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Towards a visual modeling approach to designing microelectromechanical system transducers

机译:朝着视觉建模方法设计微机电系统换能器

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In this paper, we address initial design capture and system conceptualization of microelectromechanical system transducers based on visual modeling and design. Visual modeling frames the task of generating hardware description language (analog and digital) component models in a manner similar to the task of generating software programming language applications. A structured topological design strategy is employed, whereby microelectromechanical foundry cell libraries are utilized to facilitate the design process of exploring candidate cells (topologies), varying key aspects of the transduction for each topology, and determining which topology best satisfies design requirements. Coupled-energy microelectromechanical system characterizations at a circuit level of abstraction are presented that are based on branch constitutive relations and an overall system of simultaneous differential and algebraic equations. The resulting design methodology is called visual integrated-microelectromechanical VHDL-AMS interactive design (VHDL-AMS is visual hardware design language for analog and mixed signal).
机译:在本文中,我们解决了基于视觉建模和设计的微机电系统换能器的初始设计捕获和系统概念化问题。可视化建模以类似于生成软件编程语言应用程序的任务的方式来构建生成硬件描述语言(模拟和数字)组件模型的任务。采用结构化的拓扑设计策略,从而利用微机电铸造单元库促进探索候选单元(拓扑),改变每种拓扑结构的转导关键方面以及确定哪种拓扑最能满足设计要求的设计过程。提出了基于分支本构关系以及联立微分和代数方程的整体系统的抽象级耦合能量微机电系统的表征。最终的设计方法称为视觉集成微机电VHDL-AMS交互式设计(VHDL-AMS是用于模拟和混合信号的视觉硬件设计语言)。

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