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Shrouded Tidal Stream Turbine Simulation Model Development and Experimental Validation

机译:带罩的潮汐流水轮机仿真模型开发与实验验证

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This paper presents the modeling steps of a shrouded tidal stream turbine. The main goal of this modeling is to allow the behavior simulation of the converter in order to anticipate its operation under specific conditions and its later development. The observation time scale of the operation system may extend from tidal period (several hours) to converter switching period (milliseconds to microseconds). An assessment of different modeling methodology, based on instantaneous and average models, is carried out. Instantaneous modeling offers the possibility to observe system electrical dynamics, which are driven by power switches, at the expense of an important computational time. In that respect, an average modeling is considered for greater period-scale analyses. So as to reduce the computational time induced by the power electronic modeling, cosimulations between Simulink and PSIM are also established. Simulation results are furthermore compared with some experimental data of an industrial shrouded tidal stream turbine prototype immersed and tested in real off-grid condition. The results and differences observed are sufficiently relevant to consider these models as references for further development.
机译:本文介绍了带罩的潮汐流涡轮机的建模步骤。这种建模的主要目的是允许对转换器进行行为仿真,以预测其在特定条件下的运行以及以后的发展。操作系统的观察时间范围可能从潮汐时间段(几个小时)延伸到转换器切换时间段(毫秒到微秒)。基于瞬时模型和平均模型,对不同的建模方法进行了评估。瞬时建模提供了观察由电源开关驱动的系统电气动态的可能性,而这会浪费大量的计算时间。在这方面,可以考虑使用平均模型进行更大的周期规模分析。为了减少电力电子建模引起的计算时间,还建立了Simulink和PSIM之间的协同仿真。此外,将仿真结果与浸入并在实际离网条件下进行测试的工业带罩潮汐流涡轮机原型的一些实验数据进行了比较。观察到的结果和差异足够相关,可以将这些模型视为进一步开发的参考。

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