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Experimental Validation of a Marine Current Turbine Simulator: Application to a Permanent Magnet Synchronous Generator-Based System Second-Order Sliding Mode Control

机译:船用电流涡轮仿真器的实验验证:在基于永磁同步发电机的系统二阶滑模控制中的应用

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This paper deals with the experimental validation of a Matlab-Simulink simulation tool of marine current turbine (MCT) systems. The developed simulator is intended to be used as a sizing and site evaluation tool for MCT installations. For that purpose, the simulator is evaluated within the context of speed control of a permanent magnet synchronous generator-based (PMSG) MCT. To increase the generated power, and therefore the efficiency of an MCT, a nonlinear controller has been proposed. PMSG has been already considered for similar applications, particularly wind turbine systems using mainly PI controllers. However, such kinds of controllers do not adequately handle some of tidal resource characteristics such as turbulence and swell effects. Moreover, PMSG parameter variations should be accounted for. Therefore, a robust nonlinear control strategy, namely second-order sliding mode control, is proposed. The proposed control strategy is inserted in the simulator that accounts for the resource and the marine turbine models. Simulations using tidal current data from Raz de Sein (Brittany, France) and experiments on a 7.5-kW real-time simulator are carried out for the validation of the simulator.
机译:本文讨论了船用电流涡轮机(MCT)系统的Matlab-Simulink仿真工具的实验验证。开发的模拟器旨在用作MCT安装的规模和站点评估工具。为此,在基于永磁同步发电机(PMSG)MCT的速度控制范围内评估模拟器。为了增加产生的功率并因此增加MCT的效率,提出了一种非线性控制器。 PMSG已被考虑用于类似的应用,特别是主要使用PI控制器的风力涡轮机系统。但是,这类控制器不能充分处理某些潮汐资源特征,例如湍流和膨胀效应。此外,应考虑PMSG参数的变化。因此,提出了一种鲁棒的非线性控制策略,即二阶滑模控制。拟议的控制策略被插入到模拟器中,该模拟器考虑了资源和船用涡轮机模型。使用来自Raz de Sein(法国布列塔尼)的潮流数据进行仿真,并在7.5kW实时仿真器上进行了实验,以验证仿真器。

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