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Complementary Control of Oscillating Water Column-Based Wave Energy Conversion Plants to Improve the Instantaneous Power Output

机译:基于振荡水柱的波浪能转换装置的补充控制,以提高瞬时功率输出

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摘要

In this paper, an oscillating water column-based wave energy conversion plant is modeled and controlled by means of two complementary control strategies in order to improve the conversion of wave energy into electric power. This wave power generation system consists of a capture chamber, a Wells turbine, and an induction generator. The improvement relays on the implementation of a control scheme that combines two different control methods: a rotational speed control and an airflow control implemented by means of a throttle valve in series with the turbine. The use of rotational speed control provides a fast way to react to the abrupt and short changes in the turbine speed, ensuring that the average power of the generator is adequately adjusted according to the incident wave power level. Besides, a throttle-valve is used to control the flow through the turbine so as to increase the amount of energy produced, particularly at the higher incident wave power levels. These two control strategies complement each other, maximizing and improving the quality of supply by controlling and smoothing the generated power for different scenarios of wave oscillations, variations of wave grouping, and changes in the sea state.
机译:在本文中,通过两种互补的控制策略对振荡水柱式波浪能转换装置进行建模和控制,以提高波浪能向电能的转换。该波浪发电系统由捕获室,韦尔斯涡轮机和感应发电机组成。改进基于结合了两种不同控制方法的控制方案的实施:转速控制和气流控制,该控制通过与涡轮机串联的节流阀实现。转速控制的使用提供了一种快速的方法来应对涡轮机速度的突然变化和短暂变化,从而确保根据入射波功率水平适当调整发电机的平均功率。此外,节流阀用于控制通过涡轮的流量,以增加产生的能量,特别是在较高的入射波功率水平下。这两种控制策略相辅相成,通过控制和平滑波浪波动,波浪分组变化和海况变化的不同场景下的发电功率来最大化和改善供电质量。

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