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Modelling, control and frequency domain analysis of a tidal current conversion system with onshore converters

机译:具有岸上转换器的潮流转换系统的建模,控制和频域分析

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摘要

To optimise a tidal energy conversion system, the operation, maintenance and power generation aspects have to be taken into account. As a result the key focus of this study is to propose and investigate an alternative method of implementing a tidal energy conversion system using a pitch-regulated turbine and a variable-speed squirrel cage induction generator with long distance converters. The generator power output can be optimised by utilising variable-speed control strategies allowing the system to operate at maximum power coefficient while availability can be increased by reducing the components installed offshore by using long three-phase cables between the generator and onshore voltage source converters. The tidal current energy conversion system is investigated by developing a full resource-to-grid model in MATLAB/SIMULINK and by performing system analysis regarding the effects of harmonics in the long subsea cables. Simulation results show that optimised filter design and the choice of suitable operating frequency for the generator controller can minimise the overvoltages associated with the harmonics and the reflecting voltage waves in the cables.
机译:为了优化潮汐能转换系统,必须考虑运行,维护和发电方面。因此,本研究的重点是提出和研究一种替代方法,该方法使用变桨调节式涡轮机和带有长距离转换器的变速鼠笼式感应发电机来实现潮汐能转换系统。发电机的输出功率可以通过变速控制策略进行优化,从而使系统以最大功率系数运行,同时通过在发电机和陆上电压源转换器之间使用长的三相电缆来减少海上安装的组件,可以提高可用性。通过在MATLAB / SIMULINK中开发完整的资源到网格模型并通过执行有关长海底电缆中谐波影响的系统分析,来研究潮流能量转换系统。仿真结果表明,优化的滤波器设计和为发电机控制器选择合适的工作频率可以最大程度地减少与谐波和电缆中反射电压波相关的过电压。

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