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Maximum wind power generation in a power system imposed by system inertia and primary reserve requirements

机译:系统惯性和主要储备要求在电力系统中产生的最大风力发电量

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Although the technology to simulate inertia or to provide primary control in wind power generators is mature, most of them are a source of power with neither inertia nor primary reserve provision mainly because it means wind spilling. Therefore, an increasing wind power penetration means a reduction in the inertia of the system and of the primary reserve due to the substitution of conventional generation. In this paper, the maximum wind power penetration focusing on system inertia and primary reserve value is assessed. The Spanish power system is used as an example for the calculation of these values. For this purpose, real Spanish scenario data are used. Results will show that high penetrations of wind power can be achieved without risking adequate values of primary reserve or inertia of the power system even if wind power does not contribute to these items. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:尽管用于模拟风力发电机或在风力发电机中提供初级控制的技术已经成熟,但大多数技术都是既没有惯性又没有初级储备的动力源,主要是因为这意味着风的溢出。因此,增加的风力穿透力意味着系统的惯性和主要储备的减少,这是由于替代了常规发电。在本文中,评估了以系统惯性和主要储备值为重点的最大风力渗透率。以西班牙电力系统为例来计算这些值。为此,使用了真实的西班牙情景数据。结果将表明,即使风能对这些项目没有贡献,也可以实现风能的高渗透,而不会冒足够的初级储备或电力系统惯性值的风险。版权所有(c)2014 John Wiley&Sons,Ltd.

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