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An analysis of close approaches and probability of collisions between LEO resident space objects and mega constellations 被引量:8
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作者 Yan Zhang Bin Li +1 位作者 Hongkang Liu Jizhang Sang 《Geo-Spatial Information Science》 SCIE EI CSCD 2022年第1期104-120,共17页
With the undergoing and planned implementations of mega constellations of thousands of Low Earth Orbiting(LEO)satellites,space will become even more congested for satellite operations.The enduring effects on the long-... With the undergoing and planned implementations of mega constellations of thousands of Low Earth Orbiting(LEO)satellites,space will become even more congested for satellite operations.The enduring effects on the long-term space environment have been investigated by various researchers using debris environment models.This paper is focused on the imminent short-term effects of LEO mega constellations on the space operation environment concerned by satellite owners and operators.The effects are measured in terms of the Close Approaches(CAs)and overall collision probability.Instead of using debris environment models,the CAs are determined from integrated orbit positions,and the collision probability is computed for each CA considering the sizes and position covariance of the involving objects.The obtained results thus present a clearer picture of the space operation safety environment when LEO mega constellations are deployed.Many mega constellations are simulated,including a Starlink-like constellation of 1584 satellites,four possible generic constellations at altitudes between 1110 km and 1325 km,and three constellations of 1584 satellites each at the altitudes of 650 km,800 km,and 950 km,respectively,where the Resident Space Object(RSO)spatial density is the highest.The increases in the number of CAs and overall collision probability caused by them are really alarming.The results suggest that highly frequent orbital maneuvers are required to avoid collisions between existing RSOs and constellation satellites,and between satellites from two constellations at a close altitude,as such the constellation operation burden would be very heavy.The study is not only useful for satellite operators but a powerful signal for various stakeholders to pay serious attention to the development of LEO mega constellations. 展开更多
关键词 Resident space object mega constellation close approach collision probability
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Multi-view space object recognition and pose estimation based on kernel regression 被引量:3
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作者 Zhang Haopeng Jiang Zhiguo 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2014年第5期1233-1241,共9页
The application of high-performance imaging sensors in space-based space surveillance systems makes it possible to recognize space objects and estimate their poses using vision-based methods. In this paper, we propose... The application of high-performance imaging sensors in space-based space surveillance systems makes it possible to recognize space objects and estimate their poses using vision-based methods. In this paper, we proposed a kernel regression-based method for joint multi-view space object recognition and pose estimation. We built a new simulated satellite image dataset named BUAA-SID 1.5 to test our method using different image representations. We evaluated our method for recognition-only tasks, pose estimation-only tasks, and joint recognition and pose estimation tasks. Experimental results show that our method outperforms the state-of-the-arts in space object recognition, and can recognize space objects and estimate their poses effectively and robustly against noise and lighting conditions. 展开更多
关键词 Kernel regression object recognition Pose estimation space objects Vision-based
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Method for Collision Avoidance in Spacecraft Rendezvous Problems with Space Objects in a Phasing Orbit
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作者 Danhe Chen A.A.Baranov +2 位作者 Chuangge Wang M.O.Karatunov N.Yu.Makarov 《Computer Modeling in Engineering & Sciences》 SCIE EI 2021年第6期977-991,共15页
As the number of space objects(SO)increases,collision avoidance problem in the rendezvous tasks or reconstellation of satellites with SO has been paid more attention,and the dangerous area of a possible collision shou... As the number of space objects(SO)increases,collision avoidance problem in the rendezvous tasks or reconstellation of satellites with SO has been paid more attention,and the dangerous area of a possible collision should be derived.In this paper,a maneuvering method is proposed for avoiding collision with a space debris object in the phasing orbit of the initial optimal solution.Accordingly,based on the plane of eccentricity vector components,relevant dangerous area which is bounded by two parallel lines is formulated.The axises of eccentricity vector system pass through the end of eccentricity vector of phasing orbit in the optimal solution,and orientation of axis depends on the latitude argument where a collision will occur.The dangerous area is represented especially with the graphical dialogue,and it allows to find a compromise between the SO avoiding and the fuel consumption reduction.The proposed method to solve the collision avoidance problem provides simplicity to calculate rendezvous maneuvers,and possibility to avoid collisions from several collisions or from“slow”collisions in a phasing orbit,when the protected spacecraft and the object fly dangerously close to each other for a long period. 展开更多
关键词 spaceCRAFT collision avoidance rendezvous problem space objects phasing orbit
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Compressive sensing for small moving space object detection in astronomical images
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作者 Rui Yao Yanning Zhang 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2012年第3期378-384,共7页
It is known that detecting small moving objects in as- tronomical image sequences is a significant research problem in space surveillance. The new theory, compressive sensing, pro- vides a very easy and computationall... It is known that detecting small moving objects in as- tronomical image sequences is a significant research problem in space surveillance. The new theory, compressive sensing, pro- vides a very easy and computationally cheap coding scheme for onboard astronomical remote sensing. An algorithm for small moving space object detection and localization is proposed. The algorithm determines the measurements of objects by comparing the difference between the measurements of the current image and the measurements of the background scene. In contrast to reconstruct the whole image, only a foreground image is recon- structed, which will lead to an effective computational performance, and a high level of localization accuracy is achieved. Experiments and analysis are provided to show the performance of the pro- posed approach on detection and localization. 展开更多
关键词 compressive sensing small space object detection localization astronomical image.
