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On improving wave energy conversion, part II: Development of latching control technologies

机译:关于改善波能转换,第二部分:闭锁控制技术的发展

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In the first part of the investigation, a new latching control technology is proposed, and it has been shown that the new latching control technique is capable of greatly improving wave energy conversion in regular waves. In this part of the research, a new analysis technique is developed for studying the latching control technology. A 'time-out' method is developed and employed for 're-packing' the dynamic system, hence the analysis of the latching control technology can be changed from a complete nonlinear dynamics into a simple linear dynamic system, and it is further proven that the 're-packed' dynamic system can be transformed back to frequency domain for further analysis. In the research, we could prove how the phase optimal condition can be attained. Further on, the new latching control technology will be used in irregular waves. Unlike many other latching control technologies, the new latching control does not need the detailed future information. In the development of the technology, we will show how we can obtain the latching duration for irregular waves for improving wave power extraction. As a result, we could remove one barrier in implementing latching control strategy while the wave energy conversion can still be much improved. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在研究的第一部分中,提出了一种新的锁存控制技术,并且已经表明,该新的锁存控制技术能够极大地改善规则波中的波能量转换。在这部分研究中,开发了一种新的分析技术,用于研究锁存控制技术。由于开发了“超时”方法并将其用于动态系统的“重新包装”,因此可以将闭锁控制技术的分析从完整的非线性动力学更改为简单的线性动态系统,并进一步证明了可以将“重新包装”的动态系统转换回频域以进行进一步分析。在研究中,我们可以证明如何获得相位最佳条件。此外,新的闩锁控制技术将用于不规则波中。与许多其他闩锁控制技术不同,新的闩锁控制不需要详细的将来信息。在技​​术的发展中,我们将展示如何获取不规则波的闭锁持续时间,以改善波功率提取。结果,我们可以消除实施闩锁控制策略的障碍,同时波能转换仍可以大大改善。 (C)2014 Elsevier Ltd.保留所有权利。

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