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981.
Turner RE  Baker JC 《Acta Astronautica》1998,42(1-8):107-114
The high inclination orbit for the International Space Station poses a risk to astronauts on EVA during occasional periods of enhanced high energy particle flux from the sun known as Solar Particle Events. We are currently unable to predict these events within the few-hour lead time required for evasive action. Compounding the threat is the fact that station construction occurs during increasing solar activity and through the peak of the solar cycle. In this paper we present an overview of the risk, the current methods to provide forecasts of SPEs, and potential risk mitigation options.  相似文献   
982.
Extra-vehicular activity (EVA) has a significant role during extended space flights. It demonstrates that humans can survive and perform useful work outside the Orbital Space Stations (OSS) while wearing protective space suits (SS). When the International Space Station 'Alpha' (ISSA) is fully operational, EVA assembly, installation, maintenance and repair operations will become an everyday repetitive work activity in space. It needs new ergonomic evaluation of the work/rest schedule for an increasing of the labor amount per EVA hour. The metabolism assessment is a helpful method to control the productivity of the EVA astronaut and to optimize the work/rest regime. Three following methods were used in Russia to estimate real-time metabolic rates during EVA: 1. Oxygen consumption, computed from the pressure drop in a high pressure bottle per unit time (with actual thermodynamic oxygen properties under high pressure and oxygen leakage taken into account). 2. Carbon dioxide production, computed from CO2 concentration at the contaminant control cartridge and gas flow rate in the life support subsystem closed loop (nominal mode) or gas leakage in the SS open loop (emergency mode). 3. Heat removal, computed from the difference between the temperatures of coolant water or gas and its flow rate in a unit of time (with assumed humidity and wet oxygen state taken into account). Comparison of heat removal values with metabolic rates enables us to determine the thermal balance during an operative medical control of EVA at "Salyut-6", "Salyut-7" and "Mir" OSS. Complex analysis of metabolism, body temperature and heat rate supports a differential diagnosis between emotional and thermal components of stress during EVA. It gives a prognosis of human homeostasis during EVA. Available information has been acquired into an EVA data base which is an effective tool for ergonomical optimization.  相似文献   
983.
A relatively general formulation for studying the dynamics and control of an arbitrary spacecraft with interconnected flexible bodies has been developed accounting for transient system properties, shift in the center of mass, shear deformations, rotary inertias and geometric nonlinearities. This self-contained, comprehensive, numerical algorithm using system modes is applicable to a large class of spacecraft configurations of contemporary and future interests. Here, versatility of the approach is demonstrated through the dynamics and control studies aimed at the evolving Space Station Freedom.  相似文献   
984.
In 1994-1995 Lavochkin Association (Russia) together with the other enterprises in accordance with technical requirements of the Russian Space agency, developed a new Russian communication satellite of a small class that will operate in both the geostationary (GSO) and high-elliptical (HEO) orbits. This satellite may be injected into operational orbits using a SOYUZ-2 launch vehicle (LV) and a FREGAT upper stage (US) from Plesetsk and Baykonur space launch sites (SLS).The main reason for creating such a satellite was to decrease the cost of the support and development of the Russian communication geostationary satellites group.Russian satellites Horizont, Express, Ekran and Gals, which operate in GSO, are the basis of the space segment for communications, radio and TV broadcasting. All of these satellites are injected into GSO by the PROTON LV. PROTON is a launch vehicle of a heavy class. The use of a middle class LV instead of a heavy class will allow to reduce considerably the launch cost. The change of a heavy class LV to a LV of middle class determined one economic reason for this project. Besides, the opportunity to launch S/C into GSO from Russian Plesetsk SLS increases the independence of Russia in the domain of space communications, despite the presence of the contract with Kazachstan about the rent of Baykonur SLS. Finally, use of small satellites with a rather small number of transponders is more effective than the use of big satellites. It will allow also to increase a satellite group (by the launch of additional satellites) precisely in accordance to the development of the ground segment.  相似文献   
985.
