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地面多目标快速响应任务轨道设计
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作者 张海洋 张刚 《宇航学报》 EI CAS CSCD 北大核心 2023年第5期677-686,共10页
针对多目标快速响应对地成像任务,提出了一种J_(2)摄动下4个地面目标重复访问以及5个地面目标单次访问的轨道设计方法。首先在轨道倾角已知的假设下,通过第1个目标点的访问约束解析得到升交点赤经和参数纬度幅角,然后通过第2、3、4个目... 针对多目标快速响应对地成像任务,提出了一种J_(2)摄动下4个地面目标重复访问以及5个地面目标单次访问的轨道设计方法。首先在轨道倾角已知的假设下,通过第1个目标点的访问约束解析得到升交点赤经和参数纬度幅角,然后通过第2、3、4个目标点的访问约束数值求解得到近地点角距、偏心率和半长轴。最后,通过增加回归轨道约束或第5个目标点的访问约束,将轨道设计问题转化为只含有倾角的一维非线性方程,通过一维数值搜索进行求解。仿真结果表明,通过所提方法设计轨道的星下点轨迹能够精确经过指定的多个地面目标,验证了方法的有效性和正确性。 展开更多
关键词 快速响应空间 多目标点 星下点轨迹 轨道设计 J2摄动
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Automatic Train Operation Based on Adaptive Terminal Sliding Mode Control 被引量:3
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作者 Peng Wu Qing-Yuan Wang Xiao-Yun Feng 《International Journal of Automation and computing》 EI CSCD 2015年第2期142-148,共7页
This paper presents an adaptive terminal sliding mode control(ATSMC) method for automatic train operation. The criterion for the design is keeping high-precision tracking with relatively less adjustment of the control... This paper presents an adaptive terminal sliding mode control(ATSMC) method for automatic train operation. The criterion for the design is keeping high-precision tracking with relatively less adjustment of the control input. The ATSMC structure is designed by considering the nonlinear characteristics of the dynamic model and the parametric uncertainties of the train operation in real time. A nonsingular terminal sliding mode control is employed to make the system quickly reach a stable state within a finite time, which makes the control input less adjust to guarantee the riding comfort. An adaptive mechanism is used to estimate controller parameters to get rid of the need of the prior knowledge about the bounds of system uncertainty. Simulations are presented to demonstrate the effectiveness of the proposed controller, which has robust performance to deal with the external disturbance and system parametric uncertainties. Thereby, the system guarantees the train operation to be accurate and comfortable. 展开更多
关键词 Automatic train operation track control terminal sliding mode control(TSMC) adaptive control comfortableness.
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Near-ground trajectory planning for UAVs via multi-resolution hybrid voxel-surfel map
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作者 GAO TianYu WENG Rui +4 位作者 WU Tong ZHANG RuiXian HAN ChengZhe JI XiaoYu LIU Ming 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2023年第5期1245-1254,共10页
This paper is concerned with trajectory planning problems for UAVs operating near ground.Most existing studies focus on solving the problem of collision-free trajectory planning between pre-defined path points,but ign... This paper is concerned with trajectory planning problems for UAVs operating near ground.Most existing studies focus on solving the problem of collision-free trajectory planning between pre-defined path points,but ignore the need of navigation method for UAVs working on specific operating surfaces in near-ground space.In this paper,a novel near-ground trajectory planning framework is proposed,where the hybrid voxel-surfel map is developed to model the environment with special attention to the uneven operating surface.To improve the frequency of updates,a probability-based surfel fusion method and a resolution adaptive adjustment method based on the fusion result are proposed in this paper.By using possibility information in the map,a path search method is established to generate the initial trajectory.The trajectory is then further optimized based on map gradient information to generate a final trajectory that tracks the specified operating surface according to the task requirements.Compared with existing methods,the multi-resolution hybrid voxel-surfel map proposed in this paper has advantages in terms of operating efficiency.A series of experiments in simulated and real scenarios validate the effectiveness of the proposed trajectory planning framework. 展开更多
关键词 near-ground trajectory planning hybrid voxel-surfel map probability-based surfel fusion operating surface tracking
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