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Impact of modulation strategies on power devices loading for 10 MW multilevel wind power converter

机译:调制策略对10 MW多级风力发电机功率器件负载的影响

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This paper focuses on the control and modulation of a three-level Neutral Point Clamped (3L-NPC) back-to-back full scale converter for a 10 MW direct-drive wind turbine, equipped with a Permanent Magnet Synchronous Generator (PMSG). Emphasis is oriented towards the investigation of the power losses in the semiconductor devices of three-level converter adopting continuous and discontinuous PWM modulation strategies. This aspect strongly influences the operation of the converter and directly affects its efficiency. Therefore, a simulation platform is developed in Matlab/Simulink and PLECS environment to analyse the dynamics of the system using different kinds of modulation strategies, identifying which methods can improve the converter efficiency. It is concluded that 60° discontinuous PWM modulation strategies show less power losses in the semiconductor devices and will increase the overall efficiency of the converter.
机译:本文重点研究了用于10 MW直驱风力涡轮机的三级中性点钳位(3L-NPC)背靠背满量程转换器的控制和调制,该永磁发电机配有永磁同步发电机(PMSG)。重点是研究采用连续和不连续PWM调制策略的三电平转换器的半导体器件中的功率损耗。这方面强烈影响转换器的操作,并直接影响其效率。因此,在Matlab / Simulink和PLECS环境中开发了一个仿真平台,以使用不同种类的调制策略来分析系统的动力学,确定哪些方法可以提高转换器效率。结论是,60°不连续PWM调制策略在半导体器件中显示出更少的功率损耗,并将提高转换器的整体效率。

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