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Up-wave surface elevation for smooth hydrodynamic control of wave energy conversion in irregular waves

机译:上行波表面高程,可平稳地控制不规则波中波能转换的流体动力

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Real-time smooth reactive control and optimal damping of wave energy converters in irregular waves is difficult in part because the radiation impulse response function is real and causal, which constrains the frequency-dependent added mass and radiation damping according to the Kramers-Kronig relations. Optimal control for maximum energy conversion requires independent synthesis of the impulse response functions corresponding to these two quantities. Since both are non-causal, full cancellation of reactive forces and matching of radiation damping requires knowledge or estimation of device velocity into the future. To address this non-causality and the non-causality of the exciting force impulse response function, the use of up-wave surface elevation has been suggested in the literature for synthesis of the necessary control forces. The overall formulation here draws on draws on this approach and leads to smooth control that is near-optimal given the approximations involved in the time-shifting of the non-causal impulse response functions and the consequent up-wave distances at which wave surface elevation is required. A predominantly heaving submerged device comprised of three vertically stacked discs driving a hydraulic cylinder is studied. Absorbed power performance with the present near-optimal approach is compared with two other cases, (i) when single-frequency tuning is used based on non-real time adjustment of the reactive and resistive loads to maximize conversion at the spectral peak frequency, and (ii) when no control is applied with damping set to a constant value. Simulation results are obtained for wave spectra at different significant wave heights and energy periods representing three locations along the U.S. coastline.
机译:在不规则波中,实时平稳的无功控制和波能转换器的最佳阻尼是困难的,部分原因是辐射脉冲响应函数是真实的和因果关系的,它根据Kramers-Kronig关系约束了频率相关的附加质量和辐射阻尼。为了实现最大能量转换的最佳控制,需要独立合成对应于这两个量的脉冲响应函数。由于两者都是非因果关系,因此要完全抵消反作用力并匹配辐射阻尼,就需要了解或估算未来的设备速度。为了解决激振力脉冲响应函数的这种非因果关系和非因果关系,在文献中已建议使用波表面高程来合成必要的控制力。这里的整体公式是借鉴了这种方法,并给出了平稳的控制,这是合理的,因为考虑到了非因果脉冲响应函数的时移以及由此引起的波面高程的向上波距,近似控制需要。研究了由三个垂直堆叠的驱动液压缸的圆盘组成的主要沉浮式潜水器。将本近乎最佳方法的吸收功率性能与其他两种情况进行了比较:(i)基于无功和阻性负载的非实时调整使用单频调整以最大程度地提高频谱峰值频率的转换,以及(ii)在未将阻尼设置为恒定值的情况下进行控制时。在代表美国海岸线上三个位置的不同有效波高和能量周期的波谱获得了模拟结果。

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