首页> 外文会议>ES2011;International conference on energy sustainability >POWER OUTPUT FLUCTUATION ANALYSIS OF GRID-CONNECTED WIND TURBINE-GENERATOR SYSTEM WITH LIMITING MAXIMUM POWER OUTPUT
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POWER OUTPUT FLUCTUATION ANALYSIS OF GRID-CONNECTED WIND TURBINE-GENERATOR SYSTEM WITH LIMITING MAXIMUM POWER OUTPUT

机译:限制最大功率输出的并网式风力发电机组的功率波动分析

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The reduction in the power output fluctuation of grid-connected wind turbine-generator systems is strongly required to further increase their total installed capacity in Japan. This study focuses on limiting the maximum electric power output by changing the set point of the power output control as a reduction technique. The influence of limiting the maximum electric power output of a 2 MW-system, which adopts the variable speed operation, on the power output fluctuation characteristic is analyzed through numerical simulation conducted by using an observed field wind data. The focus is on the power output fluctuation, which is important for management of commercial power systems including power plants, of the 2 MW-system with six cases of the maximum electric power output. The results show that limiting the maximum electric power output does not have an influence on the power output fluctuation characteristic and control performance during the pitch angle operation at high wind speeds. However, the year-round simulation reveals that limiting the maximum electric power output brings a tradeoff between the reduction in the power output fluctuation and the generating performance.
机译:迫切需要减少并网型风力发电机系统的功率输出波动,以进一步提高其在日本的总装机容量。这项研究着重于通过改变功率输出控制的设定点作为一种降低技术来限制最大功率输出。通过使用观测到的风场数据进行数值模拟,分析了限制采用变速运行的2兆瓦系统最大功率输出对功率输出波动特性的影响。重点是功率输出波动,这对于管理6兆瓦最大功率输出的2兆瓦系统的商业电力系统(包括发电厂)非常重要。结果表明,在高风速下的俯仰角操作期间,限制最大电力输出对电力输出波动特性和控制性能没有影响。然而,全年模拟显示,限制最大电力输出会在减少电力输出波动与发电性能之间进行权衡。

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