This paper aims to model a complete wind energy conversion system (WECS) connected to a grid. The motivation comes from the Distributed Generation System (DGS) installed at the Renewable Energy Lab at UMass Lowell. The objective of this work is to develop universal and standardized manufacturer independent textbook models. Manufacturer specific models are more accurate and detailed, but proprietary and non-disclosure agreements become an issue for research purposes. Since the wind turbines installed in the lab are VSWT (Variable Speed Wind Turbine) with Permanent Magnet Synchronous Generators (PMSG), so such a turbine system is modeled to represent them in general. PMSG requires very less maintenance and has high efficiency since it doesn't have rotor current and is used without a gearbox. Further, there are two more advantages: first, it has the capability of variable speed control due to the fact that its rotor speed can change in a large range; second, it's excitation system is independent of the grid and require any other excitation source. In addition to the turbine generator, other main components of WECS are also modeled namely: wind source model, wind turbine, permanent magnet synchronous generator and AC/DC/AC control. The equations governing these models are also discussed. The entire generation system is implemented on PSCAD/EMTDC and integrated to a grid and a basic fault analysis is done under different conditions. The proposed model can be used for research purposes on distributed generation issues. This model provides a good software simulation test bed for further research.
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机译:本文旨在对连接到电网的完整风能转换系统(WECS)进行建模。动机来自UMass Lowell的可再生能源实验室中安装的分布式发电系统(DGS)。这项工作的目的是开发通用且标准化的独立于制造商的教科书模型。制造商特定的模型更加准确和详细,但是出于研究目的,专有和保密协议成为一个问题。由于实验室中安装的风力涡轮机是带有永磁同步发电机(PMSG)的VSWT(变速风力涡轮机),因此对此类涡轮机系统进行建模以代表它们。 PMSG不需要转子电流,无需齿轮箱即可使用,因此维护工作量少,效率高。此外,还有两个优点:首先,由于其转子速度可以在较大范围内变化,因此它具有变速控制的能力。其次,它的激励系统独立于电网,并且需要任何其他激励源。除涡轮发电机外,还对WECS的其他主要组件进行了建模,即:风源模型,风力涡轮机,永磁同步发电机和AC / DC / AC控制。还讨论了控制这些模型的方程式。整个发电系统在PSCAD / EMTDC上实现,并集成到网格中,并且在不同条件下进行基本故障分析。提出的模型可用于分布式发电问题的研究目的。该模型为进一步研究提供了良好的软件仿真测试平台。
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