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1.
基于PC/DSP的开放系统结构智能切削模块   总被引:2,自引:0,他引:2  
研究了采用PC微机和数字信号处理器(DSP)板构成实时开放系统结构智能切削模块(OSA-IMM)的体系结构和功能要求,以及实现开放系统结构设计的关键问题.采用信号处理网络、可重入的插入式模块、描述命令文件以及面向切削过程智能化控制的标准函数库等,实现了系统的开放性和智能化.以OSA-IMM构成了车削过程自适应控制系统和基于人工神经网络的车刀后刀面磨损值在线估计系统.实验表明,OSA-IMM具有良好的开放系统结构和强大的实时处理能力,并有智能计算能力,在该平台上,可以方便地配置成适用于切削加工过程不同要求的控制/监测系统.  相似文献   

2.
原位资源利用技术是地外生命保障体系构建、实现人类地外生存的有效途径,是载人深空探索的核心技术。基于微通道技术的人工光合成反应器,采用流动反应器设计,用于低微重力等特殊环境条件下模拟人工光合作用,实现CO2向O2和含碳燃料的转化。微通道芯片通过气液剪切作用力使气体反应产物快速脱离电极表面并随反应介质排出反应器,理论上可以克服微重力条件对反应过程的影响,尚需进行微重力试验进行验证。同时,微通道结构可以通过精确控制反应气液的压力、流速、流量比等反应条件,获得优化的反应条件。通过地面试验,验证了该反应器将CO2还原为O2和含碳化合物的功能可行性。以Au和Ir/C作为阴极和阳极材料,3V电压条件下,O2产率可达11.74mL/h。此外,基于人工光合成反应器搭建了集反应模块、控制模块、流路驱动模块以及检测模块等于一体的地外人工光合成装置,形成原位反应、介质供给、精确控制、在线收集和检测等功能一体化的系统,并实现CO2有效转换和O2供给。为后续技术成熟度更高的反应装置研制、高产物选择性的含碳化合物转化以及人工光合成反应装置在轨试验奠定了理论和实践基础。  相似文献   

3.
使用Space Radiation 7.0工具分析临近空间中子辐射环境,研究其与海拔高度、太阳活动和经纬度的关系及内在原因.在此基础上,提出了一种基于蒙特卡罗方法的大气中子实时错误率预计方法,并以航空电子系统关键集成电路FPGA为例,预计其单粒子翻转敏感模块包括配置存储器、块存储器和用户触发器,单粒子功能中断敏感模块包括上电复位电路、SelectMAP接口等的实时飞行错误率.结果表明,配置存储器中发生的单粒子翻转达到总单粒子翻转率的77%,而上电复位电路和SelectMAP接口中发生的单粒子功能中断各占总单粒子功能中断率的36%.根据RTCA DO-254对飞行系统失效等级的划分,该FPGA器件不可用于航空电子系统关键位置.   相似文献   

4.
依据卫星姿轨控半实物仿真系统的技术要求,提出一种用于推力器模拟器的校准装置设计。校准装置采用网口通信模式模拟动力学计算机的喷气指令。校准装置以FPGA和单片机为控制核心,内置信号调理模块、高精度脉冲采集模块,数据解算模块等。该校准装置已经用于卫星姿轨控地面仿真测试的校准过程中,不仅能提升效率和质量,还能替代目前由多个设备组成的校准测试系统。有效降低成本,模拟推力器的全过程在线校准。  相似文献   

5.
  总被引:1,自引:1,他引:0  
针对射频传感器综合一体化带来的电磁兼容性接口由机箱、连接器和线缆变为背板-模块,使常规电磁干扰(EMI)检测要求和检测手段无法直接适用于模块的问题,基于电磁干扰要素理论,着重研究了综合射频机架内部微小空间内电磁干扰要素检测方法及原理,探索了综合射频机架微小空间下模块电磁发射特征信息的测试方法,研究了综合射频机架工作状态及功能线程的激励控制方法,以及综合射频机架远场电磁发射特性数据、功能模块近场电磁发射特性数据和综合射频机架接口线缆束上的电流传导发射特性数据等电磁干扰要素提取和识别方法。为验证电磁干扰要素检测与辨识方法的可行性,以某机载综合射频机架为例,开展了大量试验研究与分析,包括综合射频机架远场电磁发射特性测试、功能模块近场电磁发射特性测试、综合射频机架互连线缆束电流传导发射特性测试,并将多种工作模式下模块测试结果和综合射频机架电磁发射测试结果进行比较,验证了本文方法的可行性和准确性。  相似文献   

6.
基于Casper硬件平台的射电望远镜数字系统正在被广泛应用.在Simulink中通过调用Casper模块可以实现复杂的数字信号设计,加快FPGA开发射电望远镜系统的效率.利用Casper模块和Simulink中Xilinx模块设计射电望远镜单元样机的数字信号处理单元,完成子带的抽取、下变频和整体频谱分析等功能.在Casper通用硬件平台ZYNQ7020上进行相关功能的仿真,验证了利用Casper模块和Xilinx模块设计基于FPGA的射电望远镜单元样机信号处理系统的可行性和高效性.   相似文献   

