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Intégration massive d'électronique de puissance : synchronisation et stabilité des grands systèmes électriques

Debry, Marie-Sophie; Denis, Guillaume; Panciatici, Patrick; Prevost, Thibault; Xavier, Florent; Guillaud, Xavier; Kestelyn, Xavier; Menze, Andreas


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    "description": "<p>Renewable generation is mainly connected through converters. It can provide more and more services to the grid such as voltage support or frequency control. However, these services may not be sufficient for extremely high penetrations. As the share of such generating units is growing rapidly, some synchronous areas could in the future be occasionally operated without synchronous machines. In such conditions, system stability will have to be ensured with the same level of reliability as today. Today, operation of power systems is based on the presence of synchronous machines. Frequency is linked to the balance between consumption and generation of electricity via the rotating masses equation. This will not be inherently valid for grids without synchronous machines. The issue of operating a network with 100\u00a0% power electronics is quite well solved for small isolated systems. The same doesn\u2019t apply for large transmission systems where grid topology and power injections are highly variable and are not known at any time by all system components or even by a centralized entity. This paper describes the research that needs to be achieved to remove barriers to high penetrations of converters.</p>", 
    "license": {
      "id": "CC-BY-4.0"
    }, 
    "title": "Int\u00e9gration massive d'\u00e9lectronique de puissance : synchronisation et stabilit\u00e9 des grands syst\u00e8mes \u00e9lectriques", 
    "journal": {
      "volume": "2016-5", 
      "pages": "54-59", 
      "title": "Revue de l'Electricit\u00e9 et de l'Electronique"
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        "title": "Massive InteGRATion of power Electronic devices", 
        "acronym": "MIGRATE", 
        "program": "H2020", 
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    "references": [
      "[1] \tWind and Solar Plant Collector Design Working Group, \u00abTechnical Paper Compendium PES-TPC3,\u00bb IEEE Power & Enerfy Society, Boston, US, August 2016.", 
      "[2] \tP. Kundur, Power System Stability and Control, The EPRI Power System Engineering Series, McGraw-Hill, 1994.", 
      "[3] \tG. Denis, T. Prevost, P. Panciatici, X. Kestelyn, F. Colas et X. Guillaud, \u00abReview on potential strategies for transmission grid operations based on power electronics interfaced voltage sources,\u00bb chez IEEE Power & Energy General Meeting, Denver, 2015."
    ], 
    "keywords": [
      "Electronique de puissance, convertisseurs, fr\u00e9quence, stabilit\u00e9, grid forming, \u00e9nergies renouvelables, r\u00e9seaux de transport d'\u00e9lectricit\u00e9"
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    "publication_date": "2016-12-22", 
    "creators": [
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        "affiliation": "RTE", 
        "name": "Debry, Marie-Sophie"
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        "affiliation": "RTE", 
        "name": "Denis, Guillaume"
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        "affiliation": "RTE", 
        "name": "Panciatici, Patrick"
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        "affiliation": "RTE", 
        "name": "Prevost, Thibault"
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        "affiliation": "RTE", 
        "name": "Xavier, Florent"
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