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1.
深空探测器可重构性评价与自主重构策略   总被引:1,自引:0,他引:1       下载免费PDF全文
针对深空探测过程中资源严重受限(包括计算资源、硬件资源以及能量资源)和不可维修的特点,开展了深空探测器可重构性综合评价方法和自主重构的研究。通过在地面设计阶段考虑深空探测器控制系统的可重构性,定量地给出了系统可重构性综合评价指标,并基于该指标指导系统自主重构策略的设计,从设计角度提高了深空探测器控制系统运行质量,实现了深空探测器的自主故障处理和自主运行。  相似文献   

2.
开展深空探测对人类研究宇宙起源与发展、生命存在与进化等重大科学问题具有重要的意义。深空探测有很多关键技术有待突破,先进推进技术是其中最为重要的一个。而可用于深空探测的无需携带推进剂的磁动力推进技术,是利用太阳系和宇宙中广泛存在的等离子体流,使探测器所携带的低密度超导材料制作的线圈通电,在探测器周围形成一个磁场区域,通过该磁场与太阳风等离子流相互作用产生推动力的一种先进技术。文章介绍了磁动力技术的国内外发展现状、磁帆与等离子体流增强型磁帆的基本原理、技术特点以及在未来深空探测中的潜在应用,为我国未来深空探测任务的工程实施提供一种新的方法。  相似文献   

3.
在轨组装与维护是航天器在轨服务技术的基本内容,而模块化设计则是实现航天器在轨组装与维护的一项主要支撑技术。调研总结了国外深空探测领域模块化航天器设计以及在轨组装与在轨维护实施的技术进展,主要包括模块化地外行星着陆探测器、大型在轨组装深空探测器、布置于SEL2(Sun-Earth Libration 2)等轨道的超大型在轨组装空间望远镜系统等,分析了深空探测器领域应用模块化设计实现在轨组装与维护的关键技术要素。针对深空探测航天器长寿命、高可靠、特殊推进系统及其设备配套等技术特点与需求,提出一种应用在轨组装与维护技术的火星多任务探测器系统设想,介绍了探测器系统的任务架构、基本组成、轨道策略等,为我国深空探测技术发展以及新型深空探测器研制提供参考。  相似文献   

4.
深空探测器自主天文导航技术综述   总被引:5,自引:4,他引:1       下载免费PDF全文
在深空探测中,单独使用无线电测控存在精度、实时性、覆盖性等方面的限制。作为无线电测控的有效补充,自主天文导航是保证深空探测任务成功的关键技术之一。面向深空探测对自主天文导航的迫切需求,概述了深空探测器自主天文导航的基本原理,简要介绍了深空探测器自主天文导航的研究进展,并重点分析探讨了深空探测器自主天文导航的关键技术和发展趋势。分析结果可为我国未来深空探测器天文导航系统研制提供参考,并为深空探测任务的总体设计提供帮助。  相似文献   

5.
深空探测任务中的轨道机动是保证探测器进入预定轨道的关键环节, 也是实际测控 任务中的重点和难点. 在轨道机动过程中, 探测器通过点火产生自身加速度, 此过程会造成飞行状态不稳定, 使得对卫星机动过程的预测和判定变得更加复杂. 针对这些问题, 结合中国第一个深空探测任务嫦娥一号(CE-1)卫星, 对其轨道机动段, 特别是近月点入轨制动这一关键弧段, 提出了基于视向速度对探测器飞行状态进行实时监测估计的原理和方法, 进一步建立了相应的实时监测系统, 并应用于实际工程任务, 同时对该系统的表现进行评估, 为未来深空探测中的类似问题提供了一种有效的解决方法.   相似文献   

6.
基于深空探测器配备的大口径天线的指向精度要求,给出了一种深空探测器大口径天线在轨指向的标定方案,以解决深空探测器安装的大口径天线的在轨指向评价问题。通过对飞行器特点和约束条件的分析,结合"嫦娥4号"中继星天线的具体情况,采用星地协同工作的方法,给出了天线指向在轨标定的方案,并明确了标定的实施流程,最后对标定过程中的误差情况进行了分析。本方案可推广应用于其他深空探测器大口径天线指向标定方案的设计。  相似文献   

