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Nonlinear optimal wave energy converter control with application to a flap-type device

机译:非线性最优波能量转换器控制与襟翼式设备

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Wave energy converters (WECs) require active control to maximise energy capture over a wide range of sea conditions, which is generally achieved by making the device resonate. The exaggerated device motion arising at resonance, however, may result in nonlinear effects that are ignored by the linear models that are typically employed. In particular, nonlinear viscous forces are significant for particular device types, such as hinged flaps, which we take as a case study in this paper. The paper develops a general nonlinear WEC control methodology based on pseudospectral methods. The continuous time energy maximization problem is fully discretised (both state and control), and the optimal solution is obtained by solving the resulting finite dimensional optimization problem. By way of example, the nonlinear viscous damping for a hinged flap WEC is incorporate into the control model. It is shown that the ratio of energy captured to energy dissipated is significantly increased with the nonlinear controller, compared to the linear case.
机译:波能量转换器(WECs)需要主动控制以使能量捕获最大化在广泛的海上条件下,这通常通过使器件产生共振来实现。然而,在共振时产生的夸张的装置运动可能导致由通常采用的线性模型忽略的非线性效应。特别地,非线性粘性力对于特定的装置类型(例如铰链翼片)是显着的,这是我们作为本文的案例研究。本文基于伪谱方法开发了一般非线性WEC控制方法。连续时间能量最大化问题是完全离散的(状态和控制),通过求解所得的有限尺寸优化问题来获得最佳解决方案。举例来说,铰接翼片WEC的非线性粘性阻尼掺入控制模型中。结果表明,与线性情况相比,非线性控制器捕获到能量耗散的能量比率显着增加。

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