连续时间系统的事件驱动建模

Dushyant Juneja
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引用次数: 5

摘要

诸如扩展功能集和算法设计等因素推动现代soc朝着更大和紧密耦合的混合信号内容发展。传统的数字hdl和面向验证的语言通过强大的混合信号建模工具来支持这一发展,以早期和改进数字模拟(反之亦然)交互的验证。在这种情况下,AMS验证工程师必须找到克服传统事件驱动数字模拟器中连续时间建模挑战的方法。本文将重点介绍这种努力的努力和优化,揭示上述建模技术的最佳点、瓶颈和抽象需求。讨论了发现的瓶颈,突出的连续时间滤波器和反馈电路的优化,并详细介绍了新的仿真问题,如数值不稳定性。结果表明,虽然这种建模方法可以提供近100倍的速度提升,但如果应用不当,它也会导致严重的速度损失(这里是200倍的速度降低)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On Event Driven Modeling of Continuous Time Systems
Factors such as expanding feature set and algorithmic designs drive modern SoCs towards larger and tightly coupled mixed signal content. Traditional digital HDLs and Verification oriented languages come forth to support this development by evolving with powerful mixed signal modeling facilities for early and improved verification of digital-analog (and vice-versa) interaction. Under such circumstances, it becomes essential for the AMS verification engineer to figure out ways for overcoming continuous time modeling challenges in the traditionally event driven digital simulators. The paper intends to highlight the endeavors and optimizations for such an effort, uncovering the aforesaid modeling technology's sweet spots, bottlenecks and abstraction requirements. Optimizations are discussed for the bottlenecks discovered, prominently continuous time filters and feedback circuits, and elaborations are presented on new simulation concerns such as numerical instability. Results are presented reasserting that while such a modeling approach can present almost 100x speed enhancement, it can also result in a severe speed penalty when misapplied (200x slower, here).
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