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Coordinated Control of Wave Energy Converters Subject to Motion Constraints

机译:受运动约束的波能转换器的协调控制

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摘要

In this paper, a generic coordinated control method for wave energy converters is proposed, and the constraints on motion amplitudes and the hydrodynamic interaction between converters are considered. The objective of the control problem is to maximize the energy converted from ocean waves, and this is achieved by coordinating the power take-off (PTO) damping of each wave energy converter in the frequency domain in each sea state. In a case study, a wave energy farm consisting of four converters based on the concept developed by Uppsala University is studied. In the solution, motion constraints, including constraints on the amplitudes of displacement and velocity, are included. Twelve months of sea states, based on measured wave data at the Lysekil test site on the Swedish west coast, are used in the simulation to evaluate the performance of the wave energy farm using the new method. Results from the new coordinated control method and traditional control method are compared, indicating that the coordinated control of wave energy converters is an effective way to improve the energy production of wave energy farm in harmonic waves.
机译:本文提出了一种通用的波能换能器协调控制方法,并考虑了运动幅度的约束以及换能器之间的流体动力相互作用。控制问题的目的是使从海浪转换的能量最大化,这是通过在每个海域的频域中协调每个波能转换器的取力(PTO)阻尼来实现的。在一个案例研究中,基于Uppsala大学开发的概念,研究了由四个转换器组成的波浪能农场。在解决方案中,包括运动约束,包括对位移和速度的幅度的约束。在模拟中,根据瑞典西海岸Lysekil测试地点测得的海浪数据,使用了十二个月的海况,以模拟方式评估了使用新方法的海浪能源农场的性能。比较了新的协调控制方法和传统控制方法的结果,表明波能转换器的协调控制是提高谐波中波能场能量产生的有效途径。

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