智能电网协议的可扩展性:大规模分布式der协议及其仿真评估

Johannes Bergmann, Christian Glomb, Jurgen Gotz, J. Heuer, Richard Kuntschke, Martin Winter
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引用次数: 40

摘要

今天,整个能源领域将进入一个影响深远的革命阶段。传统的发电和输电概念正在转变为大规模分布式能源发电景观,整合大量可变和小型可再生能源,如生物质能或光伏装置,以及它们对能源网络的所有挑战性影响。必须尊重新的利益相关者(例如能源资源聚合商),为消费者提供更大的灵活性(能源市场),以及全新的概念(装载电动汽车,使用电动汽车作为灵活的电力存储)。需要创新的监测和控制概念,以可靠和安全的方式运行这些分布式能源。本文介绍了基于小能源和可变能源的大规模分布式能源系统的有效管理原则。为了评估这种方法的目的,介绍了一种新开发的耦合能源电网通信网络模拟器,可以在智能电网环境中研究新的ICT管理框架的大规模方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scalability of Smart Grid Protocols: Protocols and Their Simulative Evaluation for Massively Distributed DERs
Today, the whole energy sector is going to enter a phase of far-reaching revolution. The legacy power generation and transmission concept is converting to a massively distributed energy generation landscape integrating an extensive number of variable and small renewable energy resources such as biomass or PV installations with all their challenging effects on the energy grid. New stakeholders (e.g. energy resource aggregators), more flexibility for the consumers (energy market place), and totally new concepts (loading of e-Cars, usage of e-Cars as flexible power storage) have to be respected. Innovative monitoring and control concepts are required to operate these distributed energy resources in a reliable and safe way. This paper describes the principles for an efficient management of a massively distributed energy system based on small and variable energy resources. For evaluation purposes of this approach a newly developed coupled energy grid communication network simulator is introduced with which large scale aspects of the new ICT management frame¬works can be studied in a smart grid environment.
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