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1)  advanced ship's operation control system
先进船舶操纵控制系统
2)  Ship off-line manoeuvring simulation system
船舶操纵离线模拟系统
3)  ship control system
船舶控制系统
1.
It includes the main propulsion plant,management of power station, ship control system,remote control of valves and measurement of tank level,cargo oil pump controlled by converter,heating monitoring of cargo oil tanks and reclaim monitoring of poisonous vapour.
结合19 000 dwt化学品/成品油船的设计,从系统基本原理及构成上,简要介绍了主推进装置、电站管理、船舶控制系统、阀门遥控与液位测量、变频货油泵、液货舱加热和有毒液货蒸汽回收等方面的自动化设计,探讨了此类船型的自动化系统特点及发展方向。
2.
In this paper,neural network technique is applied to build a fault diagnosis expert system for ship control systems.
将神经网络技术应用于船舶控制系统故障诊断专家系统,给出了系统的组成和知识的表达方法;提出了自增长动态网络学习算法,其优点在于学习迅速,能动态建造多层网;给出了神经网络专家系统的推理方法
4)  Shiphandling
船舶操纵
1.
It also explains the occasion of preventing collisions and the shiphandling for the crossing vessels.
根据国际海上操纵与避碰规则与航海实践经验,介绍交叉相遇局面中两船的责任划分,并对两船的避碰时机以及船舶操纵加以说明。
2.
Based on the above views, a simulating platform is established in shiphandling simu.
为了对大型船舶进出大连港香炉礁航道及出坞船旋回掉头靠泊作业进行船舶操纵方案论证及船舶通航安全评估,应用日本MMG分离建模方法,建立了大型船舶操纵运动的仿真模型,给出了电子海图中相关的坐标转换算法。
3.
Based on the analysis of marine transport system formed by environment, ship & man, the shiphandling simulation and evaluation of marine safety and efficiency are described, which are illustrated by two examples.
在分析了航行环境,船舶与人构成的运航系统的基础上,介绍了船舶操纵模拟研究的方法与反映航行安全与效率的评判指标。
5)  ship handling
船舶操纵
1.
Stopping maneuver which must be in whole control by shipmen is an complex question in ship handling and can be of real significance in practice.
制动机动是船舶操纵运动中一个比较复杂而有重要实践意义的课题,舰船驾驶员必须充分掌握舰船的制动机动性能。
2.
The constitution of the training system for ship handling was introduc ed.
介绍了船舶操纵训练系统的构成 ,该系统使用多通道视频拼接的方法生成 360°视景 。
6)  ship steering
船舶操纵
1.
After introducing the architecture of the ship steering simulation system, this paper focuses on three parts of the system, the designment of the whole system, the implementation of the 3D view model, and the display of the 3D view.
在介绍船舶操纵训练系统视景的体系结构基础上,提出系统的整体设计,三维场景的建模的实现方法,以及三维场景的显示,最后重点介绍多分辨率模型的策略选择和多分辨率模型的平滑过渡解决方法。
2.
After introducing the architecture of the view sub system of the ship steering simulation system,this article focuses on the requirements of the synchronization of multi-channel views and its implementation technologies,which include multi-thread structure,dead-reckoning,and etc.
在介绍船舶操纵训练系统视景的体系结构基础上,提出视景多通道同步的要求及其技术实现,采用多线程的结构以及推算定位等技术实现多通道同步,使通道帧数差在2帧以内,各通道的产生的画面就感觉是同一时刻、同一视点产生的。
3.
A fuzzy controller for ship steering based on RBF networks and genetic algorithms is designed.
设计了一种基于 RBF网络和遗传优化的船舶操纵模糊控制器。
补充资料:电传操纵系统(见飞机人工飞行操纵系统)


电传操纵系统(见飞机人工飞行操纵系统)
fly-by-wire control system

  dianehuan cuozongx认ong电传操纵系统(fzy一by一wir。。。n:r。,system)见飞机人工飞行操纵系统。
  
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