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Modeling study on flexible load's demand response potentials for providing ancillary services at the substation level

机译:在变电站级提供辅助服务的柔性负载需求响应潜力的建模研究

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Demand response (DR) is an important component for the establishment of smart electricity grids. It can decrease the system peaks through load shedding or shifting and optimize the utilization of the existing grid assets, which delays the need for costly upgrades. DR can also enable the integration of intermittent and distributed energy resources (DER) into the existing electricity grid. Fast DR from aggregated flexible loads can provide ancillary services (AS) to absorb grid disruptions and may replace the expensive fast-ramping reserve generation units. This study presents a methodology for load aggregation based on the prioritization of loads according to their flexibility. Different flexible load types are categorized as thermostatically controlled loads (TCL), urgent non-TCL, non-urgent non-TCL, and battery-based loads. Models based on their physical behaviour are developed and simulations performed to apply the proposed aggregation and control algorithm. Results show that the loads during peak hours can be shed off without rebound demand spikes after the DR event commonly seen in other types of DR programs. The algorithm also automatically adjusts the power demand according to the output of the distributed renewable generation, mitigating disruptions due to variations of the DER output. Additionally, the algorithm is able to adjust the load demand dynamically according to the fluctuations of electricity price. (C) 2016 Elsevier B.V. All rights reserved.
机译:需求响应(DR)是建立智能电网的重要组成部分。它可以通过减少负载或转移负载来减少系统峰值,并优化现有电网资产的利用率,从而延迟了昂贵的升级需求。 DR还可以将间歇性和分布式能源(DER)集成到现有电网中。来自聚集的灵活负载的快速灾难恢复可以提供辅助服务(AS)来吸收电网中断,并可以替代昂贵的快速爬升备用发电设备。这项研究提出了一种基于负载灵活性的负载聚合方法。不同的灵活负载类型分为恒温控制负载(TCL),紧急非TCL,非紧急非TCL和基于电池的负载。开发了基于模型物理行为的模型,并进行了仿真以应用提出的聚合和控制算法。结果表明,在其他类型的灾难恢复程序中常见的灾难恢复事件后,高峰时段的负载可以消除而不会出现反弹需求峰值。该算法还根据分布式可再生发电的输出自动调整功率需求,从而减轻了由于DER输出变化而造成的干扰。另外,该算法能够根据电价的波动动态地调整负荷需求。 (C)2016 Elsevier B.V.保留所有权利。

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