Real-time power-hardware-in-the-loop discrete modeling of PMSM wind turbines

F. Huerta, M. Prodanović, P. Matatagui
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引用次数: 2

Abstract

Increasing global interest in clean and distributed energy systems emphasizes the importance of power electronics technologies in grid integration of renewable energy resources. High penetration of renewables such as wind turbines introduces new challenges for the grid stability seeking appropriate solutions. From a technical and economic point of view any application and testing of new management schemes in real power networks is risky. To overcome these obstacles, hardware-in-the-loop (HIL) technologies appear as a suitable and logical option, because they make equipment or control algorithm evaluation easier, faster and more economical. This paper addresses the hardware-in-the-loop discrete time modeling of a permanent magnet synchronous machine (PMSM) wind turbine (WT). The discrete time modeling has been considered and used so that the developed models can be executed in real-time on an industrial computer. In addition, some features of the Smart Energy Integration Lab (SEIL) - a purposely build lab environment for implementation of grid scenarios and the HIL system used for the implementation are presented. Finally, the paper experimentally validates the design methodology for real-time emulation of wind turbines.
永磁同步电机风力发电机实时功率-硬件在环离散建模
全球对清洁和分布式能源系统日益增长的兴趣强调了电力电子技术在可再生能源电网整合中的重要性。风力涡轮机等可再生能源的高渗透率给电网稳定性带来了新的挑战,需要寻求合适的解决方案。从技术和经济的角度来看,任何新的管理方案在实际电网中的应用和测试都是有风险的。为了克服这些障碍,硬件在环(HIL)技术似乎是一种合适且合乎逻辑的选择,因为它们使设备或控制算法评估更容易、更快、更经济。本文研究了永磁同步电机(PMSM)风力发电机(WT)的硬件在环离散时间建模。考虑并采用离散时间建模,使所建立的模型能在工控机上实时执行。此外,介绍了智能能源集成实验室(SEIL)的一些特点——一个专门为实现电网场景而构建的实验室环境和用于实现的HIL系统。最后,通过实验验证了风电机组实时仿真的设计方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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