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Optimal control of wave energy converters

机译:波浪能转换器的最佳控制

摘要

A wave energy converter and method for extracting energy from water waves maximizes the energy extraction per cycle by estimating an excitation force of heave wave motion on the buoy, computing a control force from the estimated excitation force using a dynamic model, and applying the computed control force to the buoy to extract energy from the heave wave motion. Analysis and numerical simulations demonstrate that the optimal control of a heave wave energy converter is, in general, in the form of a bang-singular-bang control; in which the optimal control at a given time can be either in the singular arc mode or in the bang-bang mode. The excitation force and its derivatives at the current time can be obtained through an estimator, for example, using measurements of pressures on the surface of the buoy in addition to measurements of the buoy position. A main advantage of this approximation method is the ease of obtaining accurate measurements for pressure on the buoy surface and for buoy position, compared to wave elevation measurements.
机译:用于从水波中提取能量的波能转换器和方法通过估计浮标在浮标上的波动运动的激励力,使用动态模型从估算的激励力中计算出控制力并应用所计算出的控制来最大化每个周期的能量提取。向浮标施加力以从升沉波动运动中提取能量。分析和数值模拟表明,升沉波能量转换器的最佳控制通常采用“爆炸-奇异爆炸”控制的形式。其中给定时间的最佳控制可以是单弧模式也可以是bang-bang模式。当前时间的激励力及其导数可以通过估算器获得,例如,除了测量浮标位置外,还使用浮标表面压力的测量。与波高测量相比,这种近似方法的主要优点是易于获得浮标表面压力和浮标位置的准确测量值。

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