Characteristics study of an electronic systems design strategy that includes the traditional strategy and the modified traditional strategy

M. A. S. P. Juárez, A. Zemliak, E. R. Silva
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Abstract

This work presents the theoretical study considerations and the characteristics of a general design methodology in optimal time for electronic systems using numerical methods and optimal control theory. Through this theory the design problem of a system is formulated in terms of optimal control in minimal time. This general design methodology includes the traditional design strategy (TDS), where is possible to use different kind of optimization procedures and different models, but in each step solution is not possible to change these; the modified traditional design strategy (MTDS) is also included, where the model of the system is part of optimization procedure but an objective function of optimization process is constructed such includes the traditional objective function and some penalty functions that feign the model of the system. A whole of special control functions are introduced artificially to generalize the methodology and producing several design trajectories for the same optimization process, where the first and final trajectories correspond to TDS and MTDS respective. The combination of a whole these trajectories produce an infinite number of design strategies, some of these are quasi-optimal in time and only one is optimal in time. The determinations of switching points for the optimal construction algorithm are found using optimal control theory, whit approximation methods and through the special Lyapunov function. These ideas are proposed using the method of gradient optimization and acceleration effect. The analysis of some non linear electronic circuits models shows that this strategy can reduce the total number of operations many times and accelerate the design process. Qualitative and numeric results of this iterative process are generated in a personal computer in a C++ language elaborated program whit a visual C++ graphic user interface. The examples presented show that the traditional design methodology is not time optimal, and the potential gain in compute time of the optimal design strategy whit respect to traditional design strategy increases in accordance with the size and complexity.
本文介绍了利用数值方法和最优控制理论研究电子系统最优时间的一般设计方法的理论研究考虑和特点。通过这一理论,系统的设计问题用最短时间内的最优控制来表述。这种通用的设计方法包括传统的设计策略(TDS),其中可以使用不同类型的优化程序和不同的模型,但在每个步骤的解决方案是不可能改变这些;改进的传统设计策略(MTDS)将系统模型作为优化过程的一部分,构建了优化过程的目标函数,该目标函数包括传统目标函数和模拟系统模型的惩罚函数。人为地引入了一系列特殊的控制函数来推广该方法,并为相同的优化过程产生多个设计轨迹,其中第一和最终轨迹分别对应于TDS和MTDS。这些轨迹的组合产生了无数的设计策略,其中一些在时间上是准最优的,只有一个在时间上是最优的。利用最优控制理论、怀特逼近法和特殊的李雅普诺夫函数,确定了最优构造算法的开关点。这些思想是利用梯度优化和加速效应的方法提出的。对一些非线性电子电路模型的分析表明,该策略可以大大减少总运算次数,加快设计过程。该迭代过程的定性和数值结果是在个人计算机上用c++语言编写的程序和可视化的c++图形用户界面生成的。算例表明,传统设计方法并不是时间最优的,优化设计策略相对于传统设计策略在计算时间上的潜在增益随着尺寸和复杂度的增加而增加。
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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