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Comparing the Damping Capabilities of different Fast-Frequency Controlled Demand Technologies

机译:比较不同快速频率控制需求技术的阻尼能力

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Modern power systems require an additional supply of fast-frequency reserves to cope with the reduction in overall system inertia and damping caused by the increasing share of inverter-interfaced generation. Batteries are commonly referred to as the most promising option to provide such reserves due to their fast activation capabilities. In this work, we show that inverter-interfaced thermal loads, i.e. heat pumps and refrigeration, tend to accommodate a slightly quicker response than batteries and can thus compete with their dynamic characteristics. To this end, we derive characteristic single-input single-output transfer functions that describe the linearized response of different technologies and include detailed load characteristics. The performed time-domain studies for a low-inertia scenario clearly show that thermal loads can improve frequency damping to the same extent as batteries.
机译:现代电力系统需要额外的快速储备供应,以应对逆变器接口发电的份额越来越多的整体系统惯性和阻尼的减少。 电池通常被称为最有前途的选择,因为它们的快速激活能力提供了这些储备。 在这项工作中,我们表明逆变器接口的热负荷,即热泵和制冷,往往能够容纳比电池稍微更快的响应,从而可以与它们的动态特性竞争。 为此,我们推出了特征单输入单输出传输功能,描述了不同技术的线性化响应,包括详细的负载特性。 低惯性场景的执行的时域研究清楚地表明热负荷可以将频率阻尼与电池相同的程度相同。

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