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Technologies for Integration of Large-Scale Distributed Generation and Volatile Loads in Distribution Grids: Technologies for Integration of Large-Scale Renewables Multi-slot EV Charging Stations in Distribution Grids

机译:分布网格中大规模分布式发电和挥发性负荷集成的技术:大规模可再生能源集成的技术在分配网格中的多槽EV充电站

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As fossil fuel reserves are limited in stock and there is an urgent call to reduce the carbon footprint, distribution grids urgently need to move towards heavy use of local and distributed generation of electricity using renewable energy sources. Another promising prospect for the future of the planet is wide adoption of electric cars. However, large-scale integration of these highly volatile resources in distribution grids is challenging: distribution grids may face power quality problems and fuel-based generators may be needed to compensate for high volatility (which defeats the original purpose). Additionally, with the large penetration of solar and wind energy, the grid becomes inverter-dominated (has little inertia) and therefore traditional methods for controlling the frequency, voltage, and congestion of lines are no longer sufficient. In this article, we present different activities carried out in our research groups to tackle above-mentioned challenges in large- scale integration of such volatile resources. These activities range from advance planning to real-time monitoring and operation of distribution grids. We have also developed a software testbed, called T-RECS, for testing software agents before deploying them in the field. Finally, as the reliability and robustness is very crucial in such critical infrastructures, we have developed some reliability solutions that are suitable for use case scenarios typical to distribution grids.
机译:随着化石燃料储备有限的库存,迫切需要呼吁减少碳足迹,迫切需要使用可再生能源来实现局部和分布发电的局部和分布发电。该地球未来的另一个前景广泛采用电动汽车。然而,在分配网格中的这些高度挥发资源的大规模集成具有具有挑战性的:分配网格可能面临电力质量问题,可能需要基于燃料的发电机来补偿高波动性(击败原始目的)。此外,随着太阳能和风能的大渗透,栅格变得逆变器主导(具有很小的惯性),因此控制线路频率,电压和拥塞的传统方法不再足够了。在本文中,我们在我们的研究小组中展示了不同的活动,以解决这些挥发资源的大规模整合的上述挑战。这些活动范围从预先规划到实时监控和分配网格的运行。我们还开发了一个被称为T-REC的软件测试,用于在将它们部署在现场之前测试软件代理。最后,随着可靠性和鲁棒性在这种关键基础设施中非常重要,我们开发了一些适合用与分布网格典型的使用情况场景的可靠性解决方案。

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