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141.
Tong Qin Shengying Zhu Pingyuan Cui Ai Gao 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
Pinpoint landing (within 100 m from the target) is essential for future Mars exploration missions. This paper deals with one aspect of the pinpoint landing architecture—the navigation performance improvement during the powered descent phase, and proposes an innovative navigation scheme to obtain the vehicle complete and accurate states. On the basis of dead reckoning relying on the Inertial Measurement Unit, measurements of the Integrated Doppler Radar are adopted to correct the vehicle velocity and altitude. Distance between the vehicle and one Mars Orbiter as well as their line-of-sight relative velocity is measured by a radio sensor, and integrated in the filter to correct the vehicle horizontal position. The innovative navigation system is based on an Extend Kalman Filter. Two observation schemes are developed. One considers measurements of the Integrated Doppler Radar and radio range measurement. Another further considers radio velocity measurement. The performance of the innovative navigation scheme is greatly influenced by the position of the Mars Orbiter with respect to the target. Stochastic analyses are performed to obtain optimal locations of Mars Orbiter. Finally, the innovative navigation scheme performances are assessed through stochastic simulations. Its performance improvements are demonstrated by comparison with the Integrated Doppler Radar only navigation scheme. 相似文献
142.
Shuangsheng Guo Weidang Ai Yongkang Tang Quanyong Cheng Yunze Shen Lifeng Qin Jialu Ma Jingtao Zhu Jin Ren 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2014
The ability to generate O2 and absorb CO2 of several co-cultured vegetable plants in an enclosed system was studied to provide theoretical reference for the future man-plant integrated tests. Four kinds of salad plants (Lactuca sativa L. var. Dasusheng, Lactuca sativa L. var. Youmaicai, Gynura bicolor and Cichorium endivia L.) were grown in the CELSS Integration Test Platform (CITP). The environmental factors including O2 and CO2 concentration were continuously monitored on-line and the plant biomass was measured at the end of the test. The changing rules of O2 and CO2 concentration in the system were basically understood and it was found that the O2 generated by the plants could satisfy the respiratory needs of 1.75 persons by calculation. It was also found that the plants could absorb the CO2 breathed out by 2 persons when the light intensity was raised to 550 mmol m−2 s−1 PPF. The results showed that the co-cultured plants hold good compatibility and excellent O2-generating and CO2-absorbing capability. They could also supply some fresh edible vegetable for a 2-person crew. 相似文献
143.
144.
提出了一种结合区域预测与视觉注意模型化计算的快速目标检测方法.通过分析图像近似均匀的3个水平子区域的方向特征图之灰度比率,灰度特征图之信息熵和子区域位置,建立了目标区域预测的判定准则.同时,通过优选特征和优化特征图之权重,改进了视觉注意计算模型.对于一幅待检测图像,根据区域预测的判定准则,实现目标区域的快速预测,并利用改进的视觉注意计算模型对目标区域进行视觉注意计算,实现特定目标的快速精确定位.实验结果表明:针对户外场景中的行人目标,与通过整幅图像的视觉注意计算来实现目标检测的传统方法相比较,该检测方法可使检测时间缩短30%,同时还能使检测准确率提高9%. 相似文献
145.
提出了一种改进的用于被动寻的导弹的基于光流带落角约束的导引规律,其具有更强的适应性和更小的落角误差,而且该导引律不要求弹目距离信息,克服了被动寻的导弹不能测距的约束.基于采用光学传感器和光流算法的测量模型,受昆虫导航的启发,利用光流信息进行被动寻的导弹的导引和控制.同时借鉴偏置比例导引律的结构,重新设计偏置项,实现导弹以期望的落角命中目标.仿真表明,拦截地面运动目标时,该导引律在保证小脱靶量的同时,基本达到期望的落角,对于测量噪声也具有较好的鲁棒性. 相似文献
146.
秦曦 《民用飞机设计与研究》2012,(2):1-5,21
在国际竞争中,欧美跨国企业通过设置知识产权壁垒,对我国企业进行阻击,薄弱的技术积累和知识产权的欠缺,使我国许多企业在融入经济全球化的过程中处于明显劣势。通过深入分析波音公司和空客公司这两家国际民机制造行业垄断企业的专利申请年度分布、申请地区分布和申请技术主题分布,从时间、空间及技术三维的角度勾勒出这两家公司的专利布局特点,并在总结波音公司和空客公司的专利策略基础上,对我国大飞机项目提出启示及建议。 相似文献
147.
148.
为了探究旋转对动叶前缘冲击射流流动及换热的影响机制,采用数值模拟的方法对比分析了静止条件和三种不同旋转转速下的流场结构与换热情况。结果表明:冲击靶面的平均努塞尔数随转速的增大而减小,最高转速下,靶面平均努塞尔数下降约16%。另一方面,压力面和吸力面侧对旋转的敏感性不同。高转速下,换热的削弱主要集中在吸力面和压力面无量纲弧长s/d小于2的区域,压力面s/d大于2区域的换热略有增强;旋转对流场结构产生了明显的影响,旋转改变了射流孔的流量分配,在科氏力的作用下,射流向压力面偏转,这种特征随转速的增大而更加显著。另外,旋转通道内的离心力改变了局部横向流强度。 相似文献
149.
150.
Hugh S. Hudson 《Space Science Reviews》2011,158(1):5-41
This article broadly reviews our knowledge of solar flares. There is a particular focus on their global properties, as opposed
to the microphysics such as that needed for magnetic reconnection or particle acceleration as such. Indeed solar flares will
always remain in the domain of remote sensing, so we cannot observe the microscales directly and must understand the basic
physics entirely via the global properties plus theoretical inference. The global observables include the general energetics—radiation
in flares and mass loss in coronal mass ejections (CMEs)—and the formation of different kinds of ejection and global wave
disturbance: the type II radio-burst exciter, the Moreton wave, the EIT “wave”, and the “sunquake” acoustic waves in the solar
interior. Flare radiation and CME kinetic energy can have comparable magnitudes, of order 1032 erg each for an X-class event, with the bulk of the radiant energy in the visible-UV continuum. We argue that the impulsive
phase of the flare dominates the energetics of all of these manifestations, and also point out that energy and momentum in
this phase largely reside in the electromagnetic field, not in the observable plasma. 相似文献