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Rotational Speed Optimization in Oscillating Water Column Wave Power Plants Based on Maximum Power Point Tracking

机译:基于最大功率点跟踪的振荡水柱波电厂转速优化

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After the 2015 United Nations Climate Change Conference (COP21) the interest for clean and renewable energy is high priority in global energy policy. In this sense, the ocean offers a great potential for energy harnessing. However, in the path to commercialization, conversion systems still lack maturity. Oscillating water column (OWC) power plants are among the most promising cost-effective and ecologically compatible technologies. The NEREIDA MOWC wave power plant, located on the Basque coast of Mutriku, is a clear example of this principle. In addition, the maximum power point tracking (MPPT) strategy, which has already been used successfully in other renewable energy systems, stands out as one of the most useful schemes. In this context, this paper focuses on the implementation of a novel MPPT control approach for the OWC systems in order to optimize the power delivered to the grid. For this purpose, a full wave-to-wire plant model is introduced, and a new MPPT-based control scheme is presented. The controller continuously adjusts the energy conversion of the doubly fed induction generator according to an established MPPT curve so as to optimize the power generated. In order to demonstrate the goodness and feasibility of the proposed control scheme, its behavior is tested and compared in two representative case studies of both uncontrolled and controlled plants. In the first case, an air valve control is employed, and in the second case, an MPPT-based control strategy has been implemented. Results show that the proposed MPPT-based control successfully matches the optimum rotational speed, allowing maximum active power generation.
机译:在2015年联合国气候变化大会(COP21)之后,人们对清洁和可再生能源的兴趣已成为全球能源政策的重中之重。从这个意义上讲,海洋为能源利用提供了巨大潜力。然而,在商业化的道路上,转换系统仍不成熟。振荡水塔(OWC)发电厂是最有前途的成本效益和生态兼容技术之一。位于穆特里库(Mutriku)巴斯克(Basque)海岸的NEREIDA MOWC波浪发电厂就是这一原理的明显例子。此外,已经在其他可再生能源系统中成功使用的最大功率点跟踪(MPPT)策略是最有用的方案之一。在这种情况下,本文着重于为OWC系统实施新颖的MPPT控制方法,以优化输送到电网的功率。为此,引入了一个完整的线对线工厂模型,并提出了一种新的基于MPPT的控制方案。控制器根据已建立的MPPT曲线连续调节双馈感应发电机的能量转换,以优化所产生的功率。为了证明所提出的控制方案的优越性和可行性,在非受控工厂和受控工厂的两个代表性案例研究中测试并比较了其行为。在第一种情况下,采用空气阀控制,在第二种情况下,已实施基于MPPT的控制策略。结果表明,所提出的基于MPPT的控制成功匹配了最佳转速,从而实现了最大有功功率的产生。

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