From home energy management system local flexibility to low-voltage predictive grid management

Diogo Lopes, M. Simões, G. Sampaio, D. Rua, P. Machado, R. Bessa, R. André, Jorge Moreira, C. Abreu, A. Madureira
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引用次数: 1

Abstract

This study presents Integrid's project framework to manage low voltage (LV) electrical networks, aiming to avoid both technical and quality constraints, induced by the ever-increasing amount of flexible resources spread all over the grid. These assets cover a large amount of renewable-based energy generation to electrical vehicles and energy storage units. For this to be possible, new advanced tools were developed to exploit the benefits of the so-called distributed energy resources, while overcoming limitations on the metering and communication infrastructures. Hence, this study describes the approach taken to perform the active management of LV networks, without a perfect level of observability, exploiting the flexibility provided by the distribution system operator's resources combined with the one offered by private consumers through the home energy management systems. Additionally, some results followed by a brief discussion are presented, enforcing the success of the developed tools. The algorithms within these tools allow to forecast both microgeneration, available flexibility and load profiles, as well as to estimate the network's state, at different time frames.
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从家庭能源管理系统的局部灵活性到低压预测电网管理
本研究介绍了Integrid管理低压(LV)电网的项目框架,旨在避免技术和质量限制,这些限制是由遍布整个电网的不断增加的灵活资源所引起的。这些资产涵盖了大量的可再生能源发电、电动汽车和储能装置。为了实现这一目标,开发了新的先进工具来利用所谓的分布式能源的好处,同时克服了计量和通信基础设施的限制。因此,本研究描述了在没有完美可观察性的情况下,利用配电系统运营商的资源和私人消费者通过家庭能源管理系统提供的资源所提供的灵活性,对低压电网进行主动管理的方法。此外,本文还介绍了一些结果,并进行了简短的讨论,以确保所开发工具的成功。这些工具中的算法可以预测微发电、可用灵活性和负载概况,以及在不同时间框架下估计网络的状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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