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Convex Piecewise-Linear Modeling Method for Circuit Optimization via Geometric Programming

机译:基于几何规划的凸分段线性建模方法

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This paper presents a new method for fitting a convex piecewise-linear function to a given set of data, which can serve as an empirical modeling framework for circuit optimization via geometric programming. The method iteratively solves a series of linear optimization problems to minimize the fitting error. To reduce the fitting error in each iteration, an extra plane is added in the region where the largest error occurs. For verification, we apply the method to create transistor-level models in 90-nm complementary metal-oxide-semiconductor technology. Numerical results indicate that the proposed method can generate process-dependent transistor-level models with reasonable modeling accuracy.
机译:本文提出了一种将凸分段线性函数拟合到给定数据集的新方法,该方法可以用作通过几何编程进行电路优化的经验建模框架。该方法迭代地解决了一系列线性优化问题,以最小化拟合误差。为了减少每次迭代中的拟合误差,在发生最大误差的区域中添加一个额外的平面。为了进行验证,我们应用该方法在90纳米互补金属氧化物半导体技术中创建晶体管级模型。数值结果表明,所提出的方法能够以合理的建模精度生成与工艺相关的晶体管级模型。

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