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Provision of secondary frequency control via demand response activation on thermostatically controlled loads: Solutions and experiences from Denmark

机译:通过需求响应激活恒温控制负载来提供次级频率控制:丹麦的解决方案和经验

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This paper studies the provision of secondary frequency control in electric power systems based on demand response (DR) activation on thermostatically controlled loads (TCLs) and quantifies the computation resource constraints for the control of large TCL population. Since TCLs are fast responsive loads, they represent a suitable alternative to conventional sources for providing such control. An experimental investigation with domestic fridges representing the TCLs was conducted in an islanded power system to evaluate the secondary frequency control. The investigation quantifies the flexibility of household fridge performance in terms of response time and ramp-up rate, as well as the impact on fridge temperature and behaviour after the control period. The experimental results show that TCLs are fast responsive loads for DR activation, with the average control signal response time of 24 s and an equivalent ramping rate of 63% per minute, which could also comply with the requirements for primary frequency control. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了基于对温控负载(TCL)的需求响应(DR)激活的电力系统二次频率控制的提供,并量化了控制大型TCL人口的计算资源约束。由于TCL是快速响应的负载,因此它们代表了常规来源的合适替代方案,可提供这种控制。在一个孤岛电力系统中进行了代表TCL的家用冰箱的实验研究,以评估次级频率控制。该调查根据响应时间和加速率,以及在控制期后对冰箱温度和行为的影响,量化了家用冰箱性能的灵活性。实验结果表明,TCL是DR激活的快速响应负载,平均控制信号响应时间为24 s,等效斜坡速率为每分钟63%,这也可以满足对主频率控制的要求。 (C)2016 Elsevier Ltd.保留所有权利。

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