Power quality assessment of a wave energy converter using energy storage

Md Imran Ullah, Irina Temiz, Johan Forslund, Jessica Santos Döhler
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Abstract

Wave energy has been an immense area of interest in research and industry in our move towards a sustainable energy production society due to its high energy density and surface area. However, the grid connection of wave energy converters is still one of the major challenges due to the complexity of varying wave resources (amplitude and frequency). Wave energy converters grid integration can lead to several potential challenges, such as voltage fluctuations, harmonics and flicker. Using an energy storage system can help to mitigate few challenges by balancing the grid demand with the wave energy converter power supply. Hence, improving the power quality. This study assesses the power quality of wave energy converters equipped with energy storage against the scenario without any energy storage at different power levels. The power quality in this paper is investigated using total harmonic distortion (THD) of the grid current, dc-link voltage ripple and battery current ripple. The study shows that the addition of a hybrid energy storage system lowers the grid current THD at the point of common coupling (PCC), stabilizes the dc-link voltage ripple and reduces the stress of the battery.
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储能波能变换器的电能质量评价
波浪能由于其高能量密度和表面积,在我们走向可持续能源生产社会的过程中,已经成为研究和工业的一个巨大兴趣领域。然而,由于波浪资源(振幅和频率)变化的复杂性,波浪能转换器的并网仍然是主要挑战之一。波浪能转换器与电网的整合可能会带来一些潜在的挑战,如电压波动、谐波和闪烁。使用储能系统可以通过平衡电网需求和波浪能转换器供电来帮助缓解一些挑战。因此,提高了电能质量。本研究在不同功率水平下,对波浪能变换器的电能质量进行了评估,并与无储能情况进行了对比。本文采用电网电流、直流电压纹波和电池电流纹波的总谐波失真(THD)来研究电能质量。研究表明,混合储能系统的加入降低了共耦合点(PCC)的电网电流THD,稳定了直流电压纹波,减小了电池的应力。
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