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Experimental Evaluation and Predictive Control of an Air-Cored Linear Generator for Direct-Drive Wave Energy Converters

机译:直接驱动波能转换器的空芯线性发电机的实验评估和预测控制

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摘要

Direct-drive wave energy converters using linear generators (LGs) are attractive due to their high efficiency and reliability. Air-cored LGs, in particular, are receiving increasing attention due to the elimination of attraction forces between the stator and translator and the resulting reduction in structural mass. In this paper, details of the construction of a novel air-cored LG are presented. A custom test rig is constructed for testing the LG, particularly with zero overlap between its stator and translator at the stroke ends. Predictive control for maximum power transfer from the generator is first proposed and tested as a sensorless alternative to methods employing linear position feedback and electromotive force (EMF) estimation with sense coils. The control strategy is verified through simulation and measurements. It is also shown that allowing for zero stator–translator overlap at the stroke ends can improve the power-to-weight ratio compared to complete stator–translator overlap during the entire stroke.
机译:使用线性发电机(LG)的直接驱动波能转换器具有很高的效率和可靠性,因此很有吸引力。由于消除了定子和平移件之间的吸引力以及由此导致的结构质量的降低,空心LG尤其受到越来越多的关注。在本文中,详细介绍了新型空芯LG的构造。定制测试设备用于测试LG,特别是在行程末端,其定子和转换器之间的重叠为零。首先提出了对发电机最大功率传输的预测控制,并作为无传感器替代方法进行了测试,该方法是对感应线圈采用线性位置反馈和电动势(EMF)估计的方法的替代方法。通过仿真和测量验证了控制策略。还显示出,与整个行程中的定子-转换器完全重叠相比,在行程末端允许零个定子-转换器重叠可以提高功率重量比。

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