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Modern Nonlinear Optimization Techniques for an Optimal Control of System Dynamics Models

机译:系统动力学模型最优控制的现代非线性优化技术

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We study System Dynamics models with several free parameters that can be altered by the user. We assume that the user's goal is to achieve a certain dynamic behavior of the model by varying these parameters. In order to the find best possible combination of parameter settings, several automatic parameter tuning methods are described in the literature and readily available within existing System Dynamic software packages. We give a survey on the available techniques in the market and describe their theoretical background. Some of these methods are already six decades old, and meanwhile newer and more powerful optimization methods have emerged in the mathematical literature. One major obstacle for their direct use are tabled data in System Dynamics models, which are usually interpreted as piecewise linear functions. However, modern optimization methods usually require smooth functions which are twice continuously differentiable. We overcome this problem by a smooth spline interpolation of the tabled data. We use a test set of three complex System Dynamic models from the literature, describe their individual transition into optimization problems, and demonstrate the applicability of modern optimization algorithms to these System Dynamics Optimization problems.
机译:我们研究系统动态模型,具有几个可由用户更改的免费参数。我们假设用户的目标是通过改变这些参数来实现模型的某个动态行为。为了找到最佳参数设置的组合,在文献中描述了几种自动参数调整方法,并在现有系统动态软件包中可用。我们对市场的可用技术进行了调查,并描述了其理论背景。这些方法中的一些已经六十年了,并且在数学文献中出现了更新,更强大的优化方法。直接使用的一个主要障碍是系统动态模型中的数据,通常被解释为分段线性函数。然而,现代优化方法通常需要平稳的功能,这两次连续可微分。我们通过Table数据的顺利样条插值来克服这个问题。我们使用文献中的三个复杂系统动态模型的测试集,将其单独转换为优化问题,并展示了现代优化算法对这些系统动态优化问题的适用性。

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