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A study on explaining underground pipeline data by improved evolutionary algorithm

机译:改进的进化算法解释地下管线数据的研究

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There are three possible situations that we will arise in detecting the underground pipeline. First, the pipes are dense and parallel; the second, the piles are laid in a slope; the third, we can't make sure that the magnetic dipole is horizontal or slope when magnetic dipole tracer method are used to detect nonmetal-pipeline. Under those conditions, the pipeline data can't be explained correctly or even would get wrong conclusion. Evolutionary algorithm is a highly efficiency method because it only has crossover operator and eliminate the worst. In the paper, The improved Evolutionary Algorithm (CGT) based on the Guo Tao method is used to inverse the pipeline's parameters under the three conditions and is proved to be effective and superior.
机译:有三种可能的情况,我们将在检测到地下管道时出现。 首先,管道致密且平行; 第二,桩在坡度铺设; 第三,当使用磁性偶极跟踪方法检测非金属管道时,我们无法确保磁性偶极子是水平的或斜率。 在这些条件下,管道数据无法正确解释,甚至会出错。 进化算法是一种高效的方法,因为它只具有交叉操作员并消除最坏的情况。 在本文中,基于Guo Tao方法的改进的进化算法(CGT)用于在三种条件下逆管线的参数,并被证明是有效和优越的。

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