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基于综合监测系统的无人船自主航行能力评价 被引量:1
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作者 徐力 陈天宇 +1 位作者 许凯玮 胡琼 《舰船科学技术》 北大核心 2023年第20期83-86,共4页
为提升无人船自主航行测试与评价能力,提出一种应用多维信息统一采集、船-岸-海协同测量与模块化设计技术开发的无人船自主航行综合监测系统。该系统具有系统配置、数据实时采集与显示、数据存储与回放、船岸通信等功能。通过对无人船... 为提升无人船自主航行测试与评价能力,提出一种应用多维信息统一采集、船-岸-海协同测量与模块化设计技术开发的无人船自主航行综合监测系统。该系统具有系统配置、数据实时采集与显示、数据存储与回放、船岸通信等功能。通过对无人船在执行自主循迹与自主避碰等典型自主航行任务时产生的航行数据进行实测与存储,结合评价指标的数学模型与量化算法对试验数据进行计算与分析,获得无人船自主航行能力的定量评价结果,为自主航行系统能力的测评提供重要支撑,并为后续升级与开发提供指导。 展开更多
关键词 无人船 自主航行系统 综合监测系统 航行能力测试与评价
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视景仿真可信度评估体系的扩充及其应用 被引量:3
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作者 王金华 严卫生 +1 位作者 刘旭琳 宋一川 《系统仿真学报》 CAS CSCD 北大核心 2010年第8期1912-1915,1919,共5页
随着视景仿真技术的发展,仿真可信度评估也应相应扩充,满足全面评价视景仿真系统的需求。首先针对目前视景仿真技术出现的新形式进行了探讨,提出了对可信度评估进行扩充的一种思路,给出了视景仿真系统可信度评估的体系结构,并对模糊AHP... 随着视景仿真技术的发展,仿真可信度评估也应相应扩充,满足全面评价视景仿真系统的需求。首先针对目前视景仿真技术出现的新形式进行了探讨,提出了对可信度评估进行扩充的一种思路,给出了视景仿真系统可信度评估的体系结构,并对模糊AHP评估方法进行了改进以减少评判专家的主观臆断;然后依据扩充后的可信度评估体系并结合改进的模糊AHP评估方法对某新型远程自主式水下航行器仿真系统进行了评估,最后给出了该仿真系统的定量可信度。实践证明,扩充后的视景可信度评估适用范围更加广泛,具有一定应用前景和工程使用价值。 展开更多
关键词 视景仿真 可信度评估 逼真度 自主式水下航行器仿真系统
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Nonlinear trajectory tracking control of a new autonomous underwater vehicle in complex sea conditions 被引量:9
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作者 高富东 潘存云 +1 位作者 韩艳艳 张湘 《Journal of Central South University》 SCIE EI CAS 2012年第7期1859-1868,共10页
Autonomous underwater vehicles (AUVs) navigating in complex sea conditions usually require a strong control system to keep the fastness and stability. The nonlinear trajectory tracking control system of a new AUV in c... Autonomous underwater vehicles (AUVs) navigating in complex sea conditions usually require a strong control system to keep the fastness and stability. The nonlinear trajectory tracking control system of a new AUV in complex sea conditions was presented. According to the theory of submarines,the six-DOF kinematic and dynamic models were decomposed into two mutually non-coupled vertical and horizontal plane subsystems. Then,different sliding mode control algorithms were used to study the trajectory tracking control. Because the yaw angle and yaw angle rate rather than the displacement of the new AUV can be measured directly on the horizontal plane,the sliding mode control algorithm combining cross track error method and line of sight method was used to fulfill its high-precision trajectory tracking control in the complex sea conditions. As the vertical displacement of the new AUV can be measured,in order to achieve the tracking of time-varying depth signal,a stable sliding mode controller was designed based on the single-input multi-state system,which took into account the characteristic of the hydroplane and the amplitude and rate constraints of the hydroplane angle. Moreover,the application of dynamic boundary layer can improve the robustness and control accuracy of the system. The computational results show that the designed sliding mode control systems of the horizontal and vertical planes can ensure the trajectory tracking performance and accuracy of the new AUV in complex sea conditions. The impacts of currents and waves on the sliding mode controller of the new AUV were analyzed qualitatively and quantitatively by comparing the trajectory tracking performance of the new AUV in different sea conditions,which provides an effective theoretical guidance and technical support for the control system design of the new AUV in real complex environment. 展开更多
关键词 complex sea condition autonomous underwater vehicle (AUV) trajectory tracking sliding mode control
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Actuator fault diagnosis of autonomous underwater vehicle based on improved Elman neural network 被引量:6
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作者 孙玉山 李岳明 +2 位作者 张国成 张英浩 吴海波 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第4期808-816,共9页
Autonomous underwater vehicles(AUV) work in a complex marine environment. Its system reliability and autonomous fault diagnosis are particularly important and can provide the basis for underwater vehicles to take corr... Autonomous underwater vehicles(AUV) work in a complex marine environment. Its system reliability and autonomous fault diagnosis are particularly important and can provide the basis for underwater vehicles to take corresponding security policy in a failure. Aiming at the characteristics of the underwater vehicle which has uncertain system and modeling difficulty, an improved Elman neural network is introduced which is applied to the underwater vehicle motion modeling. Through designing self-feedback connection with fixed gain in the unit connection as well as increasing the feedback of the output layer node, improved Elman network has faster convergence speed and generalization ability. This method for high-order nonlinear system has stronger identification ability. Firstly, the residual is calculated by comparing the output of the underwater vehicle model(estimation in the motion state) with the actual measured values. Secondly, characteristics of the residual are analyzed on the basis of fault judging criteria. Finally, actuator fault diagnosis of the autonomous underwater vehicle is carried out. The results of the simulation experiment show that the method is effective. 展开更多
关键词 autonomous underwater vehicle fault diagnosis THRUSTER improved Elman neural network
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