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Control strategies for a wave energy converter connected to a hydraulic power take-off

机译:连接到液压动力输出装置的波能转换器的控制策略

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Among the various types of wave energy converters currently being developed, heaving point absorbers are one of the simplest and most promising concepts. A typical efficient energy conversion system for point absorbers is based on hydraulic power take-off (PTO) systems, consisting in a double-acting cylinder, a hydraulic motor and two or more accumulators. This paper presents a simple model of a heaving oscillating buoy extracting power by means of a hydraulic system. The hydrodynamic behaviour of the absorber is modelled through application of the linear water wave theory. Apart from the basic elements listed above, the model of the hydraulic system includes leakages and pressure losses and takes into account the compressibility of the fluid. Also, possible control accumulators are considered in order to improve the performance of the hydraulic system by means of properly controlled valves. Different control variables are analysed depending on the wave inputs considered in order to improve the power extraction of the converter. The results prove that it is possible to achieve a great enhancement of the power extraction with the implementation of these control strategies and that a possible combination of some of them might be beneficial for improved efficiency of the components.
机译:在当前正在开发的各种类型的波能转换器中,起伏点吸收器是最简单,最有前途的概念之一。典型的点吸收器高效能量转换系统基于液压动力输出(PTO)系统,该系统由双作用液压缸,液压马达和两个或多个蓄能器组成。本文提出了一个简单的液压系统浮沉振荡浮标提取能力模型。通过应用线性水波理论对吸收器的流体动力学行为进行建模。除了上面列出的基本要素之外,液压系统的模型还包括泄漏和压力损失,并考虑了流体的可压缩性。另外,考虑使用可能的控制蓄能器,以便通过适当控制的阀来改善液压系统的性能。根据所考虑的波输入来分析不同的控制变量,以改善转换器的功率提取。结果证明,通过实施这些控制策略,可以极大地增强功率提取,并且其中某些策略的可能组合可能有利于提高组件的效率。

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