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Electronic System Optimization Design via GP-Based Surrogate Modeling.

机译:通过基于GP的代理模型进行电子系统优化设计。

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摘要

For an electronic system with a given circuit topology, the designer's goal is usually to automatically size the device and components to achieve globally optimal performance while at the same satisfying the predefined specifications. This goal is motivated by a human desire for optimality and perfection.;This research project improves upon current optimization strategies. Many types of convex programs and convex fitting techniques are introduced and compared, and the evolution of Geometric Program (GP)-based optimization approaches is investigated through a literature review. By these means, it is shown that a monomial-based GP can achieve optimal performance and accuracy only for long-channel devices, and that a piecewise linear (PWL)-based GP works well only for short-channel, narrow devices without many data fitted. Based on known GP optimizer and convex PWL fitting techniques, an innovative surrogate modeling and optimization algorithm is proposed to further improve performance accuracy iteratively for a wide transistor with a short channel. The new surrogate strategy, which comprises a fine model and a coarse model, can automatically size the device to create a reusable system model for designing electronic systems and noticeably improving prediction accuracy, particularly when compared to the pure, GP-based optimization method.;To verify the effectiveness and viability of the proposed surrogate strategy, a widely used two-stage optimization design is employed, entailing an operational amplifier (op-amp) and LC-tuned oscillator. In addition, an involved analysis and simulation demonstrate that the optimal results of both coarse and fine models in the proposed surrogate strategy may gradually converge to each other iteratively while achieving over 10% improvement in performance accuracy compared to the previous, PWL-based GP algorithm. As a result, the proposed surrogated modeling and optimization algorithm can serve as an efficient Computer Aided Design (CAD) tool, with the capability of dramatically improving performance for Integrated Circuit (IC) design.
机译:对于具有给定电路拓扑的电子系统,设计人员的目标通常是自动调整设备和组件的尺寸,以实现全局最佳性能,同时又满足预定义的规格。这个目标是由人类对最优和完美的渴望所激发的。该研究项目对当前的优化策略进行了改进。介绍和比较了许多类型的凸程序和凸拟合技术,并通过文献综述研究了基于几何程序(GP)的优化方法的发展。通过这些方法,表明基于单项式的GP仅对于长通道设备可实现最佳性能和精度,而基于分段线性(PWL)的GP仅对短通道,窄设备且无大量数据有效装。基于已知的GP优化器和凸PWL拟合技术,提出了一种创新的替代模型和优化算法,以进一步迭代地提高具有短沟道的宽晶体管的性能精度。新的替代策略包括一个精细模型和一个粗糙模型,可以自动调整设备的尺寸,以创建可重用的系统模型来设计电子系统,并显着提高预测准确性,特别是与基于GP的纯优化方法相比。为了验证所提出的替代策略的有效性和可行性,采用了广泛使用的两阶段优化设计,包括运算放大器(运放)和LC调谐振荡器。此外,所涉及的分析和仿真表明,与以前的基于PWL的GP算法相比,所提出的代理策略中的粗略模型和精细模型的最优结果可能会逐渐相互收敛,同时性能精度提高了10%以上。 。结果,所提出的替代建模和优化算法可以用作有效的计算机辅助设计(CAD)工具,具有显着提高集成电路(IC)设计性能的能力。

著录项

  • 作者

    Xue, Xiangzhong.;

  • 作者单位

    North Carolina State University.;

  • 授予单位 North Carolina State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 178 p.
  • 总页数 178
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:43:11

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