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From electricity smart grids to smart energy systems - A market operation based approach and understanding

机译:从电力智能电网到智能能源系统-基于市场运营的方法和理解

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摘要

The challenge of integrating fluctuating power from renewable energy sources in the electricity grid by the use of smart grids cannot be looked upon as an isolated issue but should be seen as one out of various means and challenges of approaching sustainable energy systems in general. Therefore, electricity smart grids must be coordinated with the utilisation of renewable energy being converted into other forms of carriers than electricity including heat and biofuels as well as energy conservation and efficiency improvements, such as CHP and improved efficiencies e.g. in the form of fuel cells. All such measures have the potential to replace fossil fuels or improve the fuel efficiency of the system. However, they also add to the electricity balancing problem and contribute to the excess electricity production and thereby to the need for electricity smart grids. The long-term relevant systems are those in which such measures are combined with energy conservation and system efficiency improvements. This article illustrates why electricity smart grids should be seen as part of overall smart energy systems and emphasises the inclusion of flexible CHP production in the electricity balancing and grid stabilisation. Furthermore, it highlights some recent developments in the Danish electricity market operation.
机译:通过使用智能电网将来自可再生能源的波动电力整合到电网中的挑战不能被视为一个孤立的问题,而应被视为解决可持续能源系统的各种手段和挑战中的一个。因此,电力智能电网必须与将可再生能源转化为电力以外的其他形式的载体进行协调,包括热能和生物燃料,以及节约能源和提高效率(例如热电联产)和提高效率。以燃料电池的形式。所有这些措施都有可能替代化石燃料或提高系统的燃料效率。然而,它们也增加了电力平衡问题,并导致了多余的电力生产,从而导致了对智能电网的需求。长期相关的系统是将此类措施与节能和提高系统效率相结合的系统。本文说明了为什么将智能电网视为整体智能能源系统的一部分,并强调了在电力平衡和稳定电网中包括灵活的CHP生产。此外,它重点介绍了丹麦电力市场运营中的一些最新动态。

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