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221.
随着无人机技术应用的不断深入,如何提高无人机编队的协同能力及在复杂动态环境的自适应性,已成为“集群智能”的 1个重要研究方向。文章对海上无人机多机协同航迹规划整体流程进行了分析,分别阐释了静态和动态场景下的多机协同规划方法。静态场景下主要采用分支定界法建立静态问题模型,为每架无人机划分作业区域、生成作业路径,使得整个巡检作业的航迹长度代价与作业时间代价最小;动态场景下主要针对气象变化、连续跟监、海域变化 3种突发场景,侧重于协同决策和路径规划设计对应的目标函数,采用启发式算法为整个巡检作业进行自适应航迹规划,以确保安全性和效率性。实验结果显示,无人机协同路径规划能够根据环境变化和任务需求动态调整多无人机的巡检路径,快速给出不同突发情况下的最佳动态调整方案,以应对复杂的海上环境并动态规避障碍物。  相似文献   
222.
针对密集障碍代价空间中存在的局部裂缝区域,基于采样的路径规划方法随机生成的节点无法进行有效扩展,形成可行路径的概率极低的问题,采用电势原理建立环境威胁模型,提出局部区域启发模式转换机制及节点一步检测方法.采用路径代价改进Transition-based RRT算法的节点选择机制,实现节点扩展的双启发.仿真结果表明,该算法能够有效地解决上述问题,其算法性能和路径生成优于同类算法.  相似文献   
223.
飞机大修进度控制是一项复杂、随机性强,却有规律性可循的管理项目。通过对以往若干批次飞机大修进度数据的统计分析,结合专家评估,得到飞机大修中各工艺作业的进度规律,并以此作为大修网络图中的各项作业的基础参数,建立网络图计算模型,借助于计算机大数据模拟来分析大修网络图的内在规律,为实际飞机大修进度 制定和网络图优化提供参考依据。  相似文献   
224.
一种三维航迹快速搜索方法   总被引:53,自引:4,他引:53  
本文提出了基于SAS的自动三维航迹规划方法。该方法通过把约束条件结合到搜索算法中去,有效地减小了搜索空间,缩短了搜索时间,从而使三维规划能够用于实时航迹规划。在搜索过程中地形信息得到了充分利用,使算法生成的航迹能够自动回避地形和威胁。实验证明,该方法能够快速有效地完成规划任务,获得满意的三维航迹。  相似文献   
225.
多个自由飞行空间机器人协调操作运动规划   总被引:2,自引:1,他引:2  
本文提出了在空间微重力环境下多个自由飞行空间机器人协调操作运动规划算法,首先推导出多个自由飞行空间机器人协调操作的广义雅可比矩阵,其次给出了基于该矩阵的多个自由飞行空间机器人协调操作分解运动速度控制算法,最后用计算机仿真验证了该算法的正确性。  相似文献   
226.
In the last decades there have been an increasing interest in improving the accuracy of spacecraft navigation and trajectory data. In the course of this plan some anomalies have been found that cannot, in principle, be explained in the context of the most accurate orbital models including all known effects from classical dynamics and general relativity. Of particular interest for its puzzling nature, and the lack of any accepted explanation for the moment, is the flyby anomaly discovered in some spacecraft flybys of the Earth over the course of twenty years. This anomaly manifest itself as the impossibility of matching the pre and post-encounter Doppler tracking and ranging data within a single orbit but, on the contrary, a difference of a few mm/s in the asymptotic velocities is required to perform the fitting.Nevertheless, no dedicated missions have been carried out to elucidate the origin of this phenomenon with the objective either of revising our understanding of gravity or to improve the accuracy of spacecraft Doppler tracking by revealing a conventional origin.With the occasion of the Juno mission arrival at Jupiter and the close flybys of this planet, that are currently been performed, we have developed an orbital model suited to the time window close to the perijove. This model shows that an anomalous acceleration of a few mm/s2 is also present in this case. The chance for overlooked conventional or possible unconventional explanations is discussed.  相似文献   
227.
Under the demand of strategic air traffic flow management and the concept of trajectory based operations (TBO),the network-wide 4D flight trajectories planning (N4DFTP) problem has been investigated with the purpose of safely and efficiently allocating 4D trajectories (4DTs) (3D position and time) for all the flights in the whole airway network.Considering that the introduction of large-scale 4DTs inevitably increases the problem complexity,an efficient model for strategic level conflict management is developed in this paper.Specifically,a bi-objective N4DFTP problem that aims to minimize both potential conflicts and the trajectory cost is formulated.In consideration of the large-scale,high-complexity,and multi-objective characteristics of the N4DFTP problem,a multi-objective multi-memetic algorithm (MOMMA) that incorporates an evolutionary global search framework together with three problem-specific local search operators is implemented.It is capable of rapidly and effectively allocating 4DTs via rerouting,target time controlling,and flight level changing.Additionally,to balance the ability of exploitation and exploration of the algorithm,a special hybridization scheme is adopted for the integration of local and global search.Empirical studies using real air traffic data in China with different network complexities show that the pro posed MOMMA is effective to solve the N4DFTP problem.The solutions achieved are competitive for elaborate decision support under a TBO environment.  相似文献   
228.
This paper presents a computationally efficient real-time trajectory planning framework for typical unmanned combat aerial vehicle (UCAV) performing autonomous air-to-surface (A/S) attack. It combines the benefits of inverse dynamics optimization method and receding horizon optimal control technique. Firstly, the ground attack trajectory planning problem is mathematically formulated as a receding horizon optimal control problem (RHC-OCP). In particular, an approximate elliptic launch acceptable region (LAR) model is proposed to model the critical weapon delivery constraints. Secondly, a planning algorithm based on inverse dynamics optimization, which has high computational efficiency and good convergence properties, is developed to solve the RHCOCP in real-time. Thirdly, in order to improve robustness and adaptivity in a dynamic and uncer- tain environment, a two-degree-of-freedom (2-DOF) receding horizon control architecture is introduced and a regular real-time update strategy is proposed as well, and the real-time feedback can be achieved and the not-converged situations can be handled. Finally, numerical simulations demon- strate the efficiency of this framework, and the results also show that the presented technique is well suited for real-time implementation in dynamic and uncertain environment.  相似文献   
229.
随着空中交通流量的日渐增大,空域结构及交通流分布的不合理性导致空中交通管制与飞行安全存在着一定的隐患。鉴于机场进近区是限制空域运行能力的主要瓶颈,针对如何提高空域资源利用率从而提升空域容量进行了进近区扇区规划,提出了考虑飞行流量、冲突发生的位置以及空域运行情况等因素建立的扇区容量均衡模型,利用霍夫曼编码原理进一步找到了扇区边界,并验证了方法的科学性和合理性。  相似文献   
230.
Among the configurations of superconducting magnet structures proposed for protecting manned spaceships or manned deep space bases from ionizing radiation, toroidal ones are the most appealing for the efficient use of the magnetic field, being most of the incoming particle directions perpendicular to the induction lines of the field. The parameters of the toroid configuration essentially depend from the shape and volume of the habitat to be protected and the level of protection to be guaranteed. Two options are considered: (1) the magnetic system forming with the habitat a unique complex (compact toroid) to be launched as one piece; (2) the magnetic system to be launched separately from the habitat and assembled around it in space (large toroid).  相似文献   
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