混合动力系统的动态验证

N. Pakulin
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引用次数: 1

摘要

在最近的十年里,我们面临着用数字控制回路取代模拟控制回路的积极挑战。即使对于关键系统,也有正在进行的数字控制项目:电力工业的“智能电网”,航空航天的“集成模块化航空电子设备”,制造业的“智能织物”等。大规模数字控制通道的引入增加了故障的风险,可能导致重大损失。这些风险需要新的分析和验证方法,包括混合系统建模和基于模型的验证。综述了现有的混合动力系统验证方法,介绍了混合动力系统模型动态验证试验台的体系结构。
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Dynamic verification of hybrid systems
In the recent decade we face aggressive replacement of analog control loops with digital ones. Even for critical systems there are ongoing projects for digital control: “Smart Grids” in power industry, “Integrated Modular Avionics” in aerospace, “Smart Fabrics” in manufacturing, etc. Introduction of large scale digital control channels raises the risks of faults that might result in heavy losses. Those risks call for new methods of analysis and verification, including modeling hybrid systems and model-based verification. The paper overviews a number of existing approaches to verification of hybrid systems and introduces architecture of a test bed for dynamic verification of models of hybrid systems.
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