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1.
A parachute-payload model with randomize wind gust is developed to study the landing accuracy of the parachute decelerator system,which can be exactly described by the landing site distribution.The research focuses on the steady descent phase of the parachute descent process,so the parachute and the payload suspension formulation during the phase are mainly discussed.In addition,since the wind effects have a significant impact on the land site distribution of the passive decelerator system and it is difficult to obtain the exact wind profile in practice,major features of parachute-payload system are studied via the randomized wind gust formulation.As the randomized wind gust formulation is adopted,the wind effect can be considered without the exact wind gust profile and the parachute aerodynamic simulation can be fulfilled with uncertainties.Finally,the model is validated and discussed,and the parachute land site distributions with different wind randomize profiles are presented for comparison.The results show that when parachute is less stable,the land site tends to have a larger variance.  相似文献   
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The physical and mechanical properties as well as the heat flux of regolith are critical evidence in the study of planetary origin and evolution. Moreover, the mechanical properties of planetary regolith have great value for guiding future human planetary activities. For planetary subsurface exploration, an inchworm boring robot (IBR) has been proposed to penetrate the regolith, and the mechanical properties of the regolith are expected to be simultaneously investigated during the penetration process using the drilling tool on the IBR. This paper provides a preliminary study of an in situ method for measuring planetary regolith mechanical parameters using a drilling tool on a test bed. A conical-screw drilling tool was designed, and its drilling load characteristics were experimentally analyzed. Based on the drilling tool-regolith interaction model, two identification methods for determining the planetary regolith bearing and shearing parameters are proposed. The bearing and shearing parameters of lunar regolith simulant were successfully determined according to the pressure-sinkage tests and shear tests conducted on the test bed. The effects of the operating parameters on the identification results were also analyzed. The results indicate a feasible scheme for future planetary subsurface exploration.  相似文献   
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运载火箭火工点式分离装置工作时具有强冲击载荷特性,为有效降低冲击峰值,提出了一种基于纳米吸能流体结构的冲击缓冲技术。首先进行纳米吸能流体的吸能原理研究,建立其本构关系,揭示影响其吸能密度的主要因素;其次开展火工装置有限空间内的纳米吸能流体缓冲结构设计;最后通过有限元仿真与试验验证其缓冲性能。试验结果表明,本文设计的基于纳米吸能流体的缓冲结构,吸能密度高达122.8 J/g,冲击力峰值较空载条件下降了59.2%,冲击加速度峰值下降了63.4%。  相似文献   
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Since the signals of global navigation satellite system (GNSS) are blocked frequently in challenging environments, the discontinuous carrier phases seriously affect the application of GNSS precise positioning. To improve the carrier phase continuity, this paper proposes a carrier phase prediction method based on carrier open-loop tracking. In the open-loop tracking mode, the carrier numerically controlled oscillator (NCO) is controlled by the predicted Doppler, but not by the loop filter output. To improve the phase prediction effective time, accurate receiver clock drift estimation is studied in the prediction method. The phase prediction performance is tested on GNSS software receiver. In the phase prediction effective time tests, open-loop processes were set for the tested channel. The test results show that, when some satellite signals are blocked in 15?s, the probability of carrier phase error less than quarter cycles is more than 94%. In the real time kinematic (RTK) positioning tests, some satellite signals are blocked in 10–15?s repeatedly. The test results show that, the carrier phase continuity is basically not affected by the signal interruption, and the RTK can almost keep continuous centimeter-level positioning accuracy without re-fixing the integer ambiguity.  相似文献   
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This paper proposes a novel multiple model estimator for the satellite attitude determination system composed of gyroscopes and star sensors. The main objective is to calibrate the low frequency error of the star sensor and improve the attitude determination accuracy. In the proposed approach, first, the specific frequencies of the low frequency error is extracted according to the frequency spectrum of the estimate of the gyroscope drift obtained from a standard Kalman filter; then, a bank of Kalman filters based on multiple models is implemented to identify the amplitudes of the error signals with the specific frequencies, such that a reference model is obtained to compensate for the effects of the low frequency error. Simulation results indicate that the proposed approach outperforms the existing calibration approach based on the state augmentation technique.  相似文献   
8.
空间相机低频隔振系统及试验验证   总被引:1,自引:0,他引:1  
随着遥感卫星分辨率的提高。星上微振动对空间相机的影响越来越显著。在相机与卫星平台之间安装隔振装置,将飞轮、扫描机构等扰振源产生的振动与相机隔离开来是一种改善其工作环境的有效方法。文章介绍了针对中巴地球资源卫星研制的相机被动隔振系统,以及在地面结构星上进行的联合隔振性能测试。测试结果表明。传递至相机的两个主要扰振频率分量...  相似文献   
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IEEE1394总线是一种应用广泛的高速实时传输总线。文章给出了一种基于TSB12LV32和TSB41AB3的IEEE1394总线接口设计方案,并对接口连接进行了详细阐述。使用DSP搭配FPGA构建事务层,与链路层、物理层一起构成完整的IEEE1394通信链路。该方案可以实现链路层和物理层的无缝链接,并且异步事务和等时...  相似文献   
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干涉测量技术是深空探测任务中高精度获取导航数据观测量的重要技术手段。阐述连线干涉测量原理,详细推导干涉测量信号处理算法,用于准确提取反映航天器测角信息的时延观测量。分析信号处理数学模型,通过仿真验证算法的有效性。由于连线干涉测量具有严格的时间同步特性,同时消除了传播介质公共误差对信号的影响,通过搭建连线干涉测量实验系统实际采集地球同步卫星信号进行分析,结果表明实验成功获取了清晰的干涉条纹,得到高精度的时延观测量信息,从而验证了连线干涉测量信号处理方法的有效性。  相似文献   
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