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Modeling and control of a wind turbine as a distributed resource

机译:作为分布式资源的风力涡轮机的建模和控制

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This paper is a part of a research project to study the dynamics and control of distributed resources (DRs) in the deregulated electric power industry. It reflects the need to look at large wind farms as power plants, as a result of the increased penetration of wind energy in the power systems many places in the world. To obtain an optimal integration of high penetration of wind energy in the system, the wind farms must be able to replace other power plants, i.e. be able to participate in the control and stabilization of the power system. If e.g. a large wind farm trips due to a grid fault, the power system will suffer from a severe loss of supply. The main result of the project is a verified model of a wind farm, which can be used to study and improve the power plant characteristics of the wind farm, and a tentative assessment of the power quality of the wind farm, based on simulations with the developed model and verified by measurements. This research provided a different approach to wind turbine modeling and control design methodology. All the results were in close agreement with results from other studies. The main strategy of the controller was to regulate the rotor angular speed and the power demand to match the required profiles. A simple wind turbine model was linearized about an operating point and it was used to systematically perform trade-off studies between minimization parameters. The robust nature of the PID controller was illustrated and optimal operating conditions were determined. Continued research illustrates that the optimum wind turbine has not yet been build and most of the remaining work lies in how the wind turbine is controlled. Additional design and control strategy improvements can be expected as experience is gained with wind turbine operations.
机译:本文是研究项目中的Directued Resources(DRS)的动态和控制的研究项目的一部分。它反映了将大型风电场视为发电厂的需要,这是由于在世界许多地方的动力系统中的风能普及。为了在系统中获得高渗透风能的最佳整合,风电场必须能够更换其他发电厂,即能够参与电力系统的控制和稳定。如果是。由于电网故障,一个大型风电场旅行,电力系统将遭受严重的供应损失。该项目的主要结果是风电场的经过验证的模型,可用于研究和改善风电场的电厂特征,以及基于模拟开发模型并通过测量验证。本研究提供了一种不同的风力涡轮机建模和控制设计方法方法。所有结果都与其他研究结果密切一致。控制器的主要策略是调节转子角速度和电力需求以匹配所需的轮廓。一个简单的风力涡轮机模型是线性化的关于操作点,它用于系统地在最小化参数之间进行权衡研究。图示了PID控制器的强大性质,并确定了最佳操作条件。持续的研究表明,最佳风力涡轮机尚未构建,大部分工作都在于如何控制风力涡轮机。随着风力涡轮机操作的经验,可以预期额外的设计和控制策略改进。

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