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BT型多功能自动驾驶仪问世
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《机电设备》 2005年第3期48-48,共1页
日前,一种能兼用电罗经和磁罗经的BT型多功能船舶自动驾驶仪在浙江台州椒江八达船用电器厂问世,并获中国船级社认可。该驾驶仪体积小、功能多,能进行GPS定位和精密导航,可在驾驶台上实现集中操作,在发生过载、失电断相、油液高温... 日前,一种能兼用电罗经和磁罗经的BT型多功能船舶自动驾驶仪在浙江台州椒江八达船用电器厂问世,并获中国船级社认可。该驾驶仪体积小、功能多,能进行GPS定位和精密导航,可在驾驶台上实现集中操作,在发生过载、失电断相、油液高温、低油位、滤器堵塞等情况时具有自动保护功能。 展开更多
关键词 多功能 BT型 船舶自动驾驶仪 自动保护功能 中国船级社 GPS定位 浙江台州 精密导航 集中操作 电器厂 磁罗经 电罗经 体积小 驾驶 船用 滤器
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Design of robust fuzzy controller for ship course-tracking based on RBF network and backstepping approach 被引量:4
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作者 ZHANG Song-tao REN Guang 《Journal of Marine Science and Application》 2006年第3期5-10,共6页
This study presents an adaptive fuzzy neural network (FNN) control system for the ship steering autopilot. For the Norrbin ship steering mathematical model with the nonlinear and uncertain dynamic characteristics, an ... This study presents an adaptive fuzzy neural network (FNN) control system for the ship steering autopilot. For the Norrbin ship steering mathematical model with the nonlinear and uncertain dynamic characteristics, an adaptive FNN control system is designed to achieve high-precision track control via the backstepping approach. In the adaptive FNN control system, a FNN backstepping controller is a principal controller which includes a FNN estimator used to estimate the uncertainties, and a robust controller is designed to compensate the shortcoming of the FNN backstepping controller. All adaptive learning algorithms in the adaptive FNN control system are derived from the sense of Lyapunov stability analysis, so that system-tracking stability can be guaranteed in the closed-loop system. The effectiveness of the proposed adaptive FNN control system is verified by simulation results. 展开更多
关键词 fuzzy neural network ship course-tracking adaptive control backstepping approach
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Dynamical Correction of Control Laws for Marine Ships’ Accurate Steering 被引量:1
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作者 Evgeny I. Veremey 《Journal of Marine Science and Application》 2014年第2期127-133,共7页
The objective of this work is the analytical synthesis problem for marine vehicles autopilots design. Despite numerous known methods for a solution, the mentioned problem is very complicated due to the presence of an ... The objective of this work is the analytical synthesis problem for marine vehicles autopilots design. Despite numerous known methods for a solution, the mentioned problem is very complicated due to the presence of an extensive population of certain dynamical conditions, requirements and restrictions, which must be satisfied by the appropriate choice of a steering control law. The aim of this paper is to simplify the procedure of the synthesis, providing accurate steering with desirable dynamics of the control system. The approach proposed here is based on the usage of a special unified multipurpose control law structure that allows decoupling a synthesis into simpler particular optimization problems. In particular, this structure includes a dynamical corrector to support the desirable features for the vehicle's motion under the action of sea wave disturbances. As a result, a specialized new method for the corrector design is proposed to provide an accurate steering or a trade-off between accurate steering and economical steering of the ship. This method guaranties a certain flexibility of the control law with respect to an actual environment of the sailing;its corresponding turning can be realized in real time onboard. 展开更多
关键词 marine ships control law dynamical corrector accurate steering autopilot sea wave
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