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1.
《Acta Astronautica》2010,66(11-12):1689-1697
In late 2006, NASA's Constellation Program sponsored a study to examine the feasibility of sending a piloted Orion spacecraft to a near-Earth object. NEOs are asteroids or comets that have perihelion distances less than or equal to 1.3 astronomical units, and can have orbits that cross that of the Earth. Therefore, the most suitable targets for the Orion Crew Exploration Vehicle (CEV) are those NEOs in heliocentric orbits similar to Earth's (i.e. low inclination and low eccentricity). One of the significant advantages of this type of mission is that it strengthens and validates the foundational infrastructure of the United States Space Exploration Policy and is highly complementary to NASA's planned lunar sortie and outpost missions circa 2020. A human expedition to a NEO would not only underline the broad utility of the Orion CEV and Ares launch systems, but would also be the first human expedition to an interplanetary body beyond the Earth–Moon system. These deep space operations will present unique challenges not present in lunar missions for the onboard crew, spacecraft systems, and mission control team. Executing several piloted NEO missions will enable NASA to gain crucial deep space operational experience, which will be necessary prerequisites for the eventual human missions to Mars.Our NEO team will present and discuss the following:
  • •new mission trajectories and concepts;
  • •operational command and control considerations;
  • •expected science, operational, resource utilization, and impact mitigation returns; and
  • •continued exploration momentum and future Mars exploration benefits.
  相似文献   

2.
In late 2006, NASA's Constellation Program sponsored a study to examine the feasibility of sending a piloted Orion spacecraft to a near-Earth object. NEOs are asteroids or comets that have perihelion distances less than or equal to 1.3 astronomical units, and can have orbits that cross that of the Earth. Therefore, the most suitable targets for the Orion Crew Exploration Vehicle (CEV) are those NEOs in heliocentric orbits similar to Earth's (i.e. low inclination and low eccentricity). One of the significant advantages of this type of mission is that it strengthens and validates the foundational infrastructure of the United States Space Exploration Policy and is highly complementary to NASA's planned lunar sortie and outpost missions circa 2020. A human expedition to a NEO would not only underline the broad utility of the Orion CEV and Ares launch systems, but would also be the first human expedition to an interplanetary body beyond the Earth–Moon system. These deep space operations will present unique challenges not present in lunar missions for the onboard crew, spacecraft systems, and mission control team. Executing several piloted NEO missions will enable NASA to gain crucial deep space operational experience, which will be necessary prerequisites for the eventual human missions to Mars.Our NEO team will present and discuss the following:
• new mission trajectories and concepts;
• operational command and control considerations;
• expected science, operational, resource utilization, and impact mitigation returns; and
• continued exploration momentum and future Mars exploration benefits.
Keywords: NASA; Human spaceflight; NEO; Near-Earth asteroid; Orion spacecraft; Constellation program; Deep space  相似文献   

3.
Within observational constraints and analytic orbit determinations, potential NEO hazards and mitigations are characterized in terms of orbit displacements to establish (arbitrary) “safe” closest approach distances and corresponding energies that must be externally applied to achieve appropriate orbit displacements from the Earth. Required orbital velocity changes depend on projected closest Earth approach distances and time to (near) impact. Energy to achieve orbital displacement depends on NEO mass, required orbital velocity change, and the energy–momentum coupling coefficient. Errors in these parameters introduce uncertainties into hazard index and mitigation procedures. Hazard avoidance levels and mitigation indices for nine near-Earth asteroids, including 1997 XF11 and 1999 AN10, with non-zero Earth-impact probabilities are computed as examples of the proposed methodology, generating insight into the dilemma of predicting near impacts. This zeroth order approximation should not be construed as solving an orbital mechanics problem, nor establishing a particular set of criteria for mitigation action, but rather as a “survival index”.  相似文献   

4.
The size of a previously experienced object has a significant effect on depth judgments in visually sparse environments. The present research explored whether familiar object size also significantly influences judgments of lateral separation. Experiment 1 required participants to detect changes in lateral separation using a one-shot change detection paradigm with a closer/same/farther forced-choice response. Participants accurately detected changes in lateral separation, although concurrent changes in object size significantly reduced the accuracy of their judgments such that increases (or decreases) in object size caused a relative underestimation (or overestimation) of separation. Experiment 2 replicated these results using a distance reproduction methodology. These results indicate that familiar object size exhibits a significant effect on judgments of lateral separation.  相似文献   

5.
Abstract

Some of John Bateman's critiques of my article “Qualitative Spatial Reasoning in Interpreting Text and Narrative” are certainly valid. However, the alternative solutions that he proposes do not seem to me to be improvements.  相似文献   

6.
Potential earth impact threats posed by asteroids have motivated researchers to find effective NEO diversion techniques. Several means to perturb the motion of an asteroid have been discussed in the literature. Attaching a long tether and ballast mass to the asteroid can effectively alter its trajectory. In this paper it is shown that by cutting the tether at an appropriate time the diversion can be enhanced. The instant of cutting the tether significantly affects the final orbit of the asteroid and thus the resulting deflection from the original path.  相似文献   