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Scheduling Optimization of Space Object Observations for Radar
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作者 Xiongjun Fu Liping Wu +1 位作者 Chengyan Zhang Min Xie 《Journal of Beijing Institute of Technology》 EI CAS 2018年第1期36-42,共7页
An optimizing method of observation scheduling based on time-division multiplexing is proposed in this paper,and its efficiency is verified by outdoor experiments. The initial observation scheduling is first obtained ... An optimizing method of observation scheduling based on time-division multiplexing is proposed in this paper,and its efficiency is verified by outdoor experiments. The initial observation scheduling is first obtained by using a semi-random search algorithm,and secondly the connection time pair( CTP) between adjacent objects is optimized by using a genetic algorithm. After obtaining these two parameters,the final observation scheduling can be obtained. According to pre-designed tracks between each adjacent objects in observation order,the seamless observation of neighboring targets is derived by automatically steering the antenna beam,so the observation efficiency is improved. 展开更多
关键词 space objects observation scheduling semi-random search genetic algorithm
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Re-Entry of Space Objects from Low Eccentricity Orbits
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作者 Cynthia Sharon Lawrence Ram Krishan Sharma 《International Journal of Astronomy and Astrophysics》 2019年第3期200-216,共17页
This paper deals with the re-entry predictions of the space objects from the low eccentric orbit. Any re-entering object re-enters the Earth’s atmosphere with a high orbital velocity. Due to the aerodynamic heating t... This paper deals with the re-entry predictions of the space objects from the low eccentric orbit. Any re-entering object re-enters the Earth’s atmosphere with a high orbital velocity. Due to the aerodynamic heating the object tends to break into multiple fragments which later pose a great risk hazard to the population. Here a satellite is considered as the space object for which the re-entry prediction is made. This prediction is made with a package where the trajectory path, the time of re-entry and the survival rate of the fragments is done. The prediction is done using DRAMA 2.0—ESA’s Debris Risk Assessment and Mitigation Analysis Tool suite, MATLAB and Numerical Prediction of Orbital Events software. The predicted re-entry time of OSIRIS 3U was found to be on 7th March 2019, 7:25 (UTC), whereas the actual re-entry time was on 7th March 2019, 7:03 (UTC). The trajectory path found was 51.5699 deg. (Lat), &minus;86.5738 deg. (Long.) with an altitude of 168.643 km. But the actual trajectory was 51.76 deg. (Lat), &minus;89.01deg. (Long.) with an altitude of 143.5 km. 展开更多
关键词 RE-ENTRY space objects Low Eccentricity Orbits DRAMA 2.0 Risk Event Statistics
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Study on Logical Relations amongUnderground Survey Objects Using Quotient Topological Space 被引量:1
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作者 陈宜金 《International Journal of Mining Science and Technology》 SCIE EI 1997年第2期7-10,共4页
