,初步验证了干涉测量实验系统的有效性,为后续飞行任务中航天器高精度干涉测量积累了技术和经验。  相似文献   
78.
从湍流退化图像中有效地恢复出原目标图像,是空间目标成像观测亟待解决的问题。为解决强模糊实际观测湍流退化图像的复原问题,本文提出了多帧PML规整化图像复原算法。该算法主要利用非线性规整化项在点扩散函数和目标图像的估计过程中进行平滑。为验证算法的有效性,针对强噪声退化图像进行了恢复实验,实验结果证明,该算法对于强噪声湍流退化图像的复原是非常有效的。  相似文献   
79.
分析了飞机全电刹车系统的基本结构及其工作原理,在此基础上,提出了以先进的数字信号处理器(DSP)为核心的数字防滑刹车控制器,采用速度差加压力偏调(PD+PBM)控制算法,使用ARJNC429总线通信方式进行通信,完成了数字防滑刹车控制器的软硬件设计及系统调试等.试验结果表明,该数字防滑刹车控制器工作稳定可靠,与系统联试...  相似文献   
80.
采用微小卫星姿态运动学、动力学方程,以磁强计/太阳敏感器为姿态敏感器进行姿态确定,研究了一种基于融合反馈的改进联邦滤波算法,提出了一种基于观测新息修改的信息分配原则。给出了由四元数描述卫星姿态的误差状态方程,并对观测矢量进行推导,获得了基于角速度的观测方程,丰富了观测模型。仿真结果表明:基于角速度观测方程的引入,增强了观测信息的利用率,进而提高了姿态确定的精度,降低了计算量,保证了可靠性。  相似文献   
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