Real-Time Latching Control of Wave Energy Converter with Consideration of Wave Force Prediction

L. Li, Yan Gao, Zhiming Yuan
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Abstract

A real-time latching controller with consideration of wave force prediction is developed and applied to a heaving point-absorber to maximize its energy absorption. The control scheme is based on the combination of optimal command theory and first order-one variable grey model GM(1,1). By forecasting the wave forces in the near future, the control action at the next instant is deduced. Simulation results show that the energy absorption is increased due to the real-time controller. Therefore, the developed real-time controller is applicable to an industrial wave energy converter (WEC) in random waves. The effect of wave force prediction deviation is also examined. It is shown that the control efficiency is reduced in the presence of prediction deviation.
考虑波浪力预测的波浪能转换器实时闭锁控制
开发了一种考虑波浪力预测的实时闭锁控制器,并将其应用于升沉点减振器,使其能最大限度地吸收能量。该控制方案基于最优命令理论和一阶一元灰色模型GM(1,1)的结合。通过对近期波浪力的预测,推导出下一时刻的控制作用。仿真结果表明,实时控制器的引入提高了系统的能量吸收。因此,所开发的实时控制器适用于工业波浪能量转换器(WEC)中的随机波。并对波浪力预测偏差的影响进行了分析。结果表明,存在预测偏差时,控制效率会降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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