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《中国航空学报》2020,33(4):1288-1298
The degradation of components in complex mechatronic systems involves multiple physical processes which will cause coupling interactions among nodes in the system. The interaction of nodes may be carried out not only by physical connections but also by the environment which cannot be described by single network using the traditional methods. In order to give out a unified model to quantitatively describe the coupling degradation spreading by both physical connections and environment, a novel Energy-Flow-Field Network (EFFN) and a coupling degradation model based on EFFN are proposed in this paper. The EFFN is driven by energy flow and the state transition of spatially related nodes is triggered by the dissipation energy. An application is conducted on aviation actuation system in which the degradation spreading by fluid-thermal-solid interaction is considered. The degradation path and the most probable fault reason can be obtained by combining the state transition and energy output of nodes, which is consistent with the given scenario. 相似文献
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Robustness of complex networks has been studied for decades,with a particular focus on network attack.Research on network repair,on the other hand,has been conducted only very lately,given the even higher complexity and absence of an effective evaluation metric.A recently proposed network repair strategy is self-healing,which aims to repair networks for larger compo nents at a low cost only with local information.In this paper,we discuss the effectiveness and effi ciency of self-healing,which limits network repair to be a multi-objective optimization problem and makes it difficult to measure its optimality.This leads us to a new network repair evaluation metric.Since the time complexity of the computation is very high,we devise a greedy ranking strategy.Evaluations on both real-world and random networks show the effectiveness of our new metric and repair strategy.Our study contributes to optimal network repair algorithms and provides a gold standard for future studies on network repair. 相似文献
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李宏彦%张其劭%郭高凤 《宇航材料工艺》2006,36(Z1):96-99
介绍了用准光腔法自动测量某大面积介质片上不同位置的复介电常数,并且做了误差分析.实验表明,此系统可在3 mm波段下对大面积材料的复介电常数分布进行测量,具有大面积、快速、不接触测量且分辨瑕疵的特点.误差范围为|△ε'/ε'|≤10%;|△tanδ |≤20%tanδ+1×10-4. 相似文献
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随着飞机气动、隐身等性能要求的提高,飞机外形曲率更加异形化,大量应用复杂凸凹曲率蒙皮,传统的拉伸成形方法已经不能完全满足新一代飞机蒙皮加工的要求。基于生产某型号飞机复杂凸凹曲率蒙皮这一背景,介绍了充液成形基本原理及关键技术,利用有限元数值模拟方法,分析板材充液成形过程中液室压力、厚度减薄率、板材失稳及贴胎度的变化规律,优化工艺参数,并且根据数值模拟结果指导工业生产。理论分析和现场实践证明:充液成形技术为复杂凸凹曲率蒙皮零件的制造提供了新的工艺方法,满足新一代飞机的凸凹曲率外形蒙皮的制造要求。 相似文献
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Fuyu Sun Jianping Zhou Zheyao Xu 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(1):189-206
This study proposes a new simulation platform named Simulation Integrated Management (SIM) for the analysis of parallel and distributed systems. The platform eases the process of designing and testing both applications and architectures. The main characteristics of SIM are flexibility, scalability, and expandability. To improve the efficiency of project development, new models of early-warning satellite system were designed based on the SIM platform. Finally, through a series of experiments, the correctness of SIM platform and the aforementioned early-warning satellite models was validated, and the systematical analyses for the orbital determination precision of the ballistic missile during its entire flight process were presented, as well as the deviation of the launch/landing point. Furthermore, the causes of deviation and prevention methods will be fully explained. The simulation platform and the models will lay the foundations for further validations of autonomy technology in space attack-defense architecture research. 相似文献