Boundary search approach to parameter design for analog circuits

M. Kaneko, Y. Fujikawa
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引用次数: 1

Abstract

This paper presents a novel approach to parameter design for analog circuits. This approach is based on the peculiarity of the design equations which are linear with respect to every one of the design parameters. Once the initial feasible hyper cube of the design parameters is defined, the solution space (reduced cube) within the cube for each of design equations can be estimated by evaluating zeros only at the boundary edges of the initial cube. Furthermore, the solution space of simultaneous equations can be estimated as the intersection of reduced cubes for each equation. The proposed Boundary Search Method finds the simultaneous solution of a set of design equations by iterative reduction of the feasible cube. This method needs only specifications of minimum and maximum values of design parameters, and it may find all feasible solutions. (Conventional nonlinear programming (nonlinear optimization) needs an appropriate initial solution, and it may easily be trapped by a local optimum).
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模拟电路参数设计的边界搜索方法
本文提出了一种模拟电路参数设计的新方法。这种方法是基于设计方程的特殊性,设计方程对每一个设计参数都是线性的。一旦定义了设计参数的初始可行超立方体,则可以通过仅在初始立方体的边界边缘处求零来估计立方体内每个设计方程的解空间(约简立方体)。此外,联立方程的解空间可以估计为每个方程的简化立方的交集。提出的边界搜索方法通过可行立方的迭代约简,找到一组设计方程的同时解。该方法只需要确定设计参数的最小值和最大值,就能找到所有可行的解。(传统的非线性规划(非线性优化)需要一个合适的初始解,它很容易陷入局部最优。)
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