The widely distributed nature of the Space Station Freedom program, plus continuous multi-year operations will force program planners to develop innovative planning concepts. The traditional centralized planning operation will not be adequate. It will be replaced by multiple small planning centers working within guidelines issued by a central planning authority. Plans will not be optimized; rather, operating efficiency and user flexibility will be blended to satisfy program goals. The key to this new approach is the application of new planning methodologies and system development technologies to accommodate distributed resources that must be integrated. Resources will be distributed to the multiple planning entities in such a way that, when the several plans are built and then integrated, they will fit together with minimal modification. The plan itself will be an envelope schedule containing resource limits and constraint boundaries within which users will be free to make choices of the specific activities they will execute, up to the time of execution. Some level of margin within program guidelines will be built in to allow for variation and unforeseen change. This paper presents the authors' recommended planning approach and cites two NASA systems being developed that will utilize these resource distribution/integration planning concepts, methodologies and development technologies.  相似文献   
986.
根据气动布局的基本原理,结合低RCS要求,设计了一种鸭式布局、带边条的翼身融合无人飞行器外形,实验结果表明,该外形不仅具有低RCS特征,而且具有良好的气动特性,升阻比达到8左右。  相似文献   
987.
基于星光大气折射的卫星自主轨道确定   总被引:16,自引:5,他引:16  
本文研究了利用星敏感器进行卫星轨道确定的自主导航方案。这种自主导航方案完全利用高精度的CCD星敏感器,以及大气对星光折射的数学模型及误差补偿方法,精确敏感地平,从而实现航天器的精确定位。以某太阳同步轨道卫星为背景,针对本文给出的星光折射光的卫星导航方案,结合推广的卡尔曼滤波算法,使用模拟数据进行了仿真研究,定位精度为38m。仿真结果说明,星光折射角的测量误差和大气折射模型的不确定性是影响导航精度的主要因素。  相似文献   
988.
对纤维增强复合材料(FRP)固体火箭发动机壳体的纤维缠绕(FW)线型进行了简要地分析。鉴于封头曲面上FW线型稳定性对于线型参数变化十分敏感,分析封头FW线型时,本文仍从测地线方面来考虑。依此,两赤道圆处FW角必须以左右封头几何尺寸及测地线FW条件来确定。在对筒身段非测地线FW可行性讨论中,提出了筒身段实现非测地线FW的条件,同时推导出了筒身段非测定地线FW运动控制的一般数学模型。  相似文献   
989.
空间站大型伸展机构的运动稳定性分析   总被引:4,自引:0,他引:4  
从空间站大型伸展机构的运动特点和系统动力学方程出发,着重分析了该系统的稳定性判据。这一问题又可分为五个方面:姿态-伸展-振动耦合系统的分析方法,复杂大系统的分解集结方法,时滞系统和滞后系统的稳定性问题,Stick-Ship运动对系统对系统稳定性的影响,非线性非定常系数稳定性的一般解。其中还对接触、摩擦、碰撞问题,变拓扑系统,非光滑动力学系统等进行了专门的研究,分析了Lyapunov指数方法在这些特殊系统中的适应性。本文对空间站大型伸展机构的稳定性问题进行了较全面的分析,指出了目前在处理这类复杂大系统时存在的一些难点问题,为其设计和研制工作提出了理论基础。  相似文献   
990.
降低NEPE推进剂燃速的途径探讨   总被引:4,自引:0,他引:4  
通过对NEPE推进剂燃烧表面的热平衡分析,指出了影响推进剂燃速的3个因素:“嘶嘶”区(fizz)的温度梯度、凝聚相反应热和燃面温度,提高了降低NEPE推进剂燃速的可能途径,研究了某些燃速降速剂的作用及其对推进剂能量的影响。用实验证明了降低燃速几个途径的可行性。  相似文献   
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