首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >THE IMPACT OF A HIGH-FIDELITY WAVE-TO-WIRE MODEL IN CONTROL PARAMETER OPTIMISATION AND POWER PRODUCTION ASSESSMENT
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THE IMPACT OF A HIGH-FIDELITY WAVE-TO-WIRE MODEL IN CONTROL PARAMETER OPTIMISATION AND POWER PRODUCTION ASSESSMENT

机译:高精度线对数模型在控制参数优化和发电量评估中的作用

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Accurate control parameter optimisation and power production assessment is essential to evaluate the performance of a wave energy converter (WEC). However, commonly used numerical models excessively simplify the power take-off (PTO) system of the WEC, which may strongly affect power production predictions. Therefore, the present paper compares a commonly used WEC model that includes nonlinear viscous losses and an ideal PTO system model, referred to as NLideal, with a high-fidelity wave-to-wire model (HFW2W) model. Results show the incapacity of the commonly used NLideal model to accurately optimise control parameters, particularly using reactive control. Likewise, the annual mean power production (AMPP) predicted using the NLideal model is significantly overestimated, with differences of up to 160% with respect to the more realistic HFW2W model. More dramatically, the use of control parameters optimised with the NLideal model in the HFW2W model results in negative AMPP, meaning that the WEC consumes more energy than it produces.
机译:准确的控制参数优化和发电量评估对于评估波能转换器(WEC)的性能至关重要。但是,常用的数值模型过度简化了WEC的取力器(PTO)系统,这可能会严重影响发电量的预测。因此,本文将包括非线性粘性损失和理想的PTO系统模型(称为NLideal)的常用WEC模型与高保真线对线模型(HFW2W)模型进行了比较。结果表明,常用的NLideal模型无法准确地优化控制参数,尤其是使用无功控制时。同样,使用NLideal模型预测的年平均发电量(AMPP)也被大大高估了,与更现实的HFW2W模型相比,差异高达160%。更重要的是,在HFW2W模型中使用通过NLideal模型优化的控制参数会导致AMPP为负,这意味着WEC消耗的能量多于其产生的能量。

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