7.
Mars' moons Phobos and Deimos are low-albedo, D-type bodies that may preserve samples of outer solar system material that contributed organics and volatiles to the accreting terrestrial planets. A Discovery-class mission concept described in this paper, the Mars-Moon Exploration, Reconnaissance and Landed Investigation (MERLIN), will obtain in situ measurements from Deimos to test models for the moon's origin. The measurement objectives of MERLIN are to determine Deimos' elemental and mineralogical composition, to investigate its volatile and organic content, and to characterize processes that have modified its surface. To achieve these objectives, a landed payload will provide stereo imaging and measurements of elemental and mineralogical composition and interior structure. An orbital payload will acquire global high-resolution and color imaging, putting the landing site in context by characterizing Deimos' geology. Following MOI the spacecraft flies in formation with Deimos, and uses small changes in its orbit around Mars to investigate Deimos from a range of altitudes and illuminations over 4 months. Data taken during 1- to 2-km altitude flyovers will certify a landing site. The spacecraft will be delivered to a point several kilometers above Deimos, and will navigate to landing on a fresh exposure of regolith using onboard imaging. 90 days of baseline landed operations will provide a complete set of measurements, with schedule reserve, and there is sufficient propellant to repeat the measurements at a second site.  相似文献   

8.
Japan's future trajectory in security policy and the extent of deviation from the post-war course of a constrained military stance have been the source of constant academic and policy debate. Japanese policy-makers have maintained that national security policy has shown no fundamental deviation, and that this can be benchmarked against a range of constant anti-militaristic principles. The advent of BMD, however, poses significant questions over whether Japan is continuing to follow a similar security trajectory. This article examines how BMD has challenged four key anti-militaristic principles—the non-exercise of collective self-defence, the non-military use of space, the ban on the export of weapons technology, and strict civilian control of the military—and uses this assessment to judge how BMD is driving remilitarisation. It concludes that BMD's impact is highly significant in transgressing these anti-militaristic principles and is thus indicating a more remilitarised security path for Japan developing now and in the future.  相似文献   

9.
赵铭  汤亚波 《航天电子对抗》2011,27(6):34-36,44
针对无人机的作战特点,结合作战目标的运动特性,研究了无人机对移动目标干扰航路的问题,引入了垂直干扰航路和跟踪干扰航路的概念,并建立了相应的干扰航路模型.通过仿真对比验证了两类航路规划方法的优缺点,从而确保对移动目标干扰航路规划的有效性,为无人机的任务规划决策提供了有力的辅助与支持.  相似文献   

10.
空间目标轨道信息软件平台的建设   总被引:1,自引:0,他引:1  
空间目标轨道信息是空间态势感知的重要要素,是空间碰撞预警、空间碎片环境模型和许多空间应用的基础。因而,空间目标轨道确定成为空间态势感知的主要任务之一。文章介绍武汉大学测绘学院正在开发建设的空间目标轨道信息服务软件平台,该平台拥有的主要功能有:利用多源数据的卫星/空间碎片轨道确定(包括初轨确定)与预报、大气质量密度模型精化、空间碰撞预警和半解析法快速精密轨道传播等。文章还针对软件平台功能的研究进展进行了综述,介绍了软件平台发展规划。  相似文献   

11.
《Acta Astronautica》1999,44(2-4):151-157
Space-Station technology, micron-thick 100-m solar sails, and a near-Earth propulsion system allow exploration of small, dark Near-Earth-Objects (NEO's) of cometary origin. Early crewed missions to NEO's could analyze the objects' properties and evaluate resource-mining possibilities. Later missions to Earth-threatening 100-m radius NEO's could deploy NEO-centered, high-area, low-mass reflective structures. The solar gravitational parameter (GMsun) on a NEO is slightly reduced by increased radiation pressure. The central-force-field equations reveal that NEO eccentricity and average solar distance are thereby slightly increased. Given decades of warning and long-lived reflective canopies, such structures can convert Earth-impacts into near-misses. Although not suitable for NEO mining, such structures are superior to nuclear detonations because (as revealed by the 1994 Jupiter-comet interaction) NEO calving may be a consequence of explosions. NEO despinning is not required.  相似文献   

12.
To date, NASA's “Near Earth Object Program” has discovered over 5500 comets and asteroids on trajectories that bring them within “the neighborhood” of Earth's orbit. Nearly 1000 of these objects are classified as “potentially hazardous,” passing within 0.05 astronomical units of Earth's orbit. Discovery rates of such threatening bodies increase each year. Given this multitude of threats, in addition to evidence that the planet has absorbed many impacts over its history, it is reasonable to assume that another object will strike the Earth at some point in the future. Consequently, researchers have studied and proposed several mitigation techniques for such an occurrence. This study seeks to determine how effectively the attachment of a tether and ballast mass would divert the trajectory of such threatening objects. Specifically, the study analyzes the effects over time of such a system on objects of varying orbital semimajor axis and eccentricity, using various tether lengths and ballast masses. It was determined that the technique is most effective for NEOs with high eccentricity and small semimajor axis, and that system performance increases as tether length and ballast mass increase.  相似文献   

