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Using VHDL-AMS-Based Simulation Technology for the Design and Verification of Mechatronic Systems

机译:基于VHDL-AMS的仿真技术进行了机电系统的设计和验证

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Software and electronic circuits are commonly used with mechanical components today. In the past, the design of functionally sufficient and robust mechanical components was always completed by experienced mechanical engineers. This is changing, however. The requirements of additional functionality and reduced price have led to the introduction of mechatronics - mechanical parts augmented with electronic hardware controlled by software. Designing and verifying such a system is a challenge that requires a change in methodology as two very different engineering disciplines collide. This paper illustrates a simulation-based design methodology for software-controlled, electro-mechanical components using an autonomous mobile robot as an example. VHDL-AMS, the Analog-Mixed-Signal extension (IEEE 1076.1) of the digital hardware description language VDHL, was used as the main modelling language. Starting with the drivetrain, the complete system was modeled and simulated with VHDL-AMS, moving from abstract, behavioral level to SPICE transistor level. The goals of simulating on different abstraction levels vary from estimating the power consumption to verifying the software control algorithm.
机译:软件和电子电路通常与机械组件一起使用。过去,经验丰富的机械工程师始终完成功能充足和强大的机械部件的设计。然而,这变化了。额外功能和降低价格的要求导致机电一体化的引入 - 用软件控制的电子硬件增强了机械部件。设计和验证这种系统是一个挑战,需要改变方法的变化,这是两个非常不同的工程学科碰撞。本文说明了使用自主移动机器人作为示例的基于软件控制的机电部件的基于模拟的设计方法。 VHDL-AMS,数字硬件描述语言VDHL的模拟混合信号扩展(IEEE 1076.1)用作主要建模语言。从动力传动系统开始,通过VHDL-AMS进行建模和模拟完整的系统,从抽象,行为水平移动到SPICE晶体管水平。模拟不同抽象级别的目标因估算软件控制算法而异。

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