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Intelligent control of flexible loads for improving low voltage grids utilization

机译:智能控制柔性负载,提高低压电网利用率

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Denmark has a plan to increase the amount of renewable energy in the power system in the coming decades. The wind power penetration is scheduled to increase to more than 50% by 2020. To cope with the high amount of fluctuating production, large power system reinforcements would be desirable. In order to limit the need for reinforcements the smart grid concept is getting a lot of attention. As a part of the whole concept, an active demand response is expected from end-consumer's units like heat pumps and electric vehicles. This paper looks into the challenge of controlling these units in an intelligent manner. A centralized control strategy is developed at the secondary substation level in order to maximize the grid utilization thereby reducing the need for grid reinforcements. The simulation results show that the control strategy allows heat pumps and electric vehicles to charge in a time-effective manner while respecting the grid codes.
机译:丹麦计划在未来几十年内增加电力系统中的可再生能源。到2020年,风电渗透率预计将增加到50%以上。为应对产量波动较大的情况,将需要使用大型电力系统增强装置。为了限制对钢筋的需求,智能电网概念受到了广泛关注。作为整个概念的一部分,热泵和电动汽车等最终用户的需求有望得到积极响应。本文探讨了以智能方式控制这些单元的挑战。在二级变电站级开发了集中控制策略,以最大程度地利用电网,从而减少了对电网加固的需求。仿真结果表明,该控制策略允许热泵和电动汽车在遵守电网规范的情况下以高效的方式进行充电。

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