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Real-time latching control strategies for the solo Duck wave energy converter in irregular waves

机译:鸭波能量转换器在不规则波中的实时闭锁控制策略

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摘要

As a point absorber, the solo Duck wave energy converter (WEC) shows high power capture efficiency within a narrow bandwidth around the natural period. In this paper, real-time latching control is applied to the solo Duck WEC in irregular waves to improve its performance in sea states away from the natural period. Two predictive latching control strategies, in which one is close-to-optimal and the other is sub-optimal, and one non-predictive strategy are considered. The improvement of the WEC performance due to latching control is studied. Compared to the performance under simple resistive control, the three latching control strategies show almost equivalent control effect, leading to an average increase of the maximum relative capture width by around 70% and an average decrease of the optimal power take-off (PTO) damping coefficient by around 60%. Since the non-predictive strategy requires no prediction of future excitation force and WEC motion, it can be identified as the best choice for the solo Duck WEC under latching control. Although latching control leads to significant increase of fatigue load on the WEC hull like other advanced controls, it does not cause additional fatigue damage to the PTO.
机译:作为单点吸收器,鸭式单波能量转换器(WEC)在自然周期附近的窄带宽内显示出高功率捕获效率。本文将实时闭锁控制应用于不规则波中的独鸭WEC,以提高其在远离自然周期的海况下的性能。考虑了两种预测性闩锁控制策略,其中一种是接近最优的,另一种是次优的,并且考虑了一种非预测性的策略。研究了由于闭锁控制而提高的WEC性能。与简单电阻控制下的性能相比,三种闩锁控制策略显示出几乎等效的控制效果,从而使最大相对捕获宽度平均增加了约70%,并且最佳取力器(PTO)阻尼平均减少了系数约60%。由于非预测性策略不需要预测未来的激励力和WEC运动,因此可以将其确定为在闭锁控制下独鸭WEC的最佳选择。尽管像其他高级控件一样,闩锁控制会导致WEC船体的疲劳载荷显着增加,但不会对PTO造成额外的疲劳损坏。

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