Modeling power consumption at system-level for design of power integrity-aware AMS-circuits

Xiao Pan, Javier Moreno Molina, C. Grimm
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引用次数: 4

Abstract

Among many challenges in designing reliable integrated circuits and embedded systems, the power integrity (PI-) issue is a particularly critical one. Researches and CAD tools have been carried out in the last decades. However, all of them address the problem from a circuit-level perspective. Moreover, the PIproblem cannot be completely verified until layout, the final stage of the design phase. In this paper we propose a new approach to model power consumption that allows PI-simulation at the system level of abstraction, by extending the state-machine based power estimation method. For this purpose, we model power consumption in power states which also includes a statistical model, and in state-transitions modeled by transfer function. The proposed approach is implemented as part of a simulation framework, which uses SystemC-AMS, and is applied on a battery management IC design.
基于功率完整性感知的ams电路的系统级功耗建模
在设计可靠的集成电路和嵌入式系统的诸多挑战中,电源完整性(PI-)问题是一个尤为关键的问题。在过去的几十年里,研究和CAD工具已经进行了。然而,它们都是从电路级的角度来解决问题的。而且,在布局(设计阶段的最后阶段)之前,PIproblem不能完全得到验证。本文通过扩展基于状态机的功率估计方法,提出了一种新的功耗建模方法,该方法允许在系统抽象级别进行pi仿真。为此,我们建立了功率状态下的功耗模型,其中包括一个统计模型,以及由传递函数建模的状态转换模型。所提出的方法作为仿真框架的一部分实现,该框架使用SystemC-AMS,并应用于电池管理IC设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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