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Strategies for active tuning of Wave Energy Converter hydraulic power take-off mechanisms

机译:主动调整Wave Energy Converter液压动力输出机构的策略

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This paper presents a study of practically implementable active tuning methods for a Wave Energy Converter (WEC) power take-off (PTO). It is distinguished from other simulation studies by the level of detail and realism in the inputs and the PTO model. Wave data recorded at the European Marine Energy Centre is used to derive input data for a detailed component level model of a hydraulic PTO. A methodology is presented for obtaining the optimum PTO damping co-efficient for a given sea state, and an open loop active tuning method is used to adjust the PTO parameters to achieve this optimum damping in service. The investigation shows that tuning of a hydraulic PTO to an estimated wave frequency is a difficult task due to sea state estimation errors and the complex dynamics of a realistic PTO. Preview knowledge of the future waves was shown to provide no meaningful improvement in energy capture for the device under investigation. Significantly, power gains observed in similar work using simplified linear PTO models or simplified sea states are not seen here, demonstrating that over-simplification of the PTO during the simulation phase of WEC development could lead to incorrect design decisions and subsequent additional delay and cost. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种用于波能转换器(WEC)取力器(PTO)的切实可行的有源调谐方法的研究。它与其他模拟研究的区别在于输入和PTO模型的详细程度和真实性。欧洲海洋能源中心记录的海浪数据用于导出液压PTO的详细组件级模型的输入数据。提出了一种用于获取给定海况的最佳PTO阻尼系数的方法,并使用开环有源调谐方法来调整PTO参数以实现使用中的最佳阻尼。调查表明,由于海况估计误差和实际PTO的复杂动态,将液压PTO调整到估计的波频率是一项艰巨的任务。预示着对未来海浪的预览知识无法为正在调查的设备提供任何有意义的能量捕获改进。值得注意的是,在这里没有看到使用简化的线性PTO模型或简化的海况在类似工作中观察到的功率增益,这表明在WEC开发的仿真阶段过分简化PTO可能会导致错误的设计决策以及随之而来的额外延迟和成本。 (C)2016 Elsevier Ltd.保留所有权利。

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