A soitable data model and data structure make underground survey objects maintained and operated easier. This paper gives a formal definition for underground survey objects. By making use of the quotient topological s... A soitable data model and data structure make underground survey objects maintained and operated easier. This paper gives a formal definition for underground survey objects. By making use of the quotient topological space, the author studies the logical relations among underground survey objects, a partiallyordered space uuder some conditions. An example is given to show the data model’s possible applications. 展开更多
关键词 UNDERGROUND SURVEY objectS QUOTIENT TOPOLOGICAL space logical RELATION
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Multi-objective Collaborative Optimization for Scheduling Aircraft Landing on Closely Spaced Parallel Runways Based on Genetic Algorithms 被引量:1
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作者 Zhang Shuqin Jiang Yu Xia Hongshan 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2016年第4期502-509,共8页
A scheduling model of closely spaced parallel runways for arrival aircraft was proposed,with multi-objections of the minimum flight delay cost,the maximum airport capacity,the minimum workload of air traffic controlle... A scheduling model of closely spaced parallel runways for arrival aircraft was proposed,with multi-objections of the minimum flight delay cost,the maximum airport capacity,the minimum workload of air traffic controller and the maximum fairness of airlines′scheduling.The time interval between two runways and changes of aircraft landing order were taken as the constraints.Genetic algorithm was used to solve the model,and the model constrained unit delay cost of the aircraft with multiple flight tasks to reduce its delay influence range.Each objective function value or the fitness of particle unsatisfied the constrain condition would be punished.Finally,one domestic airport hub was introduced to verify the algorithm and the model.The results showed that the genetic algorithm presented strong convergence and timeliness for solving constraint multi-objective aircraft landing problem on closely spaced parallel runways,and the optimization results were better than that of actual scheduling. 展开更多
关键词 air transportation runway scheduling closely spaced parallel runways genetic algorithm multi-objections
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Multi-objective Evolutionary Algorithm Based on Target Space Partitioning Method
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作者 尚兆霞 刘弘 李焱 《Journal of Donghua University(English Edition)》 EI CAS 2011年第2期177-181,共5页
Considering the defects of conventional optimization methods, a novel optimization algorithm is introduced in this paper. Target space partitioning method is used in this algorithm to solve multi-objective optimizatio... Considering the defects of conventional optimization methods, a novel optimization algorithm is introduced in this paper. Target space partitioning method is used in this algorithm to solve multi-objective optimization problem, thus achieve the coherent solution which can meet the requirements of all target functions, and improve the population's overall evolution level. The algorithm which guarantees diversity preservation and fast convergence to the Pareto set is applied to structural optimization problems. The empirical analysis supports the algorithm and gives an example with program. 展开更多
关键词 OPTIMIZATION ALGORITHM MULTI-objectIVE TARGET space partitioning METHOD
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Research of Modeling Moving Objects Database over Space-time Grid
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作者 Hongtao Yu Zhongcheng Yu 《通讯和计算机(中英文版)》 2010年第3期64-68,共5页
