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Electrical machines for power generation in oscillating wave energy conversion system ??? A comparative study

机译:振荡波能量转换系统中用于发电的电机比较研究

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In this paper, system level design of an oscillating wave energy conversion system (WECS) using doubly-fed induction generator (DFIG) is compared with systems using squirrel-cage induction generator (SCIG) and permanent magnet synchronous generator (PMSG). The comparative study is carried out considering major hardware components and their rating requirements for each system. Although, SCIG and PMSG based systems are more simple and reliable, DFIG can enable compact and cost effective systems especially for high power WECS design. DFIG can generate power above its nominal rating at super-synchronous rotor speed and hence can offer an attractive solution for the oscillating power pattern of WECS. Moreover, rotor side control of the DFIG enables one to work with lower voltage and power level which effectively reduces the ratings of the power converters and other passive elements in the system. The system design comparison is performed with a wave energy converter (WEC) modeled for maximum power output around 500 kW. System operation with singly-fed generator (SCIG) and doubly-fed generator (DFIG) have been studied through simulation in real time simulator (OPAL-RT). The results of the comparison are shown with details of the major component rating of each system.
机译:在本文中,将使用双馈感应发电机(DFIG)的振荡波能量转换系统(WECS)的系统级设计与使用鼠笼式感应发电机(SCIG)和永磁同步发电机(PMSG)的系统进行了比较。进行比较研究时要考虑主要硬件组件及其对每个系统的等级要求。尽管基于SCIG和PMSG的系统更加简单可靠,但是DFIG可以实现紧凑且经济高效的系统,特别是对于高功率WECS设计。 DFIG可以在超同步转子速度下产生高于其标称额定值的功率,因此可以为WECS的振荡功率模式提供有吸引力的解决方案。而且,DFIG的转子侧控制使人们能够在较低的电压和功率水平下工作,从而有效地降低了系统中功率转换器和其他无源元件的额定值。系统设计比较是通过使用波浪能转换器(WEC)进行建模的,该波浪能转换器的最大输出功率约为500 kW。通过在实时模拟器(OPAL-RT)中进行仿真,研究了使用单馈发电机(SCIG)和双馈发电机(DFIG)的系统运行情况。比较结果显示了每个系统的主要组件额定值的详细信息。

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