全尺寸仿真系统的最小化问题

A. Grigorev, A.I. Soklatov, P. Sorokin
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引用次数: 1

摘要

电子器件的物理模拟是对保存物理性质的器件进行研究。最普遍的是描述所有薄物理交互的完整元素模型,并包含开发人员和设计人员所需的所有必要信息。但是,即使已知元件运行的物理原理,为了识别内部结构,也必须使用大量参数,而这些参数的定义往往与巨大的实验成本有关。一方面,它产生最确定的结果,另一方面,增加了研究的时间和成本。因此,模拟系统的可疑条件、构建方式和方法的最小化问题首先体现在模拟结果的质量上。在最小化问题的解决中使用合理的方法,可以在提供相应的定性特征所需的模拟质量和使用参数数量之间寻找最佳比例方面取得可观的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full-scale simulation system minimization problems
The physical simulation of electronic devices assumes research of devices with preservation of the physical nature. Most universal are the full models of elements describing all thin physical interactions and containing all indispensable information for the developer and designer. But even when the physical principles of elements operation are well-known, for identification of an internal structure it is necessary to use a lot of parameters, and the definition of these parameters often is connected to large experimental costs. On the one hand, it results in the most sure results, and on the other hand, an increase of time and cost of research. Therefore, there is a problem on minimization of suspected conditions, ways and methods of construction of an analog system that first of all is reflected in quality of results of simulation. Using a reasonable approach at a solution of the question of minimization, it is possible to achieve appreciable results in looking up of an optimum ratio between quality of simulation and quantity of used parameters required providing the corresponding qualitative characteristics.
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