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Simulation-based optimization for modeling and mitigating tunnel-induced damages

机译:基于仿真和缓解隧道造成损伤的仿真优化

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This research develops a simulation-based optimization approach that is capable of modeling and mitigating tunnel-induced damages. Two fuzzy cognitive maps (FCMs) (i.e., one with self-feedback and the other without self-feedback) are learned from historical datasets by using the real-coded genetic algorithm (RCGA) on a data-driven modeling manner. Then, the optimal variable value set is searched in the input space. Two new measures, namely "maximum response" and "average response", are proposed to search the optimal variable value set in the input space in the FCM dynamic simulation process. A realistic tunnel case in the Wuhan metro system in China is extensively investigated to demonstrate the applicability and effectiveness of the developed approach. Results indicate that (1) The FCM with self-feedback is more stable than the FCM without self-feedback considering its higher coefficient of determination in the testing samples, where less modification of input variables realizes comparable improvement in the objective in the FCM with self-feedback. (2) The measure "maximum response" shows a larger change in the objective than the measure "average response", where modifications in input space are similar. (3) It is revealed that the ground settlement is more sensitive to TBM operational parameters than tunnel geometry and geological conditions in the two learned FCMs. The developed approach provides insights into a better understanding of causal relationships among factors in tunnel-induced damages, enabling the planning of proactive control strategies for mitigating tunnel-induced damages.
机译:该研究开发了一种基于仿真的优化方法,能够建模和减轻隧道引起的损坏。通过使用基于数据驱动的建模方式的实际编码的遗传算法(RCGA)从历史数据集中学习两个模糊认知地图(即,一个具有自助反馈的另一个没有自我反馈)。然后,在输入空间中搜索最佳变量值集。提出了两个新措施,即“最大响应”和“平均响应”,搜索FCM动态仿真过程中输入空间中的最佳变量值。广泛调查中国武汉地铁系统中的一个现实的隧道案,以证明所发达方法的适用性和有效性。结果表明,考虑到其测试样本中的较高的速度系数,在没有自助反馈的情况下,FCM具有比FCM更稳定,考虑到测试样本中的更高系数,其中输入变量的更少修改实现了FCM中的目标的可比性改善-反馈。 (2)测量“最大响应”显示目标的更大变化,而不是测量“平均响应”,其中输入空间的修改是相似的。 (3)据透露,地面沉降对TBM操作参数比隧道几何形状和两种学习FCM中的地质条件更敏感。开发方法提供了对隧道引起的损害赔偿因素的更好反因果关系的见解,从而能够规划积极控制策略,以减轻隧道引起的损害赔偿。

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