风力发电机机电混合仿真工具

M. Singh, E. Muljadi, J. Jonkman
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引用次数: 8

摘要

风力发电机(WTGs)由许多不同的部件组成,将风的动能转化为电能供最终用户使用。利用风能提供驱动发电机轴的机械扭矩。从风力到机械能的转换是由气动转换控制的。WTG的气动-电转换效率受叶片、齿轮箱、发电机和功率转换器效率的影响。本文描述了使用MATLAB/Simulink对WTG的电气和电网相关方面进行仿真,并结合FAST气动弹性风力涡轮机计算机辅助工程工具对WTG的气动和机械方面进行仿真。两者的结合,使研究涉及电气和机械方面的WTG。例如,机械工程师可以制定发电机控制,这可能会保持齿轮箱的寿命或减轻发生在传输线上的瞬态事件(故障,电压和频率下降,不平衡电压等)的影响。类似地,电气工程师可以研究高斜坡风速对电力系统的影响,以及湍流对小平衡区域电压和频率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid Electro-mechanical Simulation Tool for Wind Turbine Generators
Wind turbine generators (WTGs) consist of many different components to convert kinetic energy of the wind into electrical energy for end users. Wind energy is accessed to provide mechanical torque for driving the shaft of the electrical generator. The conversion from wind power to mechanical power is governed by the aerodynamic conversion. The aerodynamic-electrical-conversion efficiency of a WTG is influenced by the efficiency of the blades, the gearbox, the generator, and the power converter. This paper describes the use of MATLAB/Simulink to simulate the electrical and grid-related aspects of a WTG coupled with the FAST aero-elastic wind turbine computer-aided engineering tool to simulate the aerodynamic and mechanical aspects of a WTG. The combination of the two enables studies involving both electrical and mechanical aspects of a WTG. For example, mechanical engineers can formulate generator control that may preserve the life of the gearbox or mitigate the impact of transient events occurring on the transmission lines (faults, voltage and frequency dips, unbalanced voltages, etc.). Similarly, electrical engineers can study the impact of high-ramping wind speeds on power systems, as well as the impact of turbulence on the voltage and frequency of a small balancing area.
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