首页> 外文会议>Asia-Pacific Web Conference(APWeb 2006); 20060116-18; Harbin(CN) >Using the Shuffled Complex Evolution Global Optimization Method to Solve Groundwater Management Models
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Using the Shuffled Complex Evolution Global Optimization Method to Solve Groundwater Management Models

机译:使用混洗的复杂进化全局优化方法求解地下水管理模型

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摘要

The shuffled complex evolution method developed at the University of Arizona (SCE-UA) is applied to optimize the management models of groundwater in the paper. It is the first time to use this method in hydrogeology field. Different from traditional gradient-based optimization methods, such as Difference Dynamic Programming (DDP), Sequential Quadratic Programming (SQP), etc., the SCE-UA algorithm is capable of finding global optimum and it does not rely on the availability of an explicit expression for the objective function or the derivatives. Making use of virtues of two types of non-numerical approaches: search along definite direction and search randomly, and introducing the new concept "complex shuffling", the SCE-UA is a very effective and efficient global optimization method and can be used to handle nonlinear problem with high-parameter dimensionality. Two management models of groundwater resources are built in an unconfined aquifer: linear model of the maximum pumping and nonlinear model of minimum pumping cost. The SCE-UA method and some other optimization methods are used to solve these two models at the same time. Comparison of the results shows that the SCE-UA method can solve the groundwater model successfully and effectively. It is obvious that this method can be used widely to optimize management models in hydrogeology field, such as configuration of groundwater resources, prevention and manage of groundwater contamination, etc.
机译:本文采用亚利桑那大学开发的改组复杂进化方法(SCE-UA)来优化地下水管理模型。这是水文地质领域中首次使用该方法。与传统的基于梯度的优化方法(例如差分动态规划(DDP),顺序二次规划(SQP)等)不同,SCE-UA算法能够找到全局最优值,并且不依赖于显式算法的可用性。目标函数或导数的表达式。利用两种非数值方法的优点:沿确定方向搜索和随机搜索,并引入了新概念“复杂改组”,SCE-UA是一种非常有效的全局优化方法,可用于处理高参数维数的非线性问题。在无限制含水层中建立了两种地下水管理模型:最大抽水量的线性模型和最小抽水量的非线性模型。 SCE-UA方法和其他一些优化方法可同时解决这两个模型。结果比较表明,SCE-UA方法可以成功,有效地求解地下水模型。显然,该方法可广泛用于优化水文地质领域的管理模型,例如地下水资源的配置,地下水污染的预防和管理等。

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