7.
讨论了载体位置与姿态均不受控制的漂浮基空间机器人系统的鲁棒控制问题. 利用拉格朗日方法及系统动量守恒关系导出了漂浮基空间机器人欠驱动形式的系统动力学方程, 以确保得到的系统动力学方程关于一组适当选择的组合惯性参数呈线性函数关系. 在此基础上, 借助增广变量法针对末端爪手所持载荷参数存在不确定的情况, 提出了对外部扰动具有鲁棒性的漂浮基空间机器人关节空间轨迹跟踪的拟增广鲁棒控制方案. 所提控制方案由于充分利用空间机器人系统动量守恒关系, 消除了动力学方程中载体位置相关量, 因此具有不需要测量、反馈载体的位置、移动速度和移动加速度的显著优点; 且由于对系统不确定参数及外部扰动始终采用保持鲁棒性的方式而非在线估计的方式, 有效减少了计算量, 因此更适用于机载计算机运算能力有限的空间机器人控制系统实时在线应用. 一个平面两杆空间机器人系统的数值模拟仿真, 证实了方法的有效性.   相似文献   

8.
基于可不断电维修的双机容错系统   总被引:3,自引:0,他引:3  
对单个单片机控制系统可靠性不高的问题,提出了一种由双单片机构成容错系统的实现方法.在该系统中,用串行通讯技术,通过采集对方I/O输出,与自身的I/O输出值作比较,实现双单片机的故障互检;利用地址译码技术,设计仲裁切换模块,完成故障隔离;故障机修复后,通过回读对方执行程序的任务编号,达到双机同步控制,完成系统重构,实现对故障单元的不断电维修.通过对模拟机的实验表明,此控制系统能对运行中的错误实现实时的双机互检,且具有在线热插拔功能.  相似文献   

9.
临近空间飞行器在稀-稠大气过渡阶段且反推力矢量装置(Reaction Control System, RCS)有剩余燃料的情况下,RCS对于非冗余舵面的故障补偿与在线重构具有重要意义。基于此,本文研究了针对非冗余舵面与RCS复合故障的自愈控制方法,以实现飞行器的安全可靠控制。首先,建立了执行机构故障等不确定影响下的姿态控制模型;其次,针对舵面故障给出了基于残差观测的故障检测与自诊断方法,设计了RCS与舵面复合故障的分离诊断策略;然后,基于非线性比例-微分控制及故障诊断信息,设计了舵面故障补偿的自愈控制器;同时,基于RCS故障喷管序列判定,设计了复合故障下RCS在线重构的自愈控制器。最后,通过某典型全弹道姿态跟踪数值仿真,验证了该方法的有效性及可靠性。  相似文献   

10.
微生物具有结构简单、生长周期短、繁殖快、便于搭载等优点,被作为生物模型用于空间环境下的生命现象研究、地外生命探测以及开展以微生物为重点关注对象的行星保护任务研究.随着中国空间站在轨建造任务的临近,微生物空间实验技术开发以及相应的实验装置研制需要加快部署.本文以已实现空间应用的微生物技术为基础,从微生物空间培养、保存、检测技术及用于地外生命探测中的微生物识别技术等方面分析了空间微生物实验技术的发展现状与趋势,提出了未来利用中国空间站开展空间微生物实验的技术发展建议.   相似文献   

11.
A systems design study group jointly sponsored by the American Society for Engineering Education, Stanford University and NASA's Ames Research Center, was requested to develop a design for an orbiting quarantine facility. The proposed facility is constructed of Spacelab shells formed into five modules of different sizes, each compatible with missions of other objectives. Once placed in a low Earth orbit by the Space Shuttle, each component is linked via the international docking system. Radiating from the docking module are a replaceable logistics module which stores a thirty day supply of consumables and waste, a module providing living quarters for five crew members, a power system module, and a quarantine testing laboratory. Within the laboratory module is a primary barrier system of sealed cabinets in which the sample is assessed for life forms. These chambers isolate the sample from terrestrial contamination and protect the researchers. A combination of procedures and mechanisms separates the laboratory module from the remainder of the facility and provides a secondary barrier. The conditions of space provide a tertiary barrier protecting the Earth's biosphere.  相似文献   

12.
Recent advances in technologies required for a "Salad Machine".   总被引:1,自引:0,他引:1  
Future long duration, manned space flight missions will require life support systems that minimize resupply requirements and ultimately approach self-sufficiency in space. Bioregenerative life support systems are a promising approach, but they are far from mature. Early in the development of the NASA Controlled Ecological Life Support System Program, the idea of onboard cultivation of salad-type vegetables for crew consumption was proposed as a first step away from the total reliance on resupply for food in space. Since that time, significant advances in space-based plant growth hardware have occurred, and considerable flight experience has been gained. This paper revisits the "Salad Machine" concept and describes recent developments in subsystem technologies for both plant root and shoot environments that are directly relevant to the development of such a facility.  相似文献   