13.
为了对E极化波和H极化波入射情形下二维任意形状金属和两种不同电磁参数损耗介质复合目标的电磁散射进行仿真,建立了复合结构目标的电磁积分方程,采用矩量法(MoM)和共轭梯度迭代法(CGM)求解此积分方程。依据所建数学模型编程对一种金属-蜂窝吸波介质复合结构翼面的雷达散射截面(RCS)进行了仿真分析。  相似文献   

14.
将空间目标等效为椭球体,在分析椭球体RCS方向图的基础上,提出了利用空间目标RCS序列极大值与极小值比值来估计空间目标长短轴比值的方法。实测数据处理结果表明,该方法能有效估计出目标长短轴比值。目标长短轴比值反映了目标的形状信息,具有明显的物理意义,有利于后续的空间目标分类与识别。  相似文献   

15.
16.
Collinear Earth–Moon libration points have emerged as locations with immediate applications. These libration point orbits are inherently unstable and must be maintained regularly which constrains operations and maneuver locations. Stationkeeping is challenging due to relatively short time scales for divergence, effects of large orbital eccentricity of the secondary body, and third-body perturbations. Using the Acceleration Reconnection and Turbulence and Electrodynamics of the Moon's Interaction with the Sun (ARTEMIS) mission orbit as a platform, the fundamental behavior of the trajectories is explored using Poincaré maps in the circular restricted three-body problem. Operational stationkeeping results obtained using the Optimal Continuation Strategy are presented and compared to orbit stability information generated from mode analysis based in dynamical systems theory.  相似文献   

17.
一种新的SAR面目标回波模拟快速算法   总被引:1,自引:0,他引:1  
陈超  戎建刚 《航天电子对抗》2008,24(5):26-28,54
回波信号模拟是合成孔径雷达模拟技术的基础.与实际挂飞试验相比,模拟技术具有灵活性高、成本低等优点.传统的SAR回波信号模拟方法因为运算量大而很难实施.分析了SAR回波信号距离延迟和多普勒相位的特点,得出了相同方位向目标回波数据间的近似关系,提出一种基于点目标回波数据矩阵的回波模拟新方法.该方法采用移位叠加,避免了大量重复的计算.  相似文献   

18.
基于深度学习的目标检测框架组件研究   总被引:2,自引:2,他引:0       下载免费PDF全文
深度学习与计算机视觉的结合给目标检测研究领域带来了全新的检测模式,通过对基于深度学习的目标检测网络分析研究,目标检测网络框架可模块化地拆分为特征提取网络、多尺度融合和预测网络三个部分。从组成目标检测网络模块化的角度对各个模块进行了详细的分析综述,并给出了如何根据实际需求来构建适合的模型框架建议,为基于深度学习的目标检测方法研究提供参考。  相似文献   

19.
目标与背景的对比度分析及其应用   总被引:5,自引:0,他引:5  
较深入地分析了目标与背景的对比度及其时间、空间和光谱特性,介绍了基于目标与背景的对比度的红外对抗和反对抗措施,如变频技术、变向技术、假目标等红外对抗措施以及太赫兹波探测、时间鉴别法和光谱鉴别法等红外反对抗措施.  相似文献   

20.
Man's quest to get into space is hindered by major problems (e.g., system-development and capital costs, expense of putting mass into orbit, trapped-radiation belts, and environmental impact of a large increase in rocket launches). A multi-purpose low-earth-orbit system of rings circling the earth – the “LEO ARCHIPELAGOTM” – is proposed as a means of solving or bypassing many of them. A fiber-optic ring about the earth would be an initial testing and developmental stage for the Ring Systems, while providing cash-flow through a LEO-based, high-band-width, world-wide communication system. A low-earth-orbit-based space-elevator system, “Sling-on-a-RingTM”, is proposed as the crucial developmental stage of the LEO Archipelago. Being a LEO-based heavy-mass lifter, rather than earth- or GEO-based, it is much less massive and therefore less costly than other proposed space-elevators. With the advent of lower-cost, higher-mass transport to orbit, the options for further space development (e.g., space solar power, radiation, and space-debris dampers, sun shades, and permanent LEO habitation) are greatly expanded.This paper provides an update of the Sling-on-a-Ring concept in terms of new materials, potential applications, and trade-offs associated with an earlier model. The impact of Colossal Carbon Tubes, CCT, a new material with high tensile strength, extremely-low density, and other favorable properties, and other new technologies (e.g., solar-powered lasers, power beaming to near-space and earth, and thermal-control systems) on the development of associated LEO-Ring systems is also explored. The material's effect on the timeline for the system development indicates the feasibility of near-term implementation of the system (possibly within the decade). The Sling-on-a-Ring can provide a less-expensive, environment-friendly mode of access to space. This would pave the way (via eventual operation at >1000 t per day by 2050) for large scale development of space-based technologies.  相似文献   

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