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Dynamic Behavior of Stand-alone Wind Turbine Generator System with Wind Turbine Performance Deterioration

机译:风力发电机性能下降的独立风力发电机系统的动态行为

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摘要

It is necessary to establish an autonomous condition monitoring for small-scale stand-alone wind turbine generator systems, which are mainly utilized in regions with no electricity. As a first phase of its development, dynamic behavior of a system with the performance deterioration of a wind turbine is investigated using a dynamic simulation model. In the target system, a straight-wing vertical axis wind turbine is mainly operated at a constant tip speed ratio, i.e., a maximum power coefficient point, without an anemometer from the viewpoints of the simplicity of system configuration and the low system cost. Numerical analyses show that the performance deterioration of the wind turbine causes a significant decrease in the power generating capability during operation due to a deviation in the operating point of the system from a maximum power coefficient point. Furthermore, a system characteristic that is closely linked to the performance deterioration of the wind turbine and can be estimated during operation without an anemometer is identified.
机译:有必要为主要用于无电地区的小型独立风力发电机组建立自治状态监控。作为其发展的第一阶段,使用动态仿真模型研究了具有风力涡轮机性能下降的系统的动态行为。在目标系统中,从系统结构简单和系统成本低的观点出发,直翼垂直轴风力涡轮机主要在恒定风速比(即最大功率系数点)下运行,而没有风速计。数值分析表明,由于系统的工作点偏离最大功率系数点,风力涡轮机的性能下降会导致运行期间的发电能力显着下降。此外,识别出与风力涡轮机的性能退化紧密相关并且可以在操作过程中在没有风速计的情况下进行估计的系统特性。

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