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首页> 外文期刊>IFAC PapersOnLine >On the steady-state behavior of low-inertia power systems 1 1 This research is supported by the ETH Seed Project SP-ESC 2015-07(4) and SNF Assistant Professor Energy Grant #160573.
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On the steady-state behavior of low-inertia power systems 1 1 This research is supported by the ETH Seed Project SP-ESC 2015-07(4) and SNF Assistant Professor Energy Grant #160573.

机译:关于低惯性电力系统的稳态行为 1 < ce:footnote id =“ fn1”> 1 此研究得到ETH种子计划SP-ESC的支持2015-07(4)和SNF助理教授能源资助#160573。

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Whereas conventional power systems heavily rely on bulk generation by synchronous machines, future power systems will be comprised of distributed generation based on renewable sources interfaced by power electronics. A direct consequence of retiring synchronous generators is the loss of rotational inertia, which thus far was the dominant time constant in a power system, as well as the loss of the generator controls, which are the main source of actuation of the power grid. Prompted by these paradigm shifts, we study the dynamic behavior of a nonlinear and first-principle low-inertia power system model including detailed power converter models and their interactions with the power grid. In this paper, we focus particularly on the admissible steady-state behavior of such a low-inertia power grid and derive necessary and sufficient control specifications for power converters.
机译:常规电力系统严重依赖于同步电机的大量发电,而未来的电力系统将由基于电力电子接口的可再生资源的分布式发电组成。淘汰同步发电机的直接后果是旋转惯性的损失(迄今为止是电力系统中主要的时间常数)以及发电机控制的损失,而发电机控制是电网致动的主要来源。在这些范式转换的提示下,我们研究了非线性和第一性原理的低惯性电力系统模型的动态行为,其中包括详细的功率变换器模型及其与电网的相互作用。在本文中,我们特别关注于这种低惯量电网的可允许的稳态行为,并得出功率转换器的必要和充分的控制规范。

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