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排序方式: 共有237条查询结果,搜索用时 31 毫秒
1.
针对复杂动态环境下无人飞行器的动态障碍规避问题,基于合理假设建立了无人飞行器和动态障碍的运动学模型,并综合考虑无人飞行器飞行过程中的终端约束、控制输入约束、安全避障约束等,以能量最少为性能指标构建动态避障问题数学描述。之后,针对终端约束和控制输入约束,依据优化模型预测静态规划算法(OMPSP)生成初始轨迹;针对动态避障问题的不等式约束,引入松弛变量并结合滑模变结构控制方法设计松弛变量动力学,实现对一个、多个或同时多个动态障碍的安全规避;最后,依据有限时间微分动态规划(RHDDP)算法进行轨迹优化,获得满足上述各种约束并能规避动态障碍的近似最优轨迹。 相似文献
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《中国航空学报》2020,33(11):2851-2863
Recent years have witnessed a booming of the industry of civil Unmanned Aircraft System (UAS). As an emerging industry, the UAS industry has been attracting great attention from governments of all countries and the aviation industry. UAS are highly digitalized, informationized, and intelligent; therefore, their integration into the national airspace system has become an important trend in the development of civil aviation. However, the complexity of UAS operation poses great challenges to the traditional aviation regulatory system and technical means. How to prevent collisions between UASs and between UAS and manned aircraft to achieve safe and efficient operation in the integrated operating airspace has become a common challenge for industry and academia around the world. In recent years, the international community has carried out a great amount of work and experiments in the air traffic management of UAS and some of the key technologies. This paper attempts to make a review of the UAS separation management and key technologies in collision avoidance in the integrated airspace, mainly focusing on the current situation of UAS Traffic Management (UTM), safety separation standards, detection system, collision risk prediction, collision avoidance, safety risk assessment, etc., as well as an analysis of the bottlenecks that the current researches encountered and their development trends, so as to provide some insights and references for further research in this regard. Finally, this paper makes a further summary of some of the research highlights and challenges. 相似文献
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This paper provides an overview of a system for providing reliable, ongoing, timely situational awareness services to satellite operators. Such services would include close approach warnings, warnings of potential radio frequency interference, and other offerings designed to help make operators aware of possible threats to the safe operation of their spacecraft and measures they can take to lessen these threats. The paper discusses current trends, proposes operational requirements, and speculates on the type of organization that may emerge to provide space traffic control services. It highlights how the detailed information required for such services may affect the evolution of the use of space. 相似文献
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一种新的综合TF/TA最优航迹算法 总被引:14,自引:1,他引:14
综合TF/TA是新一代低空突防技术,TF/TA最优航迹的计算是其控制系统的核心。文中提出了一种新的综合TF/TA最优航迹算法,它用动态规划和树型搜索相结合的方法,实时计算综合TF/TA最优航迹。算法考虑了飞机机动能力的约束,使最优航迹在不需要平滑处理时就是一个可实现航迹。另外还考虑了威胁的影响,使最优航迹能有效地进行威胁回避。计算结果表明,所得的最优航迹具有综合地形跟踪/回避和威胁回避的能力。 相似文献
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史杰 《民用飞机设计与研究》2016,(3):89
为了提高大型客机在低能见度天气下场面滑行时的安全性,提出了一种采用热成像仪进行障碍物探测和识别的系统。对客机前方景物进行热成像,用改进的机器立体视觉算法计算目标距离,使用模糊逻辑融合位置信息识别障碍物。实验表明提出的系统能探测和识别场面上的主要障碍物。 相似文献
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《中国航空学报》2016,(6):1673-1684
A new variable speed control moment gyro (VSCMG) steering law is proposed in order to achieve higher torque precision. The dynamics of VSCMGs is established, and two work modes are then designed according to command torque:control momentum gyro (CMG)/reaction wheel (RW) hybrid mode for the large torque case and RW single mode for the small. When working in the CMG/RW hybrid mode, the steering law deals with the gimbal dead-zone nonlinearity through compensation by RW sub-mode. This is in contrast to the conventional CMG singularity avoidance and wheel speed equalization, as well as the proof of definitely hyperbolic singular property of the CMG sub-mode. When working in the RW single mode, the motion of gimbals will be locked. Both the transition from CMG/RW hybrid mode to RW single mode and the reverse are studied. During the transition, wheel speed equalization and singularity avoidance of both the CMG and RW sub-modes are considered. A steering law for the RWs with locked gimbals is presented. It is shown by simulations that the VSCMGs with this new steering law could reach a better torque precision than the normal CMGs in the case of both large and small torques. 相似文献
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对机场多跑道系统的障碍物限制面——内水平面的边界确定方法进行了系统研究。通过将N条(N≥3)复杂构形跑道简化为2N个点集,根据国际民航组织内水平面障碍物限制面形成原理并利用多边形凹凸性几何特征,给出了内水平面边界的确定方法和计算步骤。 相似文献