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Automatic Abstraction of Multi-Discipline Analog Models for Efficient Functional Simulation

机译:高学科模拟模型的自动抽象,以实现高效功能模拟

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Multi-discipline components introduce problems when inserted within virtual platforms of Smart Systems for functional validation. This paper lists the most common emerging problems and it proposes a set of solutions to them. It presents a set of techniques, unified in an automatic abstraction methodology, useful to achieve fast analog mixed-signal simulation even when different physical disciplines and modeling styles are combined into a single analog model. The paper makes use of a complex case study.lt deals with multiple-discipline descriptions, non-electrical conservative models, non-linear equation systems, and mixed time/frequency domain models. The original component behavior has been modeled in Verilog-AMS by using electrical, mechanical and kinematic equations. Then, it has been abstracted and integrated within a virtual platform of a mixedsignal smart system for efficient functional simulation.
机译:多学科组件在智能系统虚拟平台内插入功能验证时介绍问题。本文列出了最常见的新出现问题,并为他们提出了一系列解决方案。它提出了一组技术,统一在自动抽象方法中,即使将不同的物理学科和建模样式组合成单个模拟模型,也可以实现快速模拟混合信号仿真。本文利用复杂的案例研究.LT处理多学科描述,非电保模模型,非线性方程系统和混合时间/频域模型。原始组件行为通过使用电气,机械和运动学方程在Verilog-AMS中进行了建模。然后,它已经抽象并集成在混合信号智能系统的虚拟平台内,以实现有效的功能模拟。

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