SystemC-MDVP modelling of pressure driven microfluidic systems

V. Fernández, Elier Wilpert, Herique Isidoro, C. Aoun, F. Pêcheux
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引用次数: 6

Abstract

Systems composed by multiple physical domains (i.e. mechanical, biological, optical, fluidic, etc.) and usually controlled by an embedded HW/SW circuit cannot, up to date, be jointly simulated in order to correctly specify, dimension and verify these multi-domain microelectronics assisted systems at an early system level stage. This paper describes part of the work that it is being carrying out (under the CATRENE CA701 project) in order to define an open framework, based on SystemC-AMS, with the aim to extend this language to support multiple physical domains. The proposed extensions for being able to model a micro-fluidic system are going to be exposed. Two approaches have been selected: to model the fluid analytically based on the Poiseuille flow theory and to model the fluid numerically following the SPH (Smoothed Particle Hydrodynamics) approach. Both modeling techniques are, by now, encapsulated under the TDF (Timed Data Flow) MoC (Model of Computation) of SystemC-AMS.
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压力驱动微流体系统的SystemC-MDVP建模
由多个物理领域(即机械、生物、光学、流体等)组成的系统通常由嵌入式硬件/软件电路控制,迄今为止,为了在早期系统级阶段正确指定、尺寸和验证这些多领域微电子辅助系统,无法联合模拟。本文描述了它正在进行的部分工作(在CATRENE CA701项目下),目的是定义一个基于SystemC-AMS的开放框架,旨在扩展该语言以支持多个物理域。提出的扩展能够模拟微流体系统将被暴露。选择了两种方法:基于泊泽维尔流动理论的流体解析建模和遵循SPH(平滑粒子流体动力学)方法的流体数值建模。到目前为止,这两种建模技术都封装在SystemC-AMS的TDF(定时数据流)MoC(计算模型)下。
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