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1.
针对永磁同步电机(PMSM)驱动系统中,只利用信号控制器或能量控制器难以兼顾良好的动态特性与较低的能量损耗,提出了基于信号与能量的协调控制策略。首先,利用反步法设计信号控制器,以加快系统的动态响应。然后,从能量的角度出发,利用无源控制中的Euler-Lagrange(EL)模型设计能量控制器,以降低系统稳态运行时的能量损耗。进一步设计协调函数,将信号控制器与能量控制器进行协调,从而构成协调控制器。另外,当负载转矩未知时,设计了负载转矩观测器用来估计负载转矩。在MATLAB/Simulink平台上对所设计的协调控制系统进行了仿真,仿真结果表明,所提出的协调控制策略能够充分结合信号控制器和能量控制器的优点,获得良好的动态和稳态性能,减小PMSM损耗。  相似文献   
2.
通过对企业知识生态系统协同机制的研究,设计知识生态系统内生和外生协同机制.内生协同机制包括企业知识生态系统战略协同机制、内部环境协同机制、领导协同机制、知识主体协同机制、激励协同机制的设计.外生协同机制包括外部环境协同机制设计、行业发展协同机制设计、技术协同机制设计,从而保障企业知识生态系统正常运行.  相似文献   
3.
在载人航天工程交会对接任务阶段,北京航天飞行控制中心首次实现了真正意义上的两目标协同控制,完成了协同体系构建、协同模式研究、协同技术攻关、协同方案设计、协同系统研制的完整技术演进过程.本文主要目标是对交会对接任务北京中心的两目标协同控制技术研究成果进行总结,主要涉及在交会对接任务协同控制技术体系构建、两目标关联计划工作模式、两目标注入安排协同设计与实施的经验与不足,通过对协同系统在交会对接任务中的实战应用情况,分析交会对接任务在协同自动化手段方面的成果和后续改进完善方向,为后续空间站任务设计和实现更复杂的多目标协同控制体系积累经验和教训.  相似文献   
4.
This paper focused on online scheduling of distributed Earth observation satellite system in a dynamic environment. The objective was to maximize the total profit of the overall system by efficiently coordinating the different satellites with stochastic arrival of urgent tasks, subject to rigid communication and observation time window constraints. We formulated this problem as a single-task, single-robot, time-extended assignment problem with intra-schedule dependency using the multi-robot task assignment taxonomy and formulated the sub-problem after releasing urgent tasks in a mixed-integer linear programming model. We first described the online scheduling algorithm for a single satellite, then we proposed the modified consensus-based bundle algorithm (m-CBBA) and modified asynchronous consensus-based bundle algorithm (m-ACBBA) with synchronous and asynchronous communication, respectively. Compared with initial versions of CBBA and ACBBA, the modified versions added the communication loop prediction phases to efficiently utilize scarce communication opportunities and reduce the communication requirements. Additionally, we introduce two contract net protocol (CNP)-based algorithms for comparison, respectively SingleItem-CNP-based (SI-CNP) algorithm and Batch-CNP-based (BA-CNP) algorithm. Computational experiments indicated that both the total profit and percentage of scheduled urgent tasks achieved by the m-ACBBA and m-CBBA algorithms were much higher than those achieved by both SI-CNP and BA-CNP. Additionally, the number of communications needed by either m-ACBBA or m-CBBA algorithm was lower than that by SI-CNP. When the communication cost in the system is high, the m-CBBA algorithm is preferred because it balances the profit and the required number of communications. When the communication cost is low, the m-ACBBA algorithm is preferred because it achieves high total profit and high percentage of scheduled urgent tasks.  相似文献   
5.
提出了在复合材料飞机部段装配过程中采用无余量装配的方法。在产品设计和制造过程中采用数字量传递的方式可减少误差积累,提高协调精度。关键零部件的装配、工装制造等采用激光跟踪仪等数字化测量设备可以确保精确性,并能在装配工艺设计阶段就考虑零部件间的协调安装精度及公差分配要求。通过分析复合材料部段装配特点,并以复合材料机身典型结构为例进行应用研究,阐述了在三维数字化装配过程中具有协调关系的关键零部件无余量装配的工艺流程、方法,从而可实现零部件一次装夹、加工及无反复装配,使装配质量具有良好的稳定性。  相似文献   
6.