关键词 移动对象数据库 网格模型 空时 建模 动态信息 数据库技术 运动物体 移动物体
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Additional Space Dimension in Bound Spaces Created by a Central Object
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作者 T. V. B. S. Satyanarayana Murthy 《Journal of Applied Mathematics and Physics》 2015年第2期130-133,共4页
Space is a common entity in any static or dynamic system of objects whether the system is a bound system or an open system. Space is described by either measured or abstract dimensions. All motions, momentum and energ... Space is a common entity in any static or dynamic system of objects whether the system is a bound system or an open system. Space is described by either measured or abstract dimensions. All motions, momentum and energy transfers take place in space in any given system of objects. By understanding space we understand many physical phenomena happening in space. One method is to observe similarities among phenomena, deduce possible relations and validate the relations through known results. De Broglie wavelength for matter waves is a typical theorized abstract dimension existence of which is established through experiments later. In this paper, the author studies two bound spaces in two bound systems, namely, atomic bound systems and gravitationally bound systems. Both these bound systems have similar characteristics;they have inertial masses in motion with constant kinetic energies for a given orbital distance around the respective central object. In atomic bound space, the central object is the central positive charge which plays the role of creating the bound space around it. In gravitationally bound space, it is the central mass that plays the same role. Thus for these two bound systems a common constitutive relation between the energies of inertial masses in kinetic state, their distance from central object could be present. By noticing the similarities of the two systems, the author proposes such a relation through introduction of an additional space dimension. The existence of the proposed additional dimension is proved in this paper by considering hydrogen atom for atomic bound space and by considering any gravitational system for gravitationally bound space. Though the magnitude of the additional space dimension is different in both the situations, the additional space dimension exists. It is observed that in hydrogen atom the additional space dimension is a constant for the given positive charge of hydrogen atom when electron is in any energy state having principal quantum number of any value from 1 to 5 and with the orbital quantum number zero. For other quantum numbers additional space dimension exists. In the case of gravitational bound space, the additional space dimension is constant for a given mass of the central object for any energy of orbiting inertial mass. The author concludes that total mass energy of an inertial mass having a constant kinetic energy in any bound space is related to an additional space dimension defined by the constitutional property of the central object creating that bound space. As the relation is generic, it throws opportunity to examine other known similar macro, micro or quantum bound spaces created by central objects with different constitutive properties. 展开更多
关键词 CENTRAL object BOUND space GRAVITATIONAL Charge Additional space Dimension Energy Mass
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Multi-Scale Object Perception with Embedding Textural Space
