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81.
基于三自由度飞行动力学模型和运动学模型,提出了一种带有灰色补偿的反步(Back-stepping)控制方法,以实现某些预定的战术机动动作。首先,将飞行动力学模型和运动学模型分解成3个轴方向的相对简单的子系统;然后,针对3个子系统采用反步法分别设计出模型中没有干扰时的控制律,并采用GM(0,N)预测模型对不确定部分的模型参数进行辨识,进一步根据估计出的参数设计灰色补偿控制律;最后,根据3个子系统设计出的控制律解算出同时满足3个子系统渐进稳定的控制输入,这样使得整个系统渐进稳定。仿真结果表明,GM(0,N)预测模型能精确预测不确定模型参数,该算法能够高效实现预定的战术机动动作。 相似文献
82.
83.
介绍了按照JJG414—94《光学经纬仪》检定、校准J2级经纬仪竖盘指标自动补偿误差时,依据“’93国际指南”要求,对其测量不确定度进行的分析、计算。 相似文献
84.
C.M. Wrasse J. Fechine H. Takahashi C.M. Denardini J. Wickert M.G. Mlynczak J.M. Russell C.L. Barbosa 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2008,41(9):1423-1428
Global Positioning System (GPS) receiver on the CHAllenging Mini-satellite Payload (CHAMP) and the Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) instrument, one of four on board the TIMED satellite, provide middle atmosphere temperature profiles by Radio Occultation (RO) and limb viewing infrared emission measurements, respectively. These temperature profiles retrieved by two different techniques in the stratosphere are compared with each other using more than 1300 correlative profiles in March, September and December 2005. The over-all mean differences averaged over 15 and 35 km are approximately −2 K and standard deviation is less than 3 K. Below 20 km of altitude, relatively small mean temperature differences ∼1 K are observed in wide latitudinal range except for June (during the SABER nighttime observation). In the middle to low latitudes, between 30°S and 30°N, the temperature difference increases with height from ∼0–1 K at 15 km, to ∼−4 K at 35 km of altitude. Large temperature differences about −4 to −6 K are observed between 60°S and 30°N and 31–35 km of altitude for all months and between 0° and 30°N below 16 km during June (nighttime). 相似文献
85.
介绍了中国新一代宇航试验舱的温控系统。该温控系统设计思想先进、结构新颖。在直径2.3m,长2m的封闭舱体控温面上,实现了0℃~50℃的任意温度定点控制及90min内的正弦波、梯形波、三角波的周期变化;在整个控温面上温度非均匀性(均方根偏差)小于0.3℃,远远超过了非均匀度±1℃、控制精度±2℃的原设计指标。 相似文献
86.
文章在三维仿真软件HFSS和CST中建立谐振腔模型,给出建模的原理和注意点;详细研究了腔体各尺寸随温度变化对腔体本征频率的影响的正负性及影响大小,得出引起腔体频率变化的主要结构因素;重点分析了调谐螺钉纵向扰动及径向扰动对谐振频率的影响。结合LC谐振电路对结果进行分析,得出减小温漂的措施。并根据仿真结果,对腔体的各个部分合理使用不同材料,使腔体温漂得到补偿。 相似文献
87.
Industrial robots are used for automatic drilling and riveting.The absolute position accuracy of an industrial robot is one of the key performance indexes in aircraft assembly,and can be improved through error compensation to meet aircraft assembly requirements.The achievable accuracy and the difficulty of accuracy compensation implementation are closely related to the choice of sampling points.Therefore,based on the error similarity error compensation method,a method for choosing sampling points on a uniform grid is proposed.A simulation is conducted to analyze the influence of the sample point locations on error compensation.In addition,the grid steps of the sampling points are optimized using a statistical analysis method.The method is used to generate grids and optimize the grid steps of a Kuka KR-210 robot.The experimental results show that the method for planning sampling data can be used to effectively optimize the sampling grid.After error compensation,the position accuracy of the robot meets the position accuracy requirements. 相似文献
88.
The real dynamic thrust measurement system usually tends to be nonlinear due to the complex characteristics of the rig, pipes connection, etc. For a real dynamic measuring system,the nonlinearity must be eliminated by some adequate methods. In this paper, a nonlinear model of dynamic thrust measurement system is established by using radial basis function neural network(RBF-NN), where a novel multi-step force generator is designed to stimulate the nonlinearity of the system, and a practical compensation method for the measurement system using left inverse model is proposed. Left inverse model can be considered as a perfect dynamic compensation of the dynamic thrust measurement system, and in practice, it can be approximated by RBF-NN based on least mean square(LMS) algorithms. Different weights are set for producing the multi-step force, which is the ideal input signal of the nonlinear dynamic thrust measurement system. The validity of the compensation method depends on the engine’s performance and the tolerance error0.5%, which is commonly demanded in engineering. Results from simulations and experiments show that the practical compensation using left inverse model based on RBF-NN in dynamic thrust measuring system can yield high tracking accuracy than the conventional methods. 相似文献
89.
针对飞机导管实际装配过程中因装配应力大导致故障频发的问题,提出了一种基于导管装配特征的误差补偿方法.首先采用几何建模法进行了导管装配过程的几何建模,并提出了一种基于轴线矢量的导管装配模型建模方法.在此基础上,采用罗德里格旋转公式建立了基于实际装配工况下的导管空间位姿计算模型.然后基于导管装配要求进行了装配约束分析并识别... 相似文献
90.