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A Study about Performance and Robustness of Model Predictive Controllers in a WEC System

机译:WEC系统中模型预测控制器的性能和鲁棒性研究

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This work is located in a growing sector within the field of renewable energies, wave energy converters (WECs). Specifically, it focuses on one of the point absorber waves (PAWs) of the hybrid platform W2POWER. With the aim of maximizing the mechanical power extracted from the waves by these WECs and reducing their mechanical fatigue, the design of five different model predictive controllers (MPCs) with hard and soft constraints has been carried out. As a contribution of this paper, two of the MPCs have been designed with the addition of an embedded integrator. In order to analyze and compare the MPCs with conventional PI type control, an exhaustive study about performance and robustness is realized through the computer simulations carried out, in which uncertainties in the WEC dynamics and JONSWAP spectrum are considered. The results obtained show how the MPCs with embedded integrator improve power production of the WEC system studied in this work.
机译:这项工作位于可再生能源,波浪能转换器(WEC)领域中一个正在增长的部门。具体来说,它着重于混合平台W2POWER的点吸收波(PAW)之一。为了最大化这些WEC从波浪中提取的机械功率并降低其机械疲劳,已经设计了五个具有硬约束和软约束的不同模型预测控制器(MPC)。作为本文的贡献,已经设计了两个MPC,并增加了一个嵌入式集成器。为了分析和比较具有常规PI型控制的MPC,通过计算机仿真实现了对性能和鲁棒性的详尽研究,其中考虑了WEC动力学和JONSWAP频谱的不确定性。获得的结果表明,具有嵌入式集成器的MPC如何提高这项研究中所研究的WEC系统的发电能力。

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