不确定性行为的代数分析

Sany M. Leinwand, T. Lamdan
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引用次数: 5

摘要

本文对导致数字系统不可预测响应的设计误差进行了分析。除了经典的主题,如危险和比赛,故障分析在实际电路也包括在内。在定义了行为和不确定性响应的概念之后,提出了一种通过代数分析来检测此类设计问题的一般方法。与现有的仿真方法相比,代数技术的仿真结果精度得到了提高。另一个基本优点是能够适应数字系统的模块化合成。实例显示了所提出的方法如何在各种延迟假设下处理顺序电路。特别地,分析了基于标称延迟参数和窗口延迟的设计。提出了一种针对脉冲检测的新方法。通过实例说明了代数分析在模块化设计环境中检测错误的能力。最后,简要讨论了RTL中的不确定性行为。值得注意的是,提出了一种从电路延迟参数推导出设置和保持时间约束的代数方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Algebraic Analysis of Nondeterministic Behavior
This paper is concerned with the analysis of design errors that lead to unpredictable response of digital systems. Besides classical topics, such as hazards and races, the analysis of malfunctions in real circuits is also included. After defining the notion of behavior and nondeterministic response, a general approach for detecting such design problems through algebraic analysis is presented. Compared with existing simulation methods, the algebraic technique provides results of improved accuracy. Another basic advantage is the ability to accomodate modular synthesis of digital systems. Examples show how the proposed methods deal with sequential circuits under various delay assumptions. In particular, analysis of designs based on nominal delay parameters and on window delays is presented. A novel method, aiming at spike detection, is also presented. The ability of the algebraic analysis to detect errors in a modular design environment is illustrated by means of an example. Finally, the topic of nondeterministic behavior at RTL is briefly discussed. Notably, an algebraic method for deriving setup and hold time constraints from the circuit delay parameters is proposed.
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