Model-Based Synthetical Optimization Analysis on Navigation Performance of Unmanned Surface Vehicle

Author:

Ma Tian Yu1,Yang Song Lin1,Hang Cen1,Yu Qiang2,Wen Yi Yan3

Affiliation:

1. Jiangsu University of Science and Technology

2. Shanghai Jiao Tong University

3. Shanghai Ship and Shipping Research Institute

Abstract

Unmanned Surface Vehicle (USV) has very complex forces and states when sailing at sea. While the optimization of USV via regression equations usually has a lower precision. Rapidity and seakeeping tests have been conducted based on a USV model of JUST. The rapidity test is mainly ship model resistance test and the seakeeping tests include wave added resistance test, hydrostatic pitching test, pitching and heaving test under the wave. Response surfaces fitting vectors of rough water resistance, pitching significant value, heaving significant value is established while using VC++ language to write second-order response surface fitting programs after dimensionless conversion of test data. Mathematical model of USV navigation performance synthetical optimization is proposed, including systems of rapidity, maneuverability and seakeeping. A layered parallel genetic algorithm (L-P-GA) optimization program is written in VC++ language, which can optimize a variety of conditions with different design speed and displacements. The results indicate that the optimization method has a higher precision and it can provide an opportunity to optimize the navigation performance of USV effectively.

Publisher

Trans Tech Publications, Ltd.

Reference7 articles.

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2. Jiexue Liu, Research on Optimum Design of a Container Ship based on Response Surface Methodology, Master Dissertation of Tientsin University, 2008(In Chinese).

3. Chongyang Huang, Optimum Design of Bulk Carrier Structures Based on Response Surface Methodology, Master Dissertation of Dalian University of Technology, 2011(In Chinese).

4. Wei Dai, Research on Riser Structrual Reliability Based on Response Surface Method, PhD Dissertation of Harbin Engineering University, 2012(In Chinese).

5. Xuyin Jiang, Tao Liu, Xuan Wang and Hongrui An, Multi-objective optimization analysis of pressure hull in atmospheric diving suit, Journal of Ship Mechanics, vol. 17, pp.944-951, August 2013(In Chinese).

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