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Mitigation of wind power fluctuations in smart grids

机译:缓解智能电网中的风电波动

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Future's penetration of more distributed generation will have an effect on the power system's stability and controllability. In general, wind power as a distributed generator does not have inertial response and does not supply control power. A third characteristic of wind power is that it is not conventionally controlled and its main resource is fluctuating. This paper describes a methodology to calculate wind power fluctuations in the frequency domain to compare it with load fluctuations for higher frequency power fluctuations. In relation, the approach of wind power smoothing is mentioned to mitigate the grid impact of power fluctuations. To smooth power, the concept of inertial wind power smoothing is briefly discussed for the low wind speed range of wind turbines, between the cut-in and rated wind speed. A smart grid could be equipped with a control system to control the power output of wind turbines and wind farms to mitigate the grid impact of wind power fluctuations on the frequency stability of a power system.
机译:未来更多分布式发电的渗透将对电力系统的稳定性和可控制性产生影响。通常,作为分布式发电机的风力不具有惯性响应,也不提供控制功率。风力发电的第三个特点是它不受常规控制,其主要资源正在波动。本文介绍了一种计算频域中风电波动的方法,以将其与负载波动进行比较,以获取更高频率的电力波动。相对地,提到了风电平滑的方法以减轻电力波动对电网的影响。为了使功率平滑,简要讨论了惯性风力平滑的概念,适用于风力涡轮机的低风速范围(介于切入风速和额定风速之间)。智能电网可以配备控制系统,以控制风力涡轮机和风力发电场的功率输出,从而减轻风电波动对电网频率稳定性的影响。

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