Multidisciplinary design optimization of dynamic positioning system for semi-submersible platform
The dynamic positioning system (DPS) is a complex mechatronic system consisting of multiple sub-disciplines. For such highly coupled sub-disciplines and sub-systems within the DPS, the conventional sequential design strategy cannot manage this interaction adequately and explicitly. Achieving the glo...
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| Published in: | Ocean engineering Vol. 285; p. 115426 |
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| Main Authors: | , , , , , , |
| Format: | Journal Article |
| Language: | English |
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01.10.2023
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| ISSN: | 0029-8018, 1873-5258 |
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| Abstract | The dynamic positioning system (DPS) is a complex mechatronic system consisting of multiple sub-disciplines. For such highly coupled sub-disciplines and sub-systems within the DPS, the conventional sequential design strategy cannot manage this interaction adequately and explicitly. Achieving the global optimal solution becomes challenging due to the discoordination between the structure and dynamic performance parameters. To address this challenge, a co-design strategy is explored by combining the structure and dynamic performance parameters based on a simultaneous dynamic optimization approach. To minimize the operating cost of the DPS, the radial basis function (RBF) model is extended to the constraint condition. The alpine skiing optimization (ASO) algorithm is applied to solve the multidisciplinary design optimization problem. The results indicate that the co-design strategy not only reduce the operating cost of the DPS but also achieve a smaller rolling response and yaw response.
•A novel optimization design strategy, namely co-design strategy, is proposed.•The multidisciplinary design optimization model of the dynamic positioning system (DPS) is established.•The co-design strategy is explored by combining the structure and dynamic performance parameters.•The alpine skiing optimization (ASO) algorithm is applied to solve the multidisciplinary design optimization problem. |
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| AbstractList | The dynamic positioning system (DPS) is a complex mechatronic system consisting of multiple sub-disciplines. For such highly coupled sub-disciplines and sub-systems within the DPS, the conventional sequential design strategy cannot manage this interaction adequately and explicitly. Achieving the global optimal solution becomes challenging due to the discoordination between the structure and dynamic performance parameters. To address this challenge, a co-design strategy is explored by combining the structure and dynamic performance parameters based on a simultaneous dynamic optimization approach. To minimize the operating cost of the DPS, the radial basis function (RBF) model is extended to the constraint condition. The alpine skiing optimization (ASO) algorithm is applied to solve the multidisciplinary design optimization problem. The results indicate that the co-design strategy not only reduce the operating cost of the DPS but also achieve a smaller rolling response and yaw response.
•A novel optimization design strategy, namely co-design strategy, is proposed.•The multidisciplinary design optimization model of the dynamic positioning system (DPS) is established.•The co-design strategy is explored by combining the structure and dynamic performance parameters.•The alpine skiing optimization (ASO) algorithm is applied to solve the multidisciplinary design optimization problem. |
| ArticleNumber | 115426 |
| Author | Wang, Shuo Yu, Jiangong Yang, Qingkang Ren, Jianji Xi, Wenhui Yuan, Yongliang Shen, Qianlong |
| Author_xml | – sequence: 1 givenname: Yongliang surname: Yuan fullname: Yuan, Yongliang organization: School of Mechanical and Power Engineering, Henan Polytechnic University, Jiaozuo, 454003, China – sequence: 2 givenname: Qianlong surname: Shen fullname: Shen, Qianlong organization: School of Mechanical and Power Engineering, Henan Polytechnic University, Jiaozuo, 454003, China – sequence: 3 givenname: Wenhui surname: Xi fullname: Xi, Wenhui organization: School of Mechanical and Power Engineering, Henan Polytechnic University, Jiaozuo, 454003, China – sequence: 4 givenname: Shuo surname: Wang fullname: Wang, Shuo email: wangshuo17@foxmail.com organization: School of Mechanical Engineering, Dalian University of Technology, Dalian, 116024, China – sequence: 5 givenname: Jianji surname: Ren fullname: Ren, Jianji email: renjianji@hpu.edu.cn organization: School of Software, Henan Polytechnic University, Jiaozuo, 454003, China – sequence: 6 givenname: Jiangong surname: Yu fullname: Yu, Jiangong organization: School of Mechanical and Power Engineering, Henan Polytechnic University, Jiaozuo, 454003, China – sequence: 7 givenname: Qingkang surname: Yang fullname: Yang, Qingkang organization: School of Mechanical and Power Engineering, Henan Polytechnic University, Jiaozuo, 454003, China |
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| Keywords | Alpine skiing optimization Semi-submersible platform Dynamic positioning system Multidisciplinary design optimization |
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