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Energy hubs for the future

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TLDR
In this paper, the authors present a project named "Vision of Future Energy Networks", which aims at a greenfield approach for future energy systems, defined energy hubs and the conception of combined interconnector devices represent key approaches towards a multicarrier greenfield layout.
Abstract
This paper presents a project named "Vision of Future Energy Networks", which aims at a greenfield approach for future energy systems. The definition of energy hubs and the conception of combined interconnector devices represent key approaches towards a multicarrier greenfield layout. Models and tools for technical, economical and environmental investigations in multicarrier energy systems have been developed and used in various case studies

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Journal ArticleDOI

MES (multi-energy systems): An overview of concepts and evaluation models

TL;DR: In this paper, the authors provide a comprehensive and critical overview of the latest models and assessment techniques that are currently available to analyze MES and in particular DMG systems, including for instance energy hubs, microgrids, and VPPs (virtual power plants), as well as various approaches and criteria for energy, environmental, and technoeconomic assessment.
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Distributed multi-generation: A comprehensive view

TL;DR: In this paper, the authors present the main aspects of the DMG framework, illustrating its characteristics and summarizing the relevant DMG structures, backed by an extended review of the most recent journal publications and reports.
Journal ArticleDOI

Optimal Operation of Residential Energy Hubs in Smart Grids

TL;DR: This paper presents mathematical optimization models of residential energy hubs which can be readily incorporated into automated decision making technologies in smart grids, and can be solved efficiently in a real-time frame to optimally control all major residential energy loads, storage and production components while properly considering the customer preferences and comfort level.
Journal ArticleDOI

Optimal electrical and thermal energy management of a residential energy hub, integrating demand response and energy storage system

TL;DR: In this article, a residential energy hub model is proposed which receives electricity, natural gas and solar radiation at its input port to supply required electrical, heating and cooling demands at the output port.
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Networked Microgrids for Enhancing the Power System Resilience

TL;DR: It is concluded that networked microgrids in particular provide a universal solution for improving the resilience against extreme events in Smart Cities.
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Proceedings ArticleDOI

A vision of future energy networks

TL;DR: In this paper, the key elements of an envisioned multi-carrier energy system are introduced, including energy hubs interfacing any type of consumer or producer, managing and storing energy, and energy interconnectors transferring energy in several forms between the hubs.
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