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Pilotage de la production décentralisée et des charges non conventionnelles dans le contexte Smart Grid et simulation hybride temps réel

机译:在智能电网环境中管理分散式生产和非常规负载以及实时混合仿真

摘要

In the electricity distribution network field, because of the electricity market opening and the large-scale insertion of dispersed generators (DJ) in these last years, the network undergoes radical modification in both operation and exploitation. In this context, some new integration solutions are invented in order to be able to connect the DJ, as photo-voltaic panels, micro wind turbines, cogeneration units, etc, and the new loads, as electric vehicles and smart home, without reduce the voltage wave quality or involve a very expensive power systems reinforcement. The objectives of those solutions are to influence the consumer consumption in order to reduce the peak consumption level and shift the consumption on the high renewable production period, and control the DJ output to participate to the service system. The new information and communication technologies (NICT) are strongly used in the development of those control strategies. This PhD work is including in the French project GreenLys supported by the French environment and energy management agency. GreenLys is a 4 years project focus on the development of a real scale Smart Grid in the two French cities Lyon and Grenoble. As a first step, this work evaluating the impact of the DJ and the electric vehicle on the distribution network. From the result of this impact study, two types of decentralized control strategies are investigated. The first one is focus on the phase connection. Since the majority of consumers and DJ connected on the distribution grid are single phases, methods allowing to choose the best phase connection are study. The second one is focus on new DJ reactive power control strategies. In the last part, the strategies are evaluated on a Power Hardware In the Loop simulation and real solar inverter.
机译:在配电网络领域中,由于最近几年的电力市场开放和分散发电机(DJ)的大规模插入,该网络在运营和开发上都经历了根本性的改变。在此背景下,发明了一些新的集成解决方案,以便能够在不降低DJ(例如光伏面板,微型风力涡轮机,热电联产装置等)和新负载(例如电动汽车和智能家居)的情况下进行连接电压波形质量或涉及非常昂贵的电力系统加固。这些解决方案的目标是影响消费者的消费,以降低高峰消费水平并在高可再生生产期间转移消费,并控制DJ输出以参与服务系统。新的信息和通信技术(NICT)在这些控制策略的开发中被大量使用。该博士工作包括在法国环境与能源管理机构支持的法国GreenLys项目中。 GreenLys是一个为期4年的项目,专注于在法国两个城市里昂和格勒诺布尔开发实际规模的智能电网。第一步,这项工作评估DJ和电动汽车对配电网络的影响。根据影响研究的结果,研究了两种类型的分散控制策略。第一个重点是相位连接。由于大多数用户和配电网上连接的DJ是单相的,因此研究了选择最佳相连接的方法。第二个重点是新的DJ无功功率控制策略。在最后一部分中,在“电源硬件在环”仿真和实际的太阳能逆变器中评估了策略。

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    Mercier Aurélien;

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  • 年度 2015
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  • 正文语种 fr
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