A rule-based phase control methodology for a slider-crank wave energy converter power take-off system

Yuanrui Sang , H. Bora Karayaka , Yanjun Yan , James Z. Zhang , Darek Bogucki , Yi-Hsiang Yu
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引用次数: 11

Abstract

The slider crank is a proven mechanical linkage system with a long history of successful applications, and the slider-crank ocean wave energy converter (WEC) is a type of WEC that converts linear motion into rotation. This paper presents a control algorithm for a slider-crank WEC. In this study, a time-domain hydrodynamic analysis is adopted, and an AC synchronous machine is used in the power take-off system to achieve relatively high system performance. Also, a rule-based phase control strategy is applied to maximize energy extraction, making the system suitable for not only regular sinusoidal waves but also irregular waves. Simulations are carried out under regular sinusoidal wave and synthetically produced irregular wave conditions; performance validations are also presented with high-precision, real ocean wave surface elevation data. The influences of significant wave height, and peak period upon energy extraction of the system are studied. Energy extraction results using the proposed method are compared to those of the passive loading and complex conjugate control strategies; results show that the level of energy extraction is between those of the passive loading and complex conjugate control strategies, and the suboptimal nature of this control strategy is verified.

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滑杆-曲柄波能量转换器功率输出系统基于规则的相位控制方法
滑块曲柄是一种经过验证的机械连接系统,具有悠久的成功应用历史,滑块曲柄海浪能量转换器(WEC)是一种将直线运动转换为旋转的WEC。提出了一种滑杆曲柄WEC的控制算法。本研究采用时域水动力分析,动力输出系统采用交流同步电机,以实现较高的系统性能。同时,采用基于规则的相位控制策略,最大限度地提取能量,使系统不仅适用于规则正弦波,也适用于不规则波。在规则正弦波和合成不规则波条件下进行了仿真;用高精度、真实的海浪表面高程数据进行了性能验证。研究了有效波高和峰值时段对系统能量提取的影响。将该方法与被动加载和复杂共轭控制策略的能量提取结果进行了比较;结果表明,该控制策略的能量提取水平介于被动加载和复杂共轭控制策略之间,验证了该控制策略的次优性。
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