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A novel FACTS dynamic stabilisation scheme for stand-alone tidal energy conversion systems

机译:独立潮汐能转换系统的新型FACTS动态稳定方案

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摘要

Renewable abundant ocean kinetic energy has become increasingly popular as a consequence of strong ecological viable concerns and economical energy solutions in remote island communities. However, the integration of dispersed renewable tidal energy will pose a greater challenge to the power quality of distribution networks in remote areas due to fluctuation of the tidal stream velocity. The paper presents the dynamic simulation of novel stabilisation scheme with coordinated hybrid controller developed by the second author. The tidal energy converter system comprises four key parts. The tidal turbine drives an induction generator and stabilised using the novel modulated power filter MPFC and SVC compensator. The standalone renewable energy scheme feeds a hybrid electric load. The proposed integrated tidal green energy conversion scheme with all subsystems has been digitally simulated using the Matlab/Simulink/Sim-Power software environment. The novel filter compensator scheme with the dynamic error driven hybrid controller developed by the second author was fully validated.
机译:由于强烈的生态可行性问题和偏远岛屿社区的经济能源解决方案,可再生的丰富海洋动能已变得越来越受欢迎。然而,由于潮汐流速度的波动,分散的可再生潮汐能的整合将对偏远地区的配电网络的电能质量提出更大的挑战。本文介绍了第二作者开发的带有协调混合控制器的新型稳定方案的动态仿真。潮汐能转换系统包括四个关键部分。潮汐涡轮机驱动感应发电机,并使用新型调制功率滤波器MPFC和SVC补偿器进行稳定。独立的可再生能源计划为混合电力负荷供电。使用Matlab / Simulink / Sim-Power软件环境对拟议的与所有子系统集成的潮汐绿色能源转换方案进行了数字仿真。第二作者开发的带有动态误差驱动混合控制器的新型滤波器补偿器方案得到了充分验证。

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