会议论文详细信息
International Conference on Applied Sciences 2017
Hardware-in-the-Loop emulator for a hydrokinetic turbine
Rat, C.L.^1 ; Prostean, O.^1 ; Filip, I.^1
Politehnica University of Timisoara, Department of Automation and Applied Informatics, Vasile Parvan str., no. 1-2, Timisoara
300223, Romania^1
关键词: Control configuration;    Hard-ware-in-the-loop;    Hydrokinetic turbines;    Impact on the environment;    LabView programming environment;    Permanent magnet synchronous generator;    Real time simulations;    Renewable energy technologies;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/294/1/012071/pdf
DOI  :  10.1088/1757-899X/294/1/012071
来源: IOP
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【 摘 要 】

Hydroelectric power has proven to be an efficient and reliable form of renewable energy, but its impact on the environment has long been a source of concern. Hydrokinetic turbines are an emerging class of renewable energy technology designed for deployment in small rivers and streams with minimal environmental impact on the local ecosystem. Hydrokinetic technology represents a truly clean source of energy, having the potential to become a highly efficient method of harvesting renewable energy. However, in order to achieve this goal, extensive research is necessary. This paper presents a Hardware-in-the-Loop emulator for a run-of-the-river type hydrokinetic turbine. The HIL system uses an ABB ACS800 drive to control an induction machine as a significant means of replicating the behavior of the real turbine. The induction machine is coupled to a permanent magnet synchronous generator and the corresponding load. The ACS800 drive is controlled through the software system, which comprises of the hydrokinetic turbine real-time simulation through mathematical modeling in the LabVIEW programming environment running on a NI CompactRIO (cRIO) platform. The advantages of this method are that it can provide a means for testing many control configurations without requiring the presence of the real turbine. This paper contains the basic principles of a hydrokinetic turbine, particularly the run-of-the-river configurations along with the experimental results obtained from the HIL system.

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