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Distributed multi-generation: A comprehensive view

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TLDR
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.
Abstract
The recent development of efficient thermal prime movers for distributed generation is changing the focus of the production of electricity from large centralized power plants to local generation units scattered over the territory. The scientific community is addressing the analysis and planning of distributed energy resources with widespread approaches, taking into account technical, environmental, economic and social issues. The coupling of cogeneration systems to absorption/electric chillers or heat pumps, as well as the interactions with renewable sources, allow for setting up multi-generation systems for combined local production of different energy vectors such as electricity, heat (at different enthalpy levels), cooling power, hydrogen, various chemical substances, and so forth. Adoption of composite multi-generation systems may lead to significant benefits in terms of higher energy efficiency, reduced CO2 emissions, and enhanced economy. In this light, a key direction for improving the characteristics of the local energy production concerns the integration of the concepts of distributed energy resources and combined production of different energy vectors into a comprehensive distributed multi-generation (DMG) framework that entails various approaches to energy planning currently available in the literature. This paper outlines the main aspects of the DMG framework, illustrating its characteristics and summarizing the relevant DMG structures. The presentation is backed by an extended review of the most recent journal publications and reports.

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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.
Journal ArticleDOI

Future Energy Systems: Integrating Renewable Energy Sources into the Smart Power Grid Through Industrial Electronics

TL;DR: In this article, the authors discuss about integrating renewable energy sources into the smart power grid through industrial electronics, including photovoltaic power, wind energy conversion, hybrid energy systems, and tidal energy conversion.
Journal ArticleDOI

Combined analysis of electricity and heat networks

TL;DR: In this article, a combined analysis was developed to investigate the performance of electricity and heat networks as an integrated whole, based on a model of electrical power flow and hydraulic and thermal circuits together with their coupling components (CHP units, heat pumps, electric boilers and circulation pumps).
Journal ArticleDOI

Energetic communities for community energy: A review of key issues and trends shaping integrated community energy systems

TL;DR: In this article, the concept of integrated community energy systems (ICESs) is presented as a modern development to re-organize local energy systems to integrate distributed energy resources and engage local communities.
Journal ArticleDOI

Increasing the Flexibility of Combined Heat and Power for Wind Power Integration in China: Modeling and Implications

TL;DR: In this article, a linear model is proposed for the centralized dispatch for integrated energy systems considering both heat and power, with detailed modeling of the charging processes of the heat storage tanks.
References
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Journal ArticleDOI

Power-Electronic Systems for the Grid Integration of Renewable Energy Sources: A Survey

TL;DR: New trends in power electronics for the integration of wind and photovoltaic (PV) power generators are presented and a review of the appropriate storage-system technology used for the Integration of intermittent renewable energy sources is introduced.
Journal ArticleDOI

Distributed generation : a definition

TL;DR: In this article, the relevant issues and aims at providing a general definition for distributed power generation in competitive electricity markets are discussed, which can be defined as electric power generation within distribution networks or on the customer side of the network.
Journal ArticleDOI

Toward a smart grid: power delivery for the 21st century

TL;DR: The security, agility, and robustness/survivability of a large-scale power delivery infrastructure that faces new threats and unanticipated conditions is presented.
Journal ArticleDOI

Distributed generation: definition, benefits and issues

TL;DR: In this paper, the authors start from the observation that there is a renewed interest in small-scale electricity generation and then move on with a discussion of the major benefits and issues of Small-Scale Electricity Generation.
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