7.
深空探测是指对太阳系内除地球之外的行星及其卫星、小行星和彗星等的探测,以及太阳系以外的银河系乃至整个宇宙的探测。行星际互联网(IPN)作为一种通用的空间信息网络架构,旨在为深空探测任务提供科学数据传递的通信服务及探测器和深空轨道器的导航服务。首先给出了深空探测和行星际互联网的概念,介绍了深空探测的发展现状,然后对行星际互联网体系架构进行了详细介绍,最后给出了行星际互联网的关键技术。  相似文献   

8.
提出了一种有大气地外行星悬飞探测方式,该探测方式是利用被探测天体存在大气的环境特点,实现探测器在被测天体的"飞行"机动,克服目前已有的环绕探测、着陆探测、巡视探测和采样返回探测四类无人深空探测方式受地形、地貌约束无法实现大范围机动就位探测的不足。提出了悬飞探测器的典型任务工作模式设想,建立了悬飞探测器的六自由度动力学模型,并针对太阳系内典型的有大气行星环境(火星和土卫六)特点,给出了悬飞探测器的动力学特性并开展了仿真分析。在此基础上,首次提出了悬飞探测器的可行性约束系数,为悬飞探测器在深空探测的可行性研究提供了理论依据。  相似文献   

9.
面对深空探测过程中的不确定性,探测器需要利用任务规划技术实现自主控制。针对深空探测器任务规划中复杂系统功能及耦合操作约束,在状态知识框架的基础上,引入了扩展状态的概念。通过分析探测器任务规划中的约束关系,提出了基于扩展状态的任务规划算法。利用扩展状态结构特点削减了搜索空间,优化了搜索过程,提高了规划搜索的速度。数值仿真结果表明,该算法能够缩减近半的规划步数,加速问题求解进程,提高任务规划的效率。  相似文献   

10.
核动力深空探测器现状及发展研究   总被引:1,自引:0,他引:1  
深空探测中,由于无法使用太阳能或者太阳能的利用效率太低,需要使用空间核电源。当前用于月球表面、火星表面、木星及以远的飞行任务中的核动力深空探测器,均利用的同位素核源衰变能,包括同位素热源用于温度控制和采用温差发电用于供电。研究中的深空探测核动力应用包括月球基地、载人火星飞行、无人探测、使用核反应堆裂变能等。空间裂变电源的反应堆包括液态金属冷却堆和气冷堆两种方式,前者支持温差、斯特林和布雷顿发电,后者支持布雷顿和磁流体发电。近期开始探索研究核聚变深空探测器。纵观核动力深空探测器的发展历程,同位素电源依然在深空探测中发挥着重要作用,大功率空间核电源结合电推进将成为未来深空探测的重要关注方向。  相似文献   

11.
The state-of-the-art electrostatic accelerometers (EA) used for the retrieval of non-gravitational forces acting on a satellite constitute a core component of every dedicated gravity field mission. However, due to their difficult-to-control thermal drift in the low observation frequencies, they are also one of the most limiting factors of the achievable performance of gravity recovery. Recently, a hybrid accelerometer consisting of a regular EA and a novel cold atom interferometer (CAI) that features a time-invariant observation stability and constantly recalibrates the EA has been developed in order to remedy this major drawback. In this paper we aim to assess the value of the hybrid accelerometer for gravity field retrieval in the context of GRACE-type and Bender-type missions by means of numerical closed-loop simulations where possible noise specifications of the novel instrument are considered and different components of the Earth’s gravity field signal are added subsequently. It is shown that the quality of the gravity field solutions is mainly dependent on the CAI’s measurement accuracy. While a low CAI performance (10?8 to 10?9?m/s2/Hz1/2) does not lead to any gains compared to a stand-alone EA, a sufficiently high one (10?11?m/s2/Hz1/2) may improve the retrieval performance by over one order of magnitude. We also show that improvements which are limited to low-frequency observations may even propagate into high spherical harmonic degrees. Further, the accelerometer performance seems to play a less prominent role if the overall observation geometry is improved as it is the case for a Bender-type mission. The impact of the accelerometer measurements diminishes further when temporal variations of the gravity field are introduced, pointing out the need for proper de-aliasing techniques. An additional study reveals that the hybrid accelerometer is – contrary to a stand-alone EA – widely unaffected by scale factor instabilities.  相似文献   

12.
Thermocapillary convection has been studied in n-heptanol aqueous solutions whose surface tension is increasing with the temperature.

