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Offshore underwater substation for wave energy converter arrays

机译:用于波能转换器阵列的近海水下变电站

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In this study, the design, construction, deployment and operation of an offshore underwater substation is discussed. The seabed placed substation interconnects three linear generator wave energy converters (WECs) at the Swedish Lysekil wave energy research site. The power from the WECs fluctuates because of their direct-driven topology. The generator voltage has varying electrical frequency and amplitude. To reduce the fluctuations, the individual voltages of the WECs are rectified and the power is added on a common DC-bus in the substation. The voltage is inverted, transformed and power is transmitted to an on-shore resistive load. The substation was retrieved on two occasions since the deployment in the spring of 2009. The functionality of the substation is validated by comparing voltage and current wave forms from Simulink with measured results from laboratory experiments. In addition, a sample of results from real offshore operation is illustrated and discussed. With a proportional-integral-derivative (PID)-regulator in the inverter control, the small fluctuations in the DC-bus voltage could be minimised. However, this would reduce the energy storage capability of the DC-link smoothing capacitors.
机译:在这项研究中,讨论了海上水下变电站的设计,建造,部署和操作。瑞典Lysekil波浪能研究站点将海底放置的变电站互连三个线性发电机波浪能转换器(WEC)。 WEC的功率因其直接驱动的拓扑而波动。发电机电压具有变化的电频率和振幅。为了减少波动,对WEC的各个电压进行整流,并在变电站的公共DC总线上增加功率。电压被反相,变换并且功率被传输到岸上的电阻性负载。自2009年春季部署以来,已两次检索了变电站。通过比较Simulink的电压和电流波形与实验室实验的测量结果,验证了变电站的功能。此外,还展示并讨论了实际海上作业的结果样本。通过在变频器控制中使用比例积分微分(PID)调节器,可以将直流母线电压的细微波动降至最低。但是,这会降低直流母线平滑电容器的能量存储能力。

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