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Study on Parameter Inversion of Displacement Based on Homotopy Theory Genetic Algorithms

机译:基于同伦理论遗传算法的位移参数反演研究

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The principle and the main characteristics of Genetic Algorithm (GA) were stated. Crossover was a main process producing new generation through genetic genes recombination at the whole exploration space in GA. But some traditional crossover mechanism made the extent and profundity of cross among operators limited. There were some thorny issues such as crossover efficiency slowly, some operator perdition no chance crossing, the population diversity playing down quickly etc. In order to improve genetic cross-strategy, Homotopy Theory Genetic Algorithm (HTGA) was presented by combining the improved homotopy theory and GA. Homotopy genetic curve directed GA genes operating which enhanced genes' interior exchange of population. Then the HTGA was applied to the multi-parameters inversion of cavern displacement in geotechnical engineering. Numerical example shows that HTGA is of strong ability to obtain global optimization solution, and its performances are superior to those of single GA.
机译:阐述了遗传算法(GA)的原理和主要特点。在遗传资源的整个勘探空间中,交叉是通过遗传基因重组产生新一代的主要过程。但是,某些传统的交叉机制限制了运营商之间交叉的程度和深度。存在一些棘手的问题,例如交叉效率缓慢,操作员灭绝,无机会交叉,种群多样性快速下降等。为了改进遗传交叉策略,结合改进的同伦理论提出了同伦理论遗传算法(HTGA)。和GA。同基因遗传曲线指导GA基因的运行,增强了基因内部种群的交换。然后将HTGA应用于岩土工程中岩洞位移的多参数反演。数值算例表明,HTGA具有较强的全局最优解能力,其性能优于单一GA。

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