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Second-order wave maker theory using force-feedback control. Part I: A new theory for regular wave generation

机译:使用力反馈控制的二阶造波器理论。第一部分:规则波产生的新理论

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Second-order wave maker theory has long been established; the most extensive and detailed approach given by Schaeffer [1996. Second-order wave maker theory for irregular waves. Ocean Engineering 23, 47-88]. However, all existing theories assume the wave paddle is driven by a position-feedback motion controller. Early research in the wave power field led to the design of a force-controlled absorbing wave machine [Salter, S., 1982. Absorbing wave-makers and wide tanks. In: Directional Wave Spectra Applications, pp. 185-200]. In addition to operating as an excellent absorber, this machine seemed to introduce very little spurious harmonic content when driven with a first-order command signal. The present paper provides a mathematical model for the operation of wave makers using force-feedback control and seeks to explain this apparent advantage. The model is developed to second-order so that a command signal compensating for the remaining spurious wave is also provided. Due to the complexity of the problem, the model has been limited to flap-type wave machines and the generation of regular waves. A variety of numerical tests in force-contror mode have been conducted, indicating that the spurious wave content is greatly reduced when compared to the position-control mode. A separate experimental study validating the theory is presented in a part II paper by the same authors.
机译:二阶造波理论已经建立很久了。 Schaeffer [1996年]给出的最广泛,最详细的方法。不规则波的二阶造波器理论。海洋工程23,47-88]。但是,所有现有理论都假设波瓣是由位置反馈运动控制器驱动的。波浪动力领域的早期研究导致了力控制吸收波机的设计[Salter,S.,1982。吸收波发生器和宽罐。在:方向波光谱应用,第185-200页]。除了用作出色的吸收器外,该机器在由一阶指令信号驱动时似乎引入的杂散谐波含量也很少。本文为使用力反馈控制的造波机操作提供了数学模型,并试图解释这种明显的优势。该模型被开发为二阶模型,因此还提供了补偿剩余杂散波的命令信号。由于问题的复杂性,该模型仅限于襟翼式波动机和规则波动的产生。在力控制模式下进行了各种数值测试,表明与位置控制模式相比,杂波含量大大降低了。同一作者在第二部分的论文中提出了另一项验证该理论的实验研究。

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