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首页> 外文期刊>International journal of green energy >Game theory and hybrid genetic algorithm for energy management and real-time pricing in smart grid: the Tunisian case
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Game theory and hybrid genetic algorithm for energy management and real-time pricing in smart grid: the Tunisian case

机译:智能电网能源管理与实时定价的博弈论与实时定价:突尼斯案

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摘要

Microgrids are the key for integrating renewable energy from different sources into smart grid, that is why power grid evolves into a combination of interconnected microgrids. In fact, future power grids are undergoing this groundbreaking change that will help meet the increasing demand of electric power and reduce carbon emission. In this sense we study in this paper, based on measured data, a real case of energy management in the area of Beja located in Tunisia. Indeed, we propose a model for the power exchange which proves the potential of applying game theory in the development of both real-time pricing and energy management mechanism for an open electricity market. We also introduce a hybrid genetic algorithm to compute the Nash Equilibrium. Results show that the proposed smart energy management can decrease the real cost of power up to 20%, to divide the energy transmission losses by a factor of two and to reduce the carbon emission in the area of Beja.
机译:MicroGrids是将可再生能源与不同源集成到智能电网的关键,这就是为什么电网演变成相互连接的微电网的组合。事实上,未来的电网正在进行这种突破性的变化,这将有助于满足越来越多的电力需求,降低碳排放。在这篇文章中,我们根据测量数据研究了本文,是位于突尼斯的Beja地区的实际能源管理情况。实际上,我们提出了一种动力交换模型,这些模型证明了在开发开放电力市场的实时定价和能源管理机制方面应用博弈理论的潜力。我们还介绍了一种混合遗传算法来计算纳什均衡。结果表明,拟议的智能能源管理可以将高电量的实际成本降低到20%,将能量传输损耗除以两倍并降低Beja区域的碳排放。

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