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Model predictive control of parametric excited pitch-surge modes in wave energy converters

机译:波能转换器中参数励磁俯仰-喘振模式的模型预测控制

摘要

A parametric excitation dynamic model is used for a three degrees-of-freedom (3-DOF) wave energy converter. Since the heave motion is uncoupled from the pitch and surge modes, the pitch-surge equations of motion can be treated as a linear time varying system, or a linear system with parametric excitation. In such case the parametric exciting frequency can be tuned to twice the natural frequency of the system for higher energy harvesting. A parametric excited 3-DOF wave energy converter can harvest more power, for both regular and irregular waves, compared to the linear 3-DOF. For example, in a Bretschneider wave, the harvested energy in the three modes is about 3.8 times the energy harvested in the heave mode alone; while the same device produces about 3.1 times the heave mode energy when using a linear 3-DOF model.
机译:参数激励动力学模型用于三自由度(3-DOF)波能转换器。由于升沉运动与俯仰和喘振模式脱钩,因此可以将俯仰-喘振运动方程式视为线性时变系统或带参量激励的线性系统。在这种情况下,可以将参数励磁频率调整为系统固有频率的两倍,以获取更高的能量。与线性3-DOF相比,参量激励的3-DOF波能量转换器可以为规则波和不规则波收集更多的功率。例如,在Bretschneider波中,在三种模式下收集的能量大约是仅在升沉模式下收集的能量的3.8倍;而使用线性3-DOF模型时,同一设备产生的振动模式能量约为3.1倍。

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