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133.
针对航天器内部缺少三维空间定位方案的问题,提出一种应用紫蜂(ZigBee)技术的无线传感器网络定位方案,即通过在航天器内部布置ZigBee无线传感器网络,设置若干数量的参考节点和未知节点,利用参考节点的先验位置信息,以及针对未知节点的测距信息,完成对未知节点的三维空间定位。建立基于参考节点平面的三维空间坐标系,根据到达角度(AOA)计算出未知节点的法向坐标(Z坐标),将未知节点投影至参考节点所在平面(XOY平面),利用三边定位法计算出未知节点在XOY平面的坐标。该方案理论上最少只需要6个参考节点,就可以实现对航天器内部未知节点的定位,并且不需要时间同步,适合于无线传感器网络的低复杂度设计需求;利用到达时间差(TDOA)算法进行AOA计算,通过对参考节点进行分层布局,避免使用复杂的天线阵列技术。仿真验证结果表明:本文方案具有较高的定位精度,同时具有较低的硬件和组网要求,以及较低的计算和通信开销,适合于航天器内部的三维空间定位。 相似文献
134.
Michael Tlauka Paul N. Wilson Marc Adams Caren Souter Angela H. Young 《Spatial Cognition & Computation》2013,13(4):365-391
ABSTRACT In three experiments, after exploring a virtual environment (VE), adult participants made spatial judgments about the location of target objects that were higher and lower than their perceived test location within the VE. In Experiment 1, the locations of the target objects were inferred from verbal instructions. The main results were a tendency to judge objects as closer to the horizontal plane than their true locations, and more efficient downward than upward judgments. Both effects generally accord with findings reported by Wilson et al. (2004a, 2004b). In Experiments 2 and 3, which were closely modeled on the design of the Wilson et al. studies, regression to the horizontal plane was noted but no downward bias was observed. A misperception in the viewing height between the floors and ceilings of the virtual rooms was apparent in both experiments. The results from the present study together with earlier investigations suggest different hierarchical encoding of between-axis and within-axis information. 相似文献
135.
超临界环境下煤油和UDMH单滴燃烧现象 总被引:2,自引:0,他引:2
采用重活塞实验系统,对煤油和UDMH在超临界环境下的蒸发和燃烧现象进行了初步研究,结果表明:无论液态或者凝胶燃料,在超临界环境下均存在蒸发现象。在空气超临界环境下,煤油和UDMH均产生自燃现象。自燃呈现多点着火现象,类似于"森林火灾"模式,且持续时间较长。燃烧大致可分为蒸发、点火、燃烧前期和燃烧后期4个阶段。 相似文献
136.
载人航天器空气环境参数控制非定常仿真分析 总被引:2,自引:0,他引:2
为支持乘员在轨驻留,载人航天器需通过空气环境控制系统将众多设计参数和空气环境参数控制在指标范围内。文章建立了一种载人航天器空气环境非定常控制仿真分析模型,包括舱体模块、航天员模块、舱压控制模块、温湿度控制模块以及CO2净化模块。利用该模型分析了载人航天器空气环境参数随乘员代谢水平的非定常变化趋势,并评估了控制系统的工作性能。结果表明:乘员代谢水平变化对空气环境参数有显著影响,通过调节控制系统运行参数可将各空气参数控制在有效指标范围内。人区温度与O2分压、CO2分压和人区湿度有密切的影响关系,不可孤立地进行分析。为载人航天器空气环境参数控制系统的设计和流程改进提供了依据。 相似文献
137.
谢泗薪 《中国民航学院学报》1999,17(4):69-73
将科技人才成长环境分成外部环境和内部环境两个部分,以及一般环境和具体环境两个层次,提出了成长环境对科技人才成长的作用方式及其影响。在环境管理方面,提出了环境激励和环境管理的涵义、人才成长及流动环境激励的基本模式、科技人才成长环境管理十大设计原则等。初步提出了科技人才成长环境系统优化概念。 相似文献
138.
The performance of a small and low-cost metal chamber built to simulate the pressure and temperature conditions of lunar surface was assessed and the results are presented. This chamber is intended for studying the physical properties of lunar surface and subsurface (using soil simulants) and also to validate the technology readiness of certain newly developed payloads planned for future lunar surface missions (Lander/Rover). It is possible to reach down to ∼10−7 Pa under specific conditions and maintain the temperature of the sample under investigation to lunar day and night temperatures. The designed system has been subjected to various tests to evaluate its performance and suitability for carrying out experiments in a simulated lunar environment. 相似文献
139.
K. Fayazbakhsh A. Abedian 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2012
Using low power electronic devices for space applications to reduce the mass and energy consumption has lead to electromagnetic interference (EMI) problem. Electronic enclosures are used to shield electronic devices against EMI. In the past, electromagnetic shielding has been mainly the only criteria considered in electronic enclosure design. However, there are several structural and thermal requirements for selection of shielding materials which should also be taken into account. In this research work, three quantitative materials selection methods, i.e. Digital Logic (DL), Modified Digital Logic (MDL), and Z-transformation, are employed to select the best material from among a list of candidate materials. Composite and metallic electronic enclosures are explored and the best material is selected. Z-transformation method is applicable to both of the considered case studies while DL and MDL can only be used for solving one of them. Z-transformation method ranks aluminum as the first choice among various metallic materials. The wide range of Z-transformation application and its practical results confirm the superiority of Z-transformation method over DL and MDL methods. 相似文献