2023
DOI: 10.1002/rob.22235
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Multiobjective trajectory optimization of the wall‐building robot based on RBF–NSGA‐II in an uncertain viscoelastic contact environment

Abstract: To solve the problem of poor masonry quality of traditional wall‐building robots in an uncertain viscoelastic contact environment while reducing energy consumption, reducing contact forces with the environment, and improving work efficiency and smoothness, a segmented multiobjective trajectory optimization method is proposed based on radial basis function (RBF) and nondominated sorting genetic algorithm II (NSGA‐II). The method divides the motion trajectory into the free motion segment and the masonry segment.… Show more

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Cited by 4 publications
(1 citation statement)
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“…Depending on the functions used by construction robots, include bricklaying robots (Shi et al, 2023), painting robots (Wang et al, 2022), floor-tiling robots (Prabakaran et al, 2023), and construction measuring robots (Chen et al, 2019). Overall, construction robots can be mainly divided into robots modified in existing machine buildings and robots for specific construction operations, and thus unmanned construction operations (Pan et al, 2020).…”
mentioning
confidence: 99%
“…Depending on the functions used by construction robots, include bricklaying robots (Shi et al, 2023), painting robots (Wang et al, 2022), floor-tiling robots (Prabakaran et al, 2023), and construction measuring robots (Chen et al, 2019). Overall, construction robots can be mainly divided into robots modified in existing machine buildings and robots for specific construction operations, and thus unmanned construction operations (Pan et al, 2020).…”
mentioning
confidence: 99%