以飞机数字化制造装配为依托,通过对飞机钣金组件在模拟量协调路线和数字量协调路线下产生误差环节的比较,着重分析了飞机钣金组件在数字化装配过程中产生的系统误差和随机误差的因素和造成误差累积的原因。针对减小在钣金零件制造路线、钣金组件装配路线、温度场变化、振动场变化、应力变化等环节的累积误差提出了改进措施。  相似文献   
7.
无人机双机编队攻击作战效能评估   总被引:1,自引:0,他引:1  
针对无人机双机编队任务协同/非协同攻击作战情况,运用概率论及搜索理论,建立了目标搜索、识别、攻击作战的效能评估数学模型,在此数学模型基础上分析了任务协同和非协同条件下的攻击任务成功率及影响因素,结果得出双机协同、非协同在不同作战情况下有着各自的优势。分析结果对实际作战安排做出了指导性原则,对提高无人机集群作战效能具有实际意义。  相似文献   
8.
研究了无向信息交互条件下的多卫星姿态同步和跟踪问题,分别在模型参数精确已知和存在模型参数不确定性的情形下设计分散式协同控制算法。当模型参数精确已知时,基于滑动模态变量设计的协同控制力矩,实现了编队卫星姿态的同步机动,即保证编队卫星姿态的同步,并同时跟踪期望的时变参考姿态轨迹。当在轨卫星存在模型参数不确定性和常值未知扰动力矩时,提出了一种自适应协同控制律,仍能实现多卫星姿态的同步机动。基于Lyapunov-Krasovskii的分析表明,当星间链路存在任意未知的定常通讯时延时,本文设计的控制器有效。数值仿真算例验证了本文提出的控制算法。  相似文献   
9.
《中国航空学报》2016,(2):305-315
With the implementation of environmental protection, sustainable development and conservation-oriented policies, components and parts of thin-walled welded tubes have gained increasing application in the aircraft and automotive industries because of their advantages: easily achieving forming and manufacturing process at low cost and in a short time. The current research on welded tube plastic forming is mainly concentrated on tube internal high-pressure forming, tube bending forming, and tube spinning forming. The focuses are on the material properties and characterization of welded tubes, finite element modeling for welded tube forming, and inhomogeneous deformation behavior and the mechanism and rules of deformation coordination in welded tube plastic forming. This paper summarizes the research progress in welded tube plastic forming from these aspects. Finally, with a focus on the urgent demand of the aviation, aerospace and automotive industries for high-strength and light-weight tubes, this paper discusses the development trends and challenges in the theory and technology of welded tube plastic forming in the future. Among them,laser tailor-welded technology will find application in the manufacture of high-strength steel tubes.Tube-end forming technology, such as tube flaring and flanging technology, will expand its application in welded tubes. Therefore, future studies will focus on the FE modeling regarding how to consider effects of welding on residual stresses, welding distortions and microstructure, the inhomogeneous deformation and coordination mechanism of the plastic forming process of tailor-welded tubes, and some end-forming processes of welded tubes, and more comprehensive research on the forming mechanism and limit of welded tubes.  相似文献   
10.
The architecture of digital sheet metal manufacturing system is proposed based on the classification of sheet metal manufacturing information.The essence of digital manufacturing is the definition,management and transfer of information,and the key technologies are brought forward and described.It is pointed out that knowledge-based manufacturing elements design is necessary to make digital technology efficient.The management of all kinds of sheet metal manufacturing element information is to build single source of manufacturing data.Multi-state model-based digital transfer and coordination method is designed to provide a foundation for digital manufacturing of aircraft sheet metal part.The application of digital sheet metal manufacturing is exemplified with an aircraft sheet metal part.The application result is compared to that of the traditional analog transfer technology.It is shown that the developed technology can improve part quality,shorten manufacturing time and lower manufacturing cost.  相似文献   
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