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基于层次赋时CPN的网络系统建模与可生存性优化
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作者 熊琦 王丽娜 +1 位作者 刘陶 杨墨 《系统仿真学报》 CAS CSCD 北大核心 2009年第19期6303-6308,共6页
生存性分析是生存性增强的前提条件。针对当前生存性分析方法动态建模和复杂系统建模能力差的缺陷,提出了一种基于层次赋时CPN(HTCP-nets)的系统可生存性分析法,应用建模仿真工具CPN Tools对网络系统的生存环境和服务流程进行建模分析,... 生存性分析是生存性增强的前提条件。针对当前生存性分析方法动态建模和复杂系统建模能力差的缺陷,提出了一种基于层次赋时CPN(HTCP-nets)的系统可生存性分析法,应用建模仿真工具CPN Tools对网络系统的生存环境和服务流程进行建模分析,求得了关键服务请求的平均响应时间、平均服务时间等表征系统生存能力的指标,最后根据分析结果给出了进行系统可生存增强的方法。 展开更多
关键词 可生存性 层次赋时CPN 系统行为建模 生存环境 可生存性增强
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Visualization aided system of hydropower engineering management
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作者 Huang Yuan Nie Miaojing Yan Hongyan 《Engineering Sciences》 2012年第1期91-96,共6页
For the purpose of realizing the information visualization of hydropower engineering management, we construeted three kinds of graphics models sorted by hierarchy for system modelling, employed the construction simula... For the purpose of realizing the information visualization of hydropower engineering management, we construeted three kinds of graphics models sorted by hierarchy for system modelling, employed the construction simulation system to simulate the real-time construction behaviours, introduced the graphics rendering system to organize and update the virtual scene, and designed the interaction system to respond to the user-initiated and simulation-initiated events. So, the real-time, interactive visualization aided system of hydropower engineering management is developed. Eventually, the effectiveness and capabilities of the system are showed through the application examples in China. 展开更多
关键词 hydropower engineering engineering management VISUALIZATION REAL-TIME interactivity
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New 0D/1D Physical Approach for Modelling the Gas Dynamics Behavior Inside the Intake System of an Engine
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作者 David CHALET Mohamad YASSINE Jérome MIGAUD 《Journal of Thermal Science》 SCIE EI CAS CSCD 2018年第4期394-403,共10页
The competition among carmakers to introduce the most innovative solutions is growing day by day. Since few years, simulation is being used widely in automotive industries. Instead of building costly prototypes and ex... The competition among carmakers to introduce the most innovative solutions is growing day by day. Since few years, simulation is being used widely in automotive industries. Instead of building costly prototypes and expending fuel for doing tests on a real engine, simulation became a good solution before taking new decisions. Concerning the study of gas dynamics and pressure wave's propagation in the intake system of an internal combustion engine, a precise modelling is needed in order to obtain good results. Unfortunately, the computational time for these simulations is considered as high compared to the real time. The main objective of the new approach presented in this paper, is to reduce simulation time of models in the internal combustion engine simulation code, allowing them to accomplish many engine simulations faster than one-dimensional non-linear approach. A transfer function is defined to link directly the relative pressure and the air mass flow rate. In a second time, the model is included into an internal combustion engine simulation code. The results obtained with this code are compared to experimental ones which are measured on a one-cylinder engine test bench. A good agreement is obtained between the experimental results and the numerical one. The model was improved by adding a transfer function for temperature evolution. The convergence time is then reduced as well as the global simulation time of the model. 展开更多
关键词 gas dynamics compressible flow transfer function accuracy simulation time engine
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