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Contribution to a detailed modeling and more reliable simulation of a ship's shaft machine

机译:有助于对船舶竖井机进行详细的建模和更可靠的仿真

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In the following investigation the modeling of the complete electromechanical system of a doubly fed induction machine is discussed for power production/electric propulsion purposes, when being incorporated as a shaft generator into a ship's system. When the doubly fed induction machine serves as a power production machine, contributes to lower emission of CO and fuel saving since its capable of working at different speed (lower) than synchronous. This coincide with the enforcement with which the International Maritime Organization (IMO) and the EU demand reduction of Ship's emissions. The final goal within the frame of this paper is the development of a reliable mathematical model for the mechanical system which includes rotor dynamics and dynamics of tilting-pad journal bearings. The rotor dynamics are expressed in terms of complex variables for the planar coordinates. The total approach aspires to the development of a well established basis for studying the interactions between the electrical and mechanical subsystems and capable of expanding with more complicated models suitable for a reliable design or analysis of various types of faults.
机译:在下面的研究中,讨论了双馈感应电机的完整机电系统的建模,以将其作为竖井发电机并入船舶系统时,用于发电/电力推进。当双馈感应电机用作发电设备时,由于其能够以不同于同步的速度(更低)工作,因此有助于降低CO的排放和节省燃料。这与国际海事组织(IMO)和欧盟要求减少船舶排放的执法相吻合。本文框架内的最终目标是为机械系统开发可靠的数学模型,其中包括转子动力学和可倾瓦滑动轴承的动力学。转子动力学以平面坐标的复杂变量表示。总体方法希望为研究电气子系统和机械子系统之间的相互作用建立良好的基础,并能够使用适用于各种故障的可靠设计或分析的更复杂的模型进行扩展。

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