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Provision of Supplementary Load Frequency Control via Aggregation of Air Conditioning Loads

机译:通过汇总空调负荷来提供辅助负荷频率控制

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摘要

The integration of large-scale renewable energy poses great challenges for the operation of power system because of its increased frequency fluctuations. More load frequency control (LFC) resources are demanded in order to maintain a stable system with more renewable energy injected. Unlike the costly LFC resources on generation side, the thermostatically controlled loads (TCLs) on the demand side become an attractive solution on account of its substantial quantities and heat-storage capacity. It generally contains air conditioners (ACs), water heaters and fridges. In this paper, the supplementary LFC is extracted by the modeling and controlling of aggregated ACs. We first present a control framework integrating the supplementary LFC with the traditional LFC. Then, a change-time-priority-list method is proposed to control power output taking into account customers’ satisfaction. Simulations on a single-area power system with wind power integration demonstrate the effectiveness of the proposed method. The impact of ambient temperature changes and customer preferences on room temperature is also involved in the discussion. Results show that the supplementary LFC provided by ACs could closely track the LFC signals and effectively reduce the frequency deviation.
机译:大规模可再生能源的整合由于其频率波动增加而对电力系统的运行提出了巨大挑战。为了维持稳定的系统并注入更多的可再生能源,需要更多的负载频率控制(LFC)资源。与发电侧昂贵的LFC资源不同,需求侧的恒温控制负载(TCL)由于其大量的储热能力而成为有吸引力的解决方案。它通常包含空调(AC),热水器和冰箱。在本文中,通过对聚合AC进行建模和控制来提取辅助LFC。我们首先提出一个控制框架,将补充LFC与传统LFC集成在一起。然后,提出了一种改变时间优先列表的方法来控制功率输出,同时考虑到客户的满意度。在具有风能集成的单区域电力系统上的仿真证明了该方法的有效性。讨论中还涉及环境温度变化和客户喜好对室温的影响。结果表明,AC提供的补充LFC可以紧密跟踪LFC信号,有效降低频率偏差。

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