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Autonomous Energy Grids: Controlling the Future Grid With Large Amounts of Distributed Energy Resources

机译:自主能源网格:控制具有大量分布能源资源的未来网格

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The drastic price reduction in variable renewable energy, such as wind and solar, coupled with the ease of use of smart technologies at the consumer level, is driving dramatic changes to the power system that will significantly transform how power is made, delivered, and used. Distributed energy resources (DERs)-which can include solar photovoltaic (PV), fuel cells, microturbines, gensets, distributed energy storage (e.g., batteries and ice storage), and new loads [e.g., electric vehicles (EVs), LED lighting, smart appliances, and electric heat pumps]-are being added to electric grids and causing bidirectional power flows and voltage fluctuations that can impact optimal control and system operation. Residential solar installations are expected to increase approximately 8% annually through 2050. Customer battery systems are anticipated to reach almost 1.9 GW by 2024, and current forecasts project that approximately 18.7 million EVs will be on U.S. roads in 2030. With numbers like these, it is not unreasonable to imagine a residential electricity customer having at least five controllable DERs. In future
机译:可变可再生能源(如风和太阳)的急剧下降,加上消费水平的智能技术的易用性,是对电力系统的巨大变化,这将显着改变电力的作用,交付和使用。 。分布式能源资源(DERS) - 可包括太阳能光伏(PV),燃料电池,微脉冲,老鼠,分布式能量存储(例如,电池和冰存储)和新负载[例如电动车辆(EVS),LED照明,智能电器和电热泵] - 添加到电网中,并导致双向动力流动和可能影响最佳控制和系统操作的电压波动。预计住宅太阳能装置预计将每年增加约8%至2050年。预计客户电池系统将达到2024年的近1.9 GW,而目前的预测项目约为1870万台EVS将在2030年在美国道路上。与众不同无法想象一个至少有五个可控的小孩的住宅电力客户并不是不合理的。在未来

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