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A reliable power supply for spacecraft is one of the central problems determining the future development of space technology. The traditional solution to this problem implies having an autonomous power plant on board each spacecraft. The most widely used are power plants with solar cells. However, there exists an alternative power supply concept of using a centralized power supply system (CPSS) and power transmission to the user satellites by laser or microwave beams. Use of a CPSS has a number of advantages. In particular, it allows the spacecraft to increase power supply level and service life as well as to decrease the spacecraft mass and cost. However, it sets new physical and technical problems associated with long distance power transmission and requires some changes in spacecraft structure and concepts. The feasibility study of CPSS development and use has to rely on existing or firmly forecastable technologies. An attempt of such an analysis has been done by a group of scientists at Moscow State Aviation Institute during 1994-1996. The very first results have already been published. This paper discusses new results obtained lately regarding a space based CPSS  相似文献   
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激光诊断技术在脉冲爆震发动机研究中的应用   总被引:6,自引:1,他引:6       下载免费PDF全文
在美国海军研究生院及斯坦福大学的脉冲爆震发动机(PDE)模型上,应用两种新发展的二极管激光诊断技术-光吸收/高温辐射组合测定法和多路复合可调二极管激光(TDL)技术,测量了其中的温度、各燃烧产物组分等重要参数,并与传统方法所得结果进行对比,说明新方法可靠、准确,适合爆震燃烧流场这种特殊环境,测量精度更高,而且更加简便、快捷。  相似文献   
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