Control of Wave Energy Converter With Losses in Electrical Power Take-Off System

Xiang Zhou, Shangyan Zou, W. Weaver, O. Abdelkhalik
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引用次数: 1

Abstract

A permanent magnet linear electrical machine power takeoff (PTO) unit is simulated on the direct drive wave energy converter in this paper, which is controlled to provide the required reactive power. A shape-based control is implemented to maximize the wave energy production (mechanical PTO) with the limiting constraints on the electric drive. Further, the linear electrical machine design is optimized such that the electrical power output is maximized (e.g., reduced power losses). The numerical simulations are conducted using MATLAB/Simulink and the Simscape toolbox. Linear wave theory is applied in modeling the buoy dynamics. Additionally, the PTO unit is composed of a linear electrical machine, an ideal inverter, and an ideal energy storage system. The results show the proposed PTO tracks the reference control accurately. The electrical power output is significantly improved by limiting the current in the PTO compared to a passive control.
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电力输出系统中带损耗波能变换器的控制
本文在直接驱动波能变换器上对永磁直线电机功率提取装置进行了仿真,控制其提供所需的无功功率。在电力驱动的限制条件下,实现了基于形状的控制,以最大限度地提高波浪能生产(机械PTO)。此外,对线性电机设计进行优化,使电力输出最大化(例如,减少功率损耗)。利用MATLAB/Simulink和Simscape工具箱进行了数值仿真。采用线性波浪理论对浮筒进行动力学建模。此外,PTO单元由线性电机、理想逆变器和理想储能系统组成。结果表明,所提PTO能准确地跟踪参考控制。与无源控制相比,通过限制PTO中的电流,电力输出显着改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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