能源管理和智能电网的有机架构

Ingo Mauser, Christian Hirsch, Sebastian Kochanneck, H. Schmeck
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引用次数: 15

摘要

可再生能源和分布式能源的空前崛起,对电网的复杂性提出了前所未有的挑战。大量的设备不仅连接到电网,而且需要适当的信息和通信技术来证明它们的服务。这些设备要求在不同的水平和区域尺度上建立新的控制机制。在本文中,我们展示了有机计算的概念如何支持未来智能电网的受控自组织。我们提出了一个通用的分层架构作为各种能源管理系统的框架。该体系结构能够反映物理电网结构以及其利益相关者、用户目标、子系统和设备之间的相互依赖关系。它能够对不断变化的目标以及系统中的干扰做出自适应反应。基于该体系结构的各种系统仿真表明了该体系结构在智能电网能源管理领域的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Organic Architecture for Energy Management and Smart Grids
An unprecedented rise of renewable and distributed energy resources imposes unprecedented challenges in terms of complexity to power grids. Multitudes of devices are not only connected to the electricity grid but need appropriate information and communication technologies for proving their services. These devices ask for novel control mechanisms on different levels and regional scales. In this paper, we show how concepts from Organic Computing may support the controlled self-organization of the future smart grid. We propose a generic hierarchical architecture as a framework for various energy management systems. This architecture is able to reflect the physical power grid structure as well as the interdependencies of its stakeholders, user objectives, subsystems, and devices. It enables adaptive responses to changing objectives as well as disturbances in the system. Various simulations of systems based on the proposed architecture show the applicability of the proposed architecture to domains of energy management in smart grids.
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