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A novel software architecture for computer-aided analysis of circuits with uncertain parameters

机译:一种新的软件架构,用于电路的电路与不确定参数的电路分析

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In recent years much interest is grown about the possibility to apply novel software technologies (such as those ones coming from Artificial Intelligence) to the field of Scientific Calculus. There is an increasing need of such approaches due tothe hard requests for integration-cooperation features in modern applications, whose simulation tasks are asked to go far beyond the mere and rigid application of presumed general purpose numerical methods. In this paper we explore the use of SoftwareAgents for Circuit-CAD (CCAD) with uncertainties handling capabilities. In such a field, solving some hard problems, like Tolerance and Sensitivity Analysis (TSA) for strongly non-linear circuits in presence of large parameters' uncertainties, benefitsmuch more from a clever preliminary choice of the best problem-tuned numerical method rather than from a blind number crunching approach. Software Agents seem to meet these constraints while introducing a high degree of flexibility, which enables theimplementation of dynamic adaptive resolution schemes for given CCAD tasks. We present an example of use of the proposed architecture utilizing Java to specify agents as active objects. Some applications of the new strategy to TSA circuits-relatedproblems are presented.
机译:近年来,有些利益是对将新颖的软件技术(例如来自人工智能的人)应用于科学分子领域的可能性很多。由于在现代应用中,仍有难以提出的艰难请求的难度请求的方法,其仿真任务被要求远远超出模拟任务,超出了预设的通用数值方法的刚性和刚性。在本文中,我们探讨了使用软件对电路CAD(CCAD)的使用,并使用不确定性处理功能。在这样的领域中,解决一些难题,如在存在大的参数的不确定性的情况下,在存在大的非线性电路的情况下,在存在大的参数的不确定因素的情况下,从聪明的初步选择最佳的问题调谐的数字方法而不是来自的聪明初步选择盲目的嘎吱嘎吱的方法。在引入高度灵活性的同时,软件代理似乎满足这些约束,这使得可实现CCAD任务的动态自适应分辨率方案。我们介绍了利用Java将代理作为活动对象指定代理的使用示例。提出了对TSA电路相关的新策略的一些应用。

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