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Ballistic Missile Trajectory Prediction(BMTP) is critical to air defense systems. Most Trajectory Prediction(TP) methods focus on the coast and reentry phases, in which the Ballistic Missile(BM) trajectories are modeled as ellipses or the state components are propagated by the dynamic integral equations on time scales. In contrast, the boost-phase TP is more challenging because there are many unknown forces acting on the BM in this phase. To tackle this difficult problem, a novel BMTP method by ... 相似文献
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A novel virtual material layer model based on the fractal theory was proposed to predict the natural frequencies of carbon fiber reinforced plastic composite bolted joints. Rough contact surfaces of composite bolted joints are modeled with this new proposed approach. Numerical and experimental modal analyses were conducted to validate the effectiveness of the proposed model. A good consistence is noted between the numerical and experimental results. To demonstrate the necessity of accurately modeling the rough contact surfaces in the prediction of natural frequencies, virtual material layer model was compared with the widely used traditional model based on the Master-Slave contact algorithm and experiments, respectively. Results show that the proposed model has a better agreement with experiments than the widely used traditional model (the prediction accuracy is raised by 8.77% when the pre-tightening torque is 0.5 N∙m). Real contact area ratio A* of three different virtual material layers were calculated. Value of A* were discussed with dimensionless load P*, fractal dimension D and fractal roughness G. This work provides a new efficient way for accurately modeling the rough contact surfaces and predicting the natural frequencies of composite bolted joints, which can be used to help engineers in the dynamic design of composite materials. 相似文献
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卫星上计算资源有限,星载嵌入式处理器处理遥感影像的配准时通常需要很长的时间.可编程逻辑门阵列(FPGA)利用其内部可编程器件可用于加速图像处理.提出了一种基于Xilinx公司的ZYNQ芯片加速ORB算法的遥感影像配准方法,可用于3000×3000像素尺寸的卫星图像配准,缩短了计算耗时,提升了ORB算法的计算能效比.利用... 相似文献
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文中总结了国际航空机电系统技术研究现状,以美国为代表的国际先进飞机研发体系,将机电系统技术提升至与飞机平台技术并重的地位,将综合推进、能源与热管理技术列为核心技术领域,持续开展了MEA、INVENT、INPPAT、AVEM、NGT-PAC等一系列面向机电领域的重大技术专项和演示验证计划;梳理了系统架构综合化、能源利用多电化、能量管理高效化的机电系统技术发展趋势;展开了机电系统技术研发思考,提出了强化机电系统技术发展规律和需求认识、升级机电系统技术基础研究,和仿真验证能力是引领机电系统技术发展的2个关键方向。 相似文献
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