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作者 Kewei Wu Zhao Xie Jun Gao 《International Journal of Intelligence Science》 2012年第2期32-39,共8页
This paper mainly focuses on the issues about generic multi-scale object perception for detection or recognition. A novel computational model in visually-feature space is presented for scene & object representatio... This paper mainly focuses on the issues about generic multi-scale object perception for detection or recognition. A novel computational model in visually-feature space is presented for scene & object representation to purse the underlying textural manifold statistically in nonparametric manner. The associative method approximately makes perceptual hierarchy in human-vision biologically coherency in specific quad-tree-pyramid structure, and the appropriate scale-value of different objects can automatically be selected by evaluating from well-defined scale function without any priori knowledge. The sufficient experiments truly demonstrate the effectiveness of scale determination in textural manifold with object localization rapidly. 展开更多
关键词 object PERCEPTION Scale space Textural MANIFOLD Quad-Tree Structure NONPARAMETRIC Estimation
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地月空间探测光学载荷技术研究
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作者 焦建超 夏莉敏 《航天返回与遥感》 北大核心 2025年第5期169-178,共10页
地月空间作为深空探索的战略要地,其态势感知能力建设对保障航天活动安全、维护国家太空权益至关重要。文章首先分析了天基探测在地月空间探测中的应用优势,调研了国际上地月空间探测发展现状。重点针对地球同步轨道带、地月转移轨道带... 地月空间作为深空探索的战略要地,其态势感知能力建设对保障航天活动安全、维护国家太空权益至关重要。文章首先分析了天基探测在地月空间探测中的应用优势,调研了国际上地月空间探测发展现状。重点针对地球同步轨道带、地月转移轨道带及近月轨道带三个典型区域,剖析目标特点与探测需求,提出差异化探测方案以实现重点区域连续覆盖:利用太阳同步晨昏轨道星座覆盖地球同步轨道带;部署于地球同步轨道与月球相关轨道的载荷监视地月转移轨道带;通过近月轨道载荷组网覆盖近月轨道带。同时,以地球同步轨道带探测为例,设计了轻小型高性能光学载荷方案。最后总结了地月空间探测载荷轻小型化、智能化、平台一体化的发展趋势,为中国地月空间探测能力建设提供参考。 展开更多
关键词 地月空间 空间目标探测 空间态势感知 轻量化 空间光学
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空间核反应堆电源风险安全目标研究
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作者 胡文军 李世锐 +2 位作者 任丽霞 骆志平 刘森林 《原子能科学技术》 北大核心 2025年第9期2042-2047,共6页
本文针对空间核反应堆电源(简称空间堆)在各阶段面临的安全风险特点,参考传统地面核设施安全目标的制定方法,研究适用于空间堆的安全目标体系。通过分析空间堆发射阶段的安全风险以及核电厂安全目标的制定过程及内涵,结合航天行业安全... 本文针对空间核反应堆电源(简称空间堆)在各阶段面临的安全风险特点,参考传统地面核设施安全目标的制定方法,研究适用于空间堆的安全目标体系。通过分析空间堆发射阶段的安全风险以及核电厂安全目标的制定过程及内涵,结合航天行业安全风险定量化数据,参考国际空间堆安全的相关法规标准,系统性地提出了“定性-定量-概率”3个层次的空间堆风险安全目标体系:定性安全目标要求保护地球生态圈免受明显辐照风险、对外层空间轨道无显著污染附加风险、对航天器无额外事故风险;定量安全目标限定设计基准事故对个人的最大有效剂量≤5 mSv,且空间堆故障导致航天器灾难性故障的风险需与其他电源相当;概率安全目标包括发射事故下意外临界条件概率小于10^(-3)、运行阶段因堆故障致航天器灾难性故障概率小于10^(-2)、运行阶段航天器解体概率小于10^(-5)。本文提出空间堆3个层次的风险安全目标体系,可系统性指导空间堆安全设计与风险评估,为空间堆安全标准制定提供理论支撑。 展开更多
关键词 空间核反应堆 风险 安全目标
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Concept of Application of Nuclear Explosive Devices in a Space-Rocket Complex to Protect the Earth against AsteroidaI-Cometary Danger
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作者 Vladimir Grigoryevich Degtyar Victor Alexandrovich Volkov Sergey Timofeyevich Kalashnikov 《Journal of Physical Science and Application》 2011年第3期188-195,共8页
Herein an estimation is given to the efficiency of nuclear explosive devices in a space-rocket complex to withdraw Hazardous Space Objects (HS0)-asteroids and cometary nuclei from the trajectories leading to their d... Herein an estimation is given to the efficiency of nuclear explosive devices in a space-rocket complex to withdraw Hazardous Space Objects (HS0)-asteroids and cometary nuclei from the trajectories leading to their dangerous entry to the atmosphere and falling to the Earth. A conceptual choice of parameters and schemes of application of nuclear explosive devices in impact modules of space-rocket complexes to ensure asteroidal-cometary safety was made. 展开更多
