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Wave Force Prediction Effect on the Energy Absorption of a Wave Energy Converter With Real-Time Control

机译:基于实时控制的波能变换器能量吸收的波力预测效应

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摘要

Real-time control has been widely adopted to enlarge the energy extraction of a wave energy converter (WEC). In order to implement a real-time control, it is necessary to predict the wave excitation forces in the close future. In many previous studies, the wave forces over the prediction horizon were assumed to he already known, while the wave force prediction effect has been hardly examined. In this paper, we investigate the effect of wave force prediction on the energy absorption of a heaving point-absorber WEC with real-time latching control. The real-time control strategy is based on the combination of optimal command theory and first order-one variable grey model. It is shown that a long prediction horizon is beneficial to the energy absorption, whereas the prediction deviation reduces extracting efficiency of the WEC. Further analysis indicates that deviation of wave force amplitude has little influence on the WEC performance. It is the phase deviation that leads to energy loss. Since the prediction deviation accumulates over the horizon, a moderate horizon is, thus, recommended.
机译:已广泛采用实时控制来扩大波能量转换器(WEC)的能量提取。为了实现实时控制,有必要在密切的未来预测波激发力。在许多先前的研究中,假设预测地平线上的波力已经知道,而难以检查波力预测效果。在本文中,我们研究了波力预测对利用实时锁定控制的厚度吸收器WEC的能量吸收的影响。实时控制策略基于最优命令理论和第一阶-One变量灰色模型的组合。结果表明,长预测地平线有利于能量吸收,而预测偏差降低了WEC的提取效率。进一步的分析表明波力幅度的偏差对WEC性能影响不大。它是导致能量损失的相位偏差。由于预测偏差累积在地平线上,因此建议使用中等地平线。

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