Consideration on how to decide the optimal control force of a PA-WEC for maximizing its electric power generation in irregular waves

M. Murai, H. Iikura
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Abstract

This paper describes an analytical solution on the optimal control force for maximizing power generation of Point Absorber Wave Energy Converter (PA-WEC) in irregular waves. The response and optimum control force on a PA-WEC in regular waves achiving a maximum electric power generation has been already developed taking into account the energy loss in the electric circuit in frequency domain and in regular waves. On the other hand, in irregular waves, to obtain the best control force in timely has been difficult, because the control force act on the instantaneous power generation rate and the whole later heaving response of the PA-WEC. This means that whether the decided control force is the best or not is difficult to judge. Actually, in the previous researches, the researchers applied a lot of way to decide the control force. But the generated electric power in irregular waves ratio to the expected generated power obtained from the wave spectrum is up to almost from 0.3 to 0.7. This paper presents an analytical solution of the control force parameter for maximizing the generated electric power in irregular waves on a PA-WEC in time domain. Then, numerical studies are carried based on the proposed method. From these results, it is shown that the proposed method achieves the generated electric power to the expected generated power obtained from the wave spectrum
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如何确定PA-WEC的最优控制力,使其在不规则波浪中发电量最大化
本文给出了点吸收波能转换器(PA-WEC)在不规则波浪中发电量最大化的最优控制力的解析解。考虑电路在频域和规则波中的能量损失,已经建立了在规则波中实现最大发电量的PA-WEC的响应和最优控制力。另一方面,在不规则波浪中,由于控制力作用于PA-WEC的瞬时发电速率和整个后期起伏响应,因此及时获得最佳控制力一直是困难的。这意味着所决定的控制力量是否是最好的很难判断。实际上,在以往的研究中,研究者们采用了很多方法来确定控制力。而不规则波的发电量与从波谱中得到的期望发电量之比几乎从0.3上升到0.7。本文给出了在时域上PA-WEC在不规则波中使发电功率最大化的控制力参数的解析解。在此基础上进行了数值研究。结果表明,所提出的方法能够将产生的功率与从波谱中得到的期望产生的功率相匹配
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