Robustness in analog systems: Design techniques, methodologies and tools

P. Nuzzo, A. Sangiovanni-Vincentelli
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引用次数: 17

Abstract

A significant challenge in today's electronic design is designing complex, high-performance, “reliable” systems out of available components that are often “unreliable”, their behavior being affected by uncertainties or stochastic fluctuations. The problem is to guide the design process towards robustness, i.e., making the design insensitive to parameter variations. In this paper, we review design techniques, methodologies and tools that address robust design in the context of analog and mixed-signal integrated systems. Our analysis is organized in two areas: architectures and methodologies with supporting tools. Design approaches based on calibration techniques have been traditionally used to tune analog performance and meet the required specifications. Digitally-assisted and system-assisted design approaches build circuits that are tolerant to impaired analog components. We survey statistical modeling and optimization techniques that are instrumental to robust, hierarchical design of complex systems. Finally, we discuss platform-based design and contract-based design as viable frameworks for robust design methodologies and tools to be developed into a structured design flow.
模拟系统的稳健性:设计技术、方法和工具
当今电子设计的一个重大挑战是设计复杂、高性能、“可靠”的系统,而现有的组件通常是“不可靠的”,它们的行为受到不确定性或随机波动的影响。问题是引导设计过程走向鲁棒性,即使设计对参数变化不敏感。在本文中,我们回顾了在模拟和混合信号集成系统背景下解决鲁棒设计的设计技术、方法和工具。我们的分析分为两个方面:体系结构和具有支持工具的方法。基于校准技术的设计方法传统上用于调整模拟性能并满足所需的规格。数字辅助和系统辅助设计方法构建的电路可以容忍受损的模拟元件。我们调查了统计建模和优化技术,这些技术有助于复杂系统的鲁棒分层设计。最后,我们讨论了基于平台的设计和基于契约的设计作为可行的框架,稳健的设计方法和工具将被开发成一个结构化的设计流程。
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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