首页> 外文会议>2015 IEEE International Symposium on Predictive Control of Electrical Drives and Power Electronics >Direct Model Predictive Control of three-level NPC back-to-back power converter PMSG wind turbine systems under unbalanced grid
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Direct Model Predictive Control of three-level NPC back-to-back power converter PMSG wind turbine systems under unbalanced grid

机译:不平衡电网下三级NPC背靠背功率变换器PMSG风机系统的直接模型预测控制

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摘要

Control of grid-tied wind turbine systems under unbalanced grid is one the challenges. This work studies and illustrates several unbalanced grid control methods combined with Direct Model Predictive Control (DMPC) schemes for three level NPC back-to-back power converter Permanent-magnet Synchronous Generator (PMSG) wind turbine systems. Within this paper, three different compensation schemes, i.e., symmetrical current compensation, constant active power compensation, and constant reactive power compensation, using the conventional instantaneous power theory are over-viewed. Then based on a newly reported instantaneous power theory, a DMPC scheme for unbalanced grid three-level NPC back-to-back power converter PMSG wind turbine systems is presented. The performance comparison is illustrated through simulation results.
机译:在不平衡电网下控制并网风力涡轮机系统是挑战之一。这项工作研究并说明了用于三级NPC背靠背功率转换器永磁同步发电机(PMSG)风力涡轮机系统的几种不平衡电网控制方法,并结合了直接模型预测控制(DMPC)方案。在本文中,概述了使用常规瞬时功率理论的三种不同的补偿方案,即对称电流补偿,恒定有功功率补偿和恒定无功功率补偿。然后基于最新报道的瞬时功率理论,提出了一种不平衡电网三电平NPC背靠背功率变换器PMSG风力发电机组的DMPC方案。通过仿真结果说明了性能比较。

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