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Generator Speed Control and Experimental Verification of Tidal Undersea Kite Systems

机译:发电机速度控制和潮汐Undersea风筝系统的实验验证

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Tethered-UnderSea-Kites (TUSK) represent a new electric power generation concept for harvesting the energy of the tidal current. A TUSK system has the advantage of increasing the extracted power from the tidal flow compared to a traditional static tidal turbine of the same size. This paper deals with the modeling and control of a TUSK tidal generator in order to estimate the energy production of such a system. A model of the generator drive mounted on a TUSK is presented in this paper. The produced power is periodically variating depending on the kite's motion into the sea and a suitable Maximum-Power-Point-Tracking (MPPT) algorithm for controlling the generator speed has been developed in order to maximize the power production. The developed control strategy of the drive has been experimentally verified with a 35kVA laboratory emulator of the TUSK and experimental results of several power production profiles are shown.
机译:Tetered-Undersea-Kites(托斯)代表了一种用于收集潮流能量的新电力发电概念。与传统静态潮汐涡轮机相同的相同尺寸的传统静态潮气机相比,毛刺系统具有增加潮流的提取功率的优点。本文涉及托斯潮汐发生器的建模和控制,以估计这种系统的能量产生。本文提出了安装在托斯上的发电机驱动器的模型。由于风筝的运动进入海的运动,所产生的功率是周期性的,并且已经开发了用于控制发电机速度的合适的最大功率点跟踪(MPPT)算法,以最大化电力生产。驱动器的开发控制策略已经通过实验验证了35kVA实验室仿真器的TUSK,并显示了几个电力生产型材的实验结果。

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