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Modeling and Simulation of Wave Energy Generation Plants: Output Power Control

机译:波浪能发电厂的建模与仿真:输出功率控制

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The control and simulation of the power delivered to the grid are becoming an important topic, particularly when the number of distributed power generation systems increases. In this paper, two different control schemes for an oscillating-water-column Wells-turbine–generator module are simulated, implemented, and compared. In the first method, the control system does appropriately adapt the slip of the induction generator according to the pressure drop entry in order to maximize the generated power, while in the second method, a traditional proportional–integral–derivative-based control is implemented in order to deal with the desired power-reference-tracking problem. It will be shown how the controllers avoid the stalling behavior and that the average power of the generator fed into the grid is significantly higher in the controlled cases than in the uncontrolled one while providing the desired output power.
机译:输送到电网的功率的控制和仿真已成为重要的课题,尤其是在分布式发电系统数量增加的情况下。在本文中,模拟,实现和比较了摆动水塔韦尔斯涡轮发电机模块的两种不同的控制方案。在第一种方法中,控制系统会根据压降的输入来适当地调整感应发电机的滑差,以最大程度地提高发电量;而在第二种方法中,则采用传统的基于比例-积分-微分的控制方法。为了处理所需的功率参考跟踪问题。将显示出控制器如何避免失速行为,并且在提供所需的输出功率的同时,在受控情况下,馈入电网的发电机的平均功率要比非受控情况下的功率高得多。

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