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Large-Scale Electric Propulsion Systems in Ships Using an Active Front-End Rectifier

机译:使用有源前端整流器的舰船大型电力推进系统

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In the case of the electric propulsion system on the vessel, Diode Front End (DFE) rectifiers have been applied for large-sized ships and Active Front End (AFE) rectifiers have been utilized for small and medium-sized ships as a part of the system. In this paper, we design a large electric propulsion ship system using AFE rectifier with the proposed phase angle detector and verify the feasibility of the system by simulation. The phase angle derived from the proposed phase angle detection method is applied to the control of the AFE rectifier instead of the zero-crossing method used to detect the phase angle in the control of the conventional AFE rectifier. We compare and analyze the speed control, Direct Current (DC)-link voltage, harmonic content and measurement data of heat loss by inverter switch obtained from the simulation of the electric propulsion system with the 24-pulse DFE rectifier, the conventional AFE rectifier, and the proposed AFE rectifier. As a result of the simulation, it was confirmed that the proposed AFE rectifier derives a satisfactory result similar to that of a 24-pulse DFE rectifier with a phase shifting transformer installed according to the speed load of the ship, and it can be designed and applied as a rectifier of a large-sized vessel.
机译:就船舶上的电力推进系统而言,二极管前端(DFE)整流器已用于大型船舶,有源前端(AFE)整流器已用于小型和中型船舶,是其中的一部分。系统。在本文中,我们使用提出的相角检测器设计了使用AFE整流器的大型电力推进船系统,并通过仿真验证了该系统的可行性。从提出的相角检测方法得出的相角将应用于AFE整流器的控制,而不是用于传统AFE整流器控制中用于检测相角的过零方法。我们比较并分析了速度控制,直流母线电压,谐波含量和逆变器开关的热量损失测量数据,这些数据是通过使用24脉冲DFE整流器(传统的AFE整流器)对电推进系统进行仿真获得的,以及拟议的AFE整流器。仿真结果表明,所提出的AFE整流器可得出与安装了相移变压器的24脉冲DFE整流器类似的令人满意的结果,该整流器可以根据船舶的速度负载进行设计和设计。用作大型船舶的整流器。

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