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Computer-Based Simulation and Scaled Laboratory Bench System for the Teaching and Training of Engineers on the Control of Doubly Fed Induction Wind Generators

机译:基于计算机的仿真和规模化实验室工作台系统,用于工程师对双馈感应风力发电机控制的教学和培训

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Among the existing renewable sources, wind energy is reaching production rates that are becoming important on the worldwide energy scene. Since the control of these wind generators is a very technical discipline, practical teaching methodologies are of special relevance. Paradoxically, in the past, the training of engineers specializing in this area has lacked the practical component represented by field tests, due to the difficulty of access to this kind of installation. This paper presents a system designed for use both in teaching and training procedures for control strategies for wind generators with doubly fed induction generator (DFIG) technology. The system includes two phases or levels of use: the first being a simulation phase based on computer models, and the second, an advanced level which allows for the conducting of tests on a laboratory scaled workbench composed of a wind turbine emulator coupled to an electric generator. With this equipment, the effectiveness of the wind generator regulation systems can be analyzed from the point of view of the maximum power point tracking control strategy, as well as from that of the contribution produced by the wind generator to the control of the operation of the electric grid to which it is connected.
机译:在现有的可再生资源中,风能正在达到生产率,这在全球能源领域变得越来越重要。由于这些风力发电机的控制是一门非常技术的学科,因此实用的教学方法具有特殊的意义。矛盾的是,在过去,由于难以获得这种安装,对这一领域的专业工程师的培训缺乏以现场测试为代表的实际内容。本文介绍了一种设计用于教学和培训程序的系统,该系统具有双馈感应发电机(DFIG)技术,用于风力发电机的控制策略。该系统包括两个使用阶段或阶段:第一个阶段是基于计算机模型的模拟阶段,第二个阶段是高级阶段,它允许在实验室规模的工作台上进行测试,该工作台由与电子设备相连的风力涡轮机模拟器组成发电机。借助该设备,可以从最大功率点跟踪控制策略以及风力发电机对控制风力发电机运行的贡献的角度分析风力发电机调节系统的有效性。它所连接的电网。

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