13.
Studies of bioregenerative life support systems for use in space indicate that they are scientifically feasible. Preliminary data suggest that they would provide cost- and weight-saving benefits for low Earth orbit, long duration space platforms. Concepts of such systems include the use of higher plants and/or micro-algae as sources of food, potable water and oxygen, and as sinks for carbon dioxide and metabolic wastes. Recycling of materials within the system will require processing of food organism and crew wastes using microbiological and/or physical chemical techniques. The dynamics of material flow within the system will require monitoring, control, stabilization and maintenance imposed by computers. Future phases of study will continue investigations of higher plant and algal physiology, environmental responses, and control; flight experiments for testing responses of organisms to weightlessness and increased radiation levels; and development of ground-based facilities for the study of recycling within a bioregenerative life support system.  相似文献   

14.
As NASA proceeds with its effort to develop a Controlled Ecological Life Support System (CELSS) that will provide life support to crews during long duration space missions, it must address the question of facility and system closure. Here we discuss the concept of closure as it pertains to CELSS and describe engineering specifications, construction problems and monitoring procedures used in the development and operation of a closed plant growth facility for the CELSS program. A plant growth facility is one of several modules required for a CELSS. A prototype of this module at Kennedy Space Center is the large (7m tall x 3.5m diameter) Biomass Production Chamber (BPC), the central facility of the CELSS Breadboard Project. The BPC is atmospherically sealed to a leak rate of approximately 5% of its total volume per 24 hours. This paper will discuss the requirements for atmospheric closure in this facility, present CO2 and trace gas data from initial tests of the BPC with and without plants, and describe how the chamber was sealed atmospherically. Implications that research conducted in this type of facility will have for the CELSS program are discussed.  相似文献   

15.
空间带电粒子对在轨航天器会产生辐照剂量效应,严重时可导致星载设备及航天器等的性能衰减及寿命下降,因此采用了星内多点多方位的辐照总剂量探测技术.在中国首次采用深度剂量监测方案.每个探头设置5个剂量监测点,对应屏蔽厚度分别为0(开窗),1mm,2.5mm,3.5mm,6mm的铝结构,探测剂量总量程为2×106rad (Si),最高灵敏度为1rad (Si).所设计的星载辐照剂量深度分布探测仪可以对卫星在轨遭受的辐照剂量进行实时监测和预警,其探测结果用于研究星内剂量深度分布,对卫星载荷在轨工作状态进行分析评估,并为后续卫星的抗辐照加固设计提供依据.   相似文献   

16.
讨论了一种朗缪尔球形探针在轨快速去除表面污染的技术方法. 朗缪尔探针是空间等离子体原位探测的一项重要手段, 广泛应用于各种航天器. 探针传感器表面被污染时, 会造成探针I-V特性曲线失真, 从而导致探测获得的等离子体参数产生偏差. 通过试验验证了采用探针传感器加载高压的技术, 其可快速有效清除传感器表面污染, 确保朗缪尔探针在轨探测获得实时、准确的空间等离子体信息.   相似文献   

17.
China's manned spaceflight missions have been introduced briefly, and the research planning of space sciences for China's Space Station (CSS) has been presented with the topics in the research areas, including:life science and biotechnology, microgravity fluid physics and combustion science, space material science, fundamental physics, space astronomy and astrophysics, earth sciences and application, space physics and space environment, experiments of new space technology. The research facilities, experiment racks, and supporting system planned in CSS have been described, including:multifunctional optical facility, research facility of quantum and optic transmission, and a dozen of research racks for space sciences in pressurized module, etc. In the next decade, significant breakthroughs in space science and utilization will hopefully be achieved, and great contributions will be made to satisfy the need of the social development and people's daily life.   相似文献   

18.
To study the effect of the space environment on plant growth including the reproductive growth and genetic aberration for a long-term plant life cycle, we have initiated development of a new type of facility for growing plants under microgravity conditions. The facility is constructed with subsystems for controlling environmental elements. In this paper, the concept of the facility design is outlined. Subsystems controlling air temperature, humidity, CO2 concentration, light and air circulation around plants and delivering recycled water and nutrients to roots are the major concerns. Plant experiments for developing the facility and future plant experiments with the completed facility are also overviewed. We intend to install this facility in the Japan Experiment Facility (JEM) boarded on the International Space Station.  相似文献   

19.
针对月球探测中月面上升和下降段的实时轨道确定问题,提出基于三向测量的实时自适应当前统计方法。首先,通过自适应当前统计模型描述探测器月面上升下降过程,其次,综合利用三向数据进行测量更新,最后,通过UKF滤波算法完成实时轨道确定。由于自适应当前统计模型具有良好的适应性,该方法能对探测器月面上升和下降段进行有效定位,通过嫦娥五号探测器实际上升和下降过程数据进行测试,结果表明,文章提出的基于三向测量的实时自适应当前统计方法比传统的几何定位方法具有更好的抗差性,对深空目标探测具有一定的工程应用价值。  相似文献   

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