关键词 space-rocket complex to protect the Earth asteroidal-cometary danger space object (SO) hazardous space object (HSO) nuclear explosive device (NED).
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商业综合体户外步行活动空间品质评价及优化策略——以沪宁地区3个样本为例
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作者 张芳 郑云豪 朱柳蒙 《中国名城》 2025年第3期87-96,共10页
随着体验经济的兴起,商业综合体作为现代城市的重要名片,其空间品质与体验构建在城市建设中扮演着越来越重要的角色。其中,户外步行活动空间作为商业空间的延伸,直接影响着商业综合体的对外形象和活动体验。研究选取沪宁地区典型的商业... 随着体验经济的兴起,商业综合体作为现代城市的重要名片,其空间品质与体验构建在城市建设中扮演着越来越重要的角色。其中,户外步行活动空间作为商业空间的延伸,直接影响着商业综合体的对外形象和活动体验。研究选取沪宁地区典型的商业综合体样本,从使用者体验的角度切入其空间营造,基于“空间-体验”的互动进行户外步行活动空间品质评价分析,主客观相结合对各影响因子进行绩效讨论,为商业综合体户外步行活动空间的品质优化提供思路与路径。首先,通过词频筛选方法构建户外活动空间品质的三级评价体系;其次,采集空间数据以进行客观分析,与使用者主观满意度评分进行比对分析;最后,利用绩效分析法梳理各影响因子的改进优先级,并提出相应的优化策略。 展开更多
关键词 商业综合体 户外空间 主客观评价 优化策略
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基于动态储位分配策略的自动化立库多目标优化
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作者 陈娟 郑旺 +1 位作者 刘倩倩 鲁斌 《系统仿真学报》 北大核心 2025年第6期1435-1448,共14页
基于动态储位分配策略,以整库为优化主体,以满足安全性、合理性的货位分配目标,以满足各堆垛机作业时间最短、作业能耗最低的调度目标,构建二阶段优化模型。上下层均为典型多目标优化问题,上层模型的理想解将作为下层模型的初始条件。... 基于动态储位分配策略,以整库为优化主体,以满足安全性、合理性的货位分配目标,以满足各堆垛机作业时间最短、作业能耗最低的调度目标,构建二阶段优化模型。上下层均为典型多目标优化问题,上层模型的理想解将作为下层模型的初始条件。采用多目标遗传算法求解优化模型的理想解,并通过熵权法对各个目标分配权重。结果表明:在货物离散排布状态下动静态分配策略无明显差异,但聚合排布状态下动态分配策略对货位分配与堆垛机调度的综合优化效果明显优于静态分配,且货物质量影响整体优化效果;大质量情况下安全性优化效果更为显著而较小质量情况下合理性与堆垛机调度优化效果更为明显。 展开更多
关键词 自动化立体库 货位分配 调度优化 多目标优化 多目标遗传算法
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考虑工人协作的多人共站混流时空拆卸线平衡问题优化
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作者 张则强 谢心澜 +1 位作者 郭磊 刘思璐 《华中科技大学学报(自然科学版)》 北大核心 2025年第6期37-45,共9页
针对多人共站拆卸模式中对工人协作、空间限制考虑的不足,结合实际拆卸中多产品混流拆卸和任务分类的必要性,提出了考虑工人协作的多人共站混流时空拆卸线平衡问题.首先,建立了所提问题的混合整数规划模型,旨在同时优化节拍时间、空闲... 针对多人共站拆卸模式中对工人协作、空间限制考虑的不足,结合实际拆卸中多产品混流拆卸和任务分类的必要性,提出了考虑工人协作的多人共站混流时空拆卸线平衡问题.首先,建立了所提问题的混合整数规划模型,旨在同时优化节拍时间、空闲均衡指标、工人总数和任务惩罚函数四个目标.其次,提出了一种改进Jaya算法,根据问题特征采用三层整数编码方式,设计两阶段解码和对原始操作进行离散化改进处理,以保证所产生的解均可行.然后,通过一个小规模实例的求解验证了所建模型和所提算法的正确性和有效性.最后,将所建模型和所提算法应用于一个汽车拆卸实例中,得到多种拆卸方案供决策者灵活选择. 展开更多
关键词 多人共站 工人协作 时间和空间 改进Jaya算法 多目标优化
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低轨空间目标无控再入的自适应寿命预报方法
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作者 陈顺毅 杨震 +1 位作者 王华 罗亚中 《宇航学报》 北大核心 2025年第3期555-567,共13页
为提高轨道寿命预报的速度及精度,满足太空态势感知任务中的应用需求,提出了一种低轨空间目标无控再入的自适应寿命预报方法。首先,建立了面向轨道寿命快速预报的半解析动力学模型。其次,提出了一种结合滑动窗口和多项式近似清理策略的... 为提高轨道寿命预报的速度及精度,满足太空态势感知任务中的应用需求,提出了一种低轨空间目标无控再入的自适应寿命预报方法。首先,建立了面向轨道寿命快速预报的半解析动力学模型。其次,提出了一种结合滑动窗口和多项式近似清理策略的初始弹道系数反演方案,以降低初始参数不确定性对预报精度的影响。然后,通过数值平均的方法计算预报模型中存留的定积分项,并提出了一种基于轨道高度分区的自适应求解算法实现轨道寿命的快速预报。最后,通过数值仿真验证了所提方法的有效性。结果表明,所提方法对不同类型和状态下的目标具有较高的寿命预报精度,且求解效率相较现有预报方法有较大提升。研究结果可为未来大量空间目标的寿命预报提供快速计算工具及分析依据。 展开更多
关键词 低轨空间目标 无控再入 轨道寿命预报 半解析模型 初始弹道系数反演 自适应求解
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双臂空间机器人球形外包络抓捕控制 被引量:1
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作者 夏新会 贾英宏 张军 《北京航空航天大学学报》 北大核心 2025年第5期1673-1683,共11页
针对双臂空间机器人抓捕目标的控制问题,设计一种利用双臂球形外包络捕获运动目标的抓捕方案。为避免机械臂抓捕时推离目标,进行双臂球形外包络的结构设计,通过几何特性约束目标运动,避免目标逃逸。根据球形外包络与目标的接触碰撞条件... 针对双臂空间机器人抓捕目标的控制问题,设计一种利用双臂球形外包络捕获运动目标的抓捕方案。为避免机械臂抓捕时推离目标,进行双臂球形外包络的结构设计,通过几何特性约束目标运动,避免目标逃逸。根据球形外包络与目标的接触碰撞条件,分别建立碰撞检测模型与精确的球形外包络接触碰撞模型,利用球形外包络与目标之间的摩擦降低目标运动速度,为机械臂提供安全的抓捕环境。基于视觉伺服方法设计2部机械臂抓捕运动目标的实时期望轨迹,并基于逆动力学方法完成双臂协调抓捕控制律的设计。完成闭环控制系统仿真实验,自由漂浮双臂空间机器人对立方星目标进行球形外包络抓捕控制,仿真结果验证了所设计的球形外包络抓捕控制器的有效性。 展开更多
关键词 双臂空间机器人 球形外包络 目标抓捕 轨迹规划 碰撞检测 接触力建模
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