The fluid was confined in a parallelipipedic enclosure and a thermal gradient was imposed parallel to the free liquid/gas interface. The motions induced by the thermocapillary forces have been studied under low gravity conditions during Texus sounding rocket experiments and during the Spacelab D1 mission.

The combined thermocapillary and buoyancy convection have been extensively studied during ground based experiments.

The influence of the aspect ratio and of the alcohol concentration were investigated. Detailed velocity field was determined at the steady state under normal gravity conditions by Laser Doppler Anemometry (LDA).

The aspect ratio was of 0.3 and the temperatures imposed to the lateral sides of the cell were respectively 45°C and 60°C. With these experimental conditions, two superposed contrarotative cells were observed with rapid motions in the surface from the cold to the hot side. This convective pattern was also observed during the normal and high gravity periods of parabolic flights but during the low gravity period of the parabola the motions stopped everywhere in the fluid even in the surface and reappeared immediatly at the pull out of the parabola.  相似文献   


13.
Optomechanical systems are very complex requiring a high degree of accuracy. The carrier structure of an optical system is required to maintain the position of the optical components with respect to each other within the design tolerances. The most common loads on optical systems are self-weight, due to gravity orientations, and temperature ranges, due to exposure to rapidly changing temperatures from very cold to very hot and during launch. The fixing should ensure mechanical stability and thus accurate positioning in various gravity orientations.In order to ensure reliability during a space flight mission, the optomechanical engineer must understand the requirements of the space flight environment as well as the physics of failure of the optical components themselves; this can minimize the risks of on-orbit failure.This paper focuses on the optomechanical optimal design lens mounting using glue pads bonding. The main idea of this research study is to obtain an optimal choice of the position of the glue to fix the lenses on the barrel in such a way that we obtain a configuration of the optical assembly performance with less stress.In this paper, an investigation was performed using several methods including (thermo-elastic analysis, the margin of safety and lens distortion analysis). The results show that the position with six contacts glue pads is the best configuration compared to other configurations. This solution can be very helpful for decision-makers and optical engineers during the development phases of space optomechanical systems.  相似文献   

14.
重力波波包在可压大气中的非线性传播   总被引:26,自引:14,他引:12       下载免费PDF全文
本文采用二维全隐欧拉(FICE)格式对具有高斯分布的重力波波包在等温、可压大气中的非线性传播过程进行数值模拟和分析.数值分析结果表明:尽管存在非线性效应,在整个传播过程中,波动的等相面向下运动,波包和波相关能量向上传输.波相关扰动速度随高度增加指数增长,并且波与平流会发生非线性相互作用,最后导致平均流场增强.这与线性重力波理论完全一致.重力波波包的传播路径与重力波线性射线理论预言非常接近,但平均水平群速度和平均垂直群速度均明显小于线性射线理论给出的结果,可见波动的非线性过程会改变波相关能量的传输速度.模拟结果首次定量地展示出非线性效应对重力波波包传播的影响,表明建立在线性理论框架中的重力波运动学定义的合理性.   相似文献   

15.
Plants will be an important component in bioregenerative systems for long-term missions to the Moon and Mars. Since gravity is reduced both on the Moon and Mars, studies that identify the basic mechanisms of plant growth and development in altered gravity are required to ensure successful plant production on these space colonization missions. To address these issues, we have developed a project on the International Space Station (ISS) to study the interaction between gravitropism and phototropism in Arabidopsis thaliana. These experiments were termed TROPI (for tropisms) and were performed on the European Modular Cultivation System (EMCS) in 2006. In this paper, we provide an operational summary of TROPI and preliminary results on studies of tropistic curvature of seedlings grown in space. Seed germination in TROPI was lower compared to previous space experiments, and this was likely due to extended storage in hardware for up to 8 months. Video downlinks provided an important quality check on the automated experimental time line that also was monitored with telemetry. Good quality images of seedlings were obtained, but the use of analog video tapes resulted in delays in image processing and analysis procedures. Seedlings that germinated exhibited robust phototropic curvature. Frozen plant samples were returned on three space shuttle missions, and improvements in cold stowage and handing procedures in the second and third missions resulted in quality RNA extracted from the seedlings that was used in subsequent microarray analyses. While the TROPI experiment had technical and logistical difficulties, most of the procedures worked well due to refinement during the project.  相似文献   

