为电网提供实时电力服务的超级电容器代理

L. Reyes-Chamorro, M. Paolone, A. Bernstein, J. Le Boudec
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引用次数: 3

摘要

基于超级电容器的存储系统有望在微电网中发挥关键作用,因为它们具有补偿高功率不平衡的能力。作者提出了一种新的控制框架comelec,作为一种具有显式功率设定值的有源配电网实时控制的可组合方法,我们在comelec的背景下定义了一个超级电容器阵列控制代理。该代理的一个重要功能是基于局部信息发布超级电容阵列的实时功率能力和运行偏好。考虑到这种装置的能量容量很小,它的内部状态可以从一个设定值实现到下一个设定值实现发生很大变化。因此,在代理定义中使用准确的模型至关重要。我们表明,可以通过对超级电容器阵列进行简单的测量,适当地加上组成该阵列的单元的精确表示,来推断该设备的实时功率能力。结果表明,代理能够为资源说话,从而允许从外部控制器使用资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A supercapacitor agent for providing real-time power services to the grid
Supercapacitors-based storage systems are expected to play a key role in microgrids in view of their capability to compensate high-power imbalances. We define an agent for the control of supercapacitor arrays within the context of the novel control framework Commelec, proposed by the Authors as a composable method for real-time control of active distribution networks with explicit power setpoints. An important function of such an agent is to advertise the real-time power capabilities and operational preferences of the supercapacitor array based on local information. Given the small energy capacity of such a device, its internal state can largely vary from one setpoint implementation to the next one. For this reason, the use of an accurate model is crucial in the agent definition. We show that it is possible to infer the real-time power capabilities of the device by using simple measurements on the supercapacitor array suitably coupled with an accurate representation of the cells composing the array. Results show that the agent is able to speak for the resource, thus allowing its use from an external controller.
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