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Remote sensing scientists work under assumptions that should not be taken for granted and should, therefore, be challenged. These assumptions include the following:1. Space, especially Low Earth Orbit (LEO), will always be available to governmental and commercial space entities that launch Earth remote sensing missions.2. Space launches are benign with respect to environmental impacts.3. Minimization of Type 1 error, which provides increased confidence in the experimental outcome, is the best way to assess the significance of environmental change.4. Large-area remote sensing investigations, i.e. national, continental, global studies, are best done from space.5. National space missions should trump international, cooperative space missions to ensure national control and distribution of the data products.At best, all of these points are arguable, and in some cases, they're wrong. Development of observational space systems that are compatible with sustainability principles should be a primary concern when Earth remote sensing space systems are envisioned, designed, and launched. The discussion is based on the hypothesis that reducing the environmental impacts of the data acquisition step, which is at the very beginning of the information stream leading to decision and action, will enhance coherence in the information stream and strengthen the capacity of measurement processes to meet their stated functional goal, i.e. sustainable management of Earth resources. We suggest that unconventional points of view should be adopted and when appropriate, remedial measures considered that could help to reduce the environmental footprint of space remote sensing and of Earth observation and monitoring systems in general. This article discusses these five assumptions in the context of sustainable management of Earth's resources. Taking each assumption in turn, we find the following:(1) Space debris may limit access to Low Earth Orbit over the next decades.(2) Relatively speaking, given that they're rare event, space launches may be benign, but study is merited on upper stratospheric and exospheric layers given the chemical activity associated with rocket combustion by-products.(3) Minimization of Type II error should be considered in situations where minimization of Type I error greatly hampers or precludes our ability to correct the environmental condition being studied.(4) In certain situations, airborne collects may be less expensive and more environmentally benign, and comparative studies should be done to determine which path is wisest.(5) International cooperation and data sharing will reduce instrument and launch costs and mission redundancy. Given fiscal concerns of most of the major space agencies – e.g. NASA, ESA, CNES – it seems prudent to combine resources. 相似文献
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通过对影响弹道导弹的落点精度的因素分类和影响分析,提出了利用仿真技术预测和修正弹道导弹落点偏差的方法。综合诸影响因素对导弹进行全弹道仿真试验设计和分析,为改进设计提供一定的依据。 相似文献
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卫星大型挠性天线弹性振动抑制的研究 总被引:4,自引:0,他引:4
论文从工程实践角度探讨了具有大尺寸(直径几米~几十米)和高精度(0.05°)的挠性天线指向控制问题。在借鉴和改进有关抑制挠性天线弹性振动研究的基础上,初步设计了星—地回路的挠性天线指向控制方案。最后,通过分析数值仿真结果,给出了提高挠性天线指向精度的主要因素。 相似文献
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国外对地观测卫星高精度姿态控制系统研究 总被引:17,自引:0,他引:17
简要介绍了国外对地观测卫星研制开发的历史、现状及其发展趋势,分析和研究了对地观测卫星的姿态控制系统,以及这类卫星所采用的技术手段和所达到的控制精度。同时展望了未来对地观测卫星姿态控制系统的技术要求并提出了相应的对策。 相似文献
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网状天线的反射面形状精度调整 总被引:6,自引:3,他引:6
随着宇航事业的发展,网状展开天线的尺寸越来越大,对形面精度要求越来越高(特点是高频段),必须采用网面精度调整技术以满足反射面的精度要求。本文就辅助牵引面式网面精度调整技术的理论分析及调整方法进行了探讨,给出了网面形状精度调整的基本理论公式及调整步骤,并对某样机进行了调整计算。计算结果表明,文中的分析、公式、方法是正确的,可行的。 相似文献