16.
为提高空间指向测量仪器的精度,满足极高测量精度的任务需求,图像传感器像素位置偏差对星点质心定位精度的影响不容忽视.激光干涉法是目前国内外对像素位置偏差进行测量的主流方法.文章对图像传感器像素位置偏差的成因及影响进行说明,对国内外开展的激光干涉测量像素位置偏差技术进行介绍与整理,对像素位置偏差测量技术遇到的关键问题,技术难点及其未来发展趋势进行梳理和总结.  相似文献   

17.
In this paper we present results assessing the role of Very Long Baseline Interferometry (VLBI) tracking data through precision orbit determination (POD) during the check-out phase for Chang’E-1, and the lunar gravity field solution CEGM-01 based on the orbital tracking data acquired during the nominal phase of the mission. The POD of Chang’E-1 is performed using S-band two-way Range and Range Rate (R&RR) data, together with VLBI delay and delay rate observations. The role of the VLBI data in the POD of Chang’E-1 is analyzed, and the resulting orbital accuracies are estimated for different solution strategies. The final orbital accuracies proved that the VLBI tracking data can improve the Chang’E-1 POD significantly. Consequently, CEGM-01 based on six-month tracking data during Chang’E-1 nominal mission phase is presented, and the accuracy of the model is assessed by means of the gravity field power spectrum, admittance and coherence between gravity and topography, lunar surface gravity anomaly and POD for both Chang’E-1 and Lunar Prospector (LP). Our analysis indicates that CEGM-01 has significant improvements over a prior model (i.e. GLGM-2), and shows the potential of Chang’E-1 tracking data in high resolution lunar gravity field model solution by combining with SELENE and LP tracking data.  相似文献   

18.
Neuroplasticity changes during space flight.   总被引:1,自引:0,他引:1  
Neuroplasticity refers to the ability of neurons to alter some functional property in response to alterations in input. Most of the inputs received by the brain and thus the neurons are coming from the overall sensory system. The lack of gravity during space flight or even the reduction of gravity during the planned Mars missions are and will change these inputs. The often observed "loop swimming" of some aquatic species is under discussion to be based on sensory input changes as well as the observed motion sickness of astronauts and cosmonauts. Several reports are published regarding these changes being based on alterations of general neurophysiological parameters. In this paper a summing-up of recent results obtained in the last years during space flight missions will be presented. Beside data obtained from astronauts and cosmonauts, main focus of this paper will be on animal model system data.  相似文献   

19.
针对后续深空探测任务更高测量精度需求,文章提出了一种基于信号合成的无线电干涉测量方案,并对方案性能进行了理论分析;结合目前主流信号合成算法,提出了一种基于相位补偿的Sumple算法,该算法不仅合成效率高,且合成信号与参考信号具有相同的相位特性,这是天线组阵技术应用于无线电干涉测量的前提;利用相控阵天线试验数据和DOR信号仿真数据对合成方案和合成算法进行了验证,结果表明信号合成处理可以提高无线电干涉测量时延估计精度,这在深空探测任务中具有重要意义。  相似文献   

20.
从地基研究植物向重性和在神舟八号卫星微重力条件下培养植物细胞出发,探讨重力变化对植物细胞发生作用时产生的生物学效应.已有结果显示,在植物向重性反应和处于失重状态时,重力方向和大小变化对细胞壁代谢具有一定影响.推断细胞形状的维持是由细胞壁的刚性与细胞内膨压平衡所致,当细胞膨压大于细胞壁刚性导致上述平衡打破时就会引起细胞体积增大.因此,重力的变化可能会通过影响植物细胞壁刚性与细胞内膨压的平衡影响细胞生长.   相似文献   

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