首页> 外文期刊>International Journal for Numerical Methods in Engineering >A new methodology to solve non-linear equation systems using genetic algorithms. Application to combined cycle gas turbine simulation
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A new methodology to solve non-linear equation systems using genetic algorithms. Application to combined cycle gas turbine simulation

机译:一种使用遗传算法求解非线性方程组的新方法。在联合循环燃气轮机仿真中的应用

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This paper shows a methodology to sort out the equations of a non-linear system in order to solve it by the fixed-point method. The arrangement of the equations is established by a genetic algorithm that deals with a population of possible resolution processes of the system.The method is specially useful in the following situations: first, when the system is very non-linear and has many variables (where the Newton-Raphson method does not work properly); second, when the number of equations and variables may be altered because the equation system may change in each simulation and, therefore, more than one only solution process is needed if the fixed-point process is employed.As an example, the methodology has been applied to solve the equation system that models the behaviour of a heat recovery steam generator of a combined cycle power plant at full load and part load conditions. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:本文展示了一种方法,可以对非线性系统的方程进行排序,以便通过定点方法进行求解。方程的排列是通过遗传算法建立的,该遗传算法处理系统的各种可能的解析过程。该方法在以下情况下特别有用:首先,当系统是非常非线性的并且具有很多变量时(其中Newton-Raphson方法无法正常工作);第二,当方程和变量的数量可能由于每次仿真中方程系统可能改变而改变时,因此,如果使用定点过程,则仅需要一个以上的求解过程。应用于求解方程系统,该方程系统对联合循环发电厂的热回收蒸汽发生器在满负荷和部分负荷条件下的行为进行建模。版权所有(c)2005 John Wiley&Sons,Ltd.

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