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- W3116525542 abstract "In this paper, an efficient procedure integrating the moving compensation optimization (MCO) and a modified differential evolution algorithm is presented for finding the optimal solution to compensate for the differential column shortening (DCS) in tall buildings. In the proposed compensation procedure, the number of compensation groups is minimized by maximizing the number of floors for each group stepwise with constraints placed on the compensation error at each floor level. Two optimal compensation problems are presented, including the deterministic optimal compensation (DOC) and the reliability-based optimal compensation (ROC), which correspond to ignoring or considering the uncertainties that are inherent in the predicted shortenings as well as the correction amounts. A parameter-free, adaptive differential evolution algorithm is established to solve MCO. Applications for a 70-story building and a 72-story building are examined to demonstrate the efficiency and reliability of the presented compensation approach." @default.
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- W3116525542 date "2021-05-01" @default.
- W3116525542 modified "2023-09-23" @default.
- W3116525542 title "An efficient differential-evolution-based moving compensation optimization approach for controlling differential column shortening in tall buildings" @default.
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- W3116525542 doi "https://doi.org/10.1016/j.eswa.2020.114531" @default.
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