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Coordinated state-estimation method for air-conditioning loads to provide primary frequency regulation service

机译:提供初级频率调节服务的空调负荷协调状态估计方法

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摘要

The penetration of large-scale renewable generation leads to a shortage of primary frequency regulation resources as well as increasing regulation demand. By exploiting the thermal capacity of buildings, the authors achieve linear power-frequency characteristics comparable to turbine droop control via clustering a number of air-conditioning units (ACs) to participate in primary frequency regulation without affecting indoor comfort. Due to the bandwidth limitations and latency in communication, the real-time centralised control method face great challenges. This study proposes a two-level coordinated state-estimation method to reduce the coordination burden, in which a central coordinator and local controller for each AC are involved. The central coordinator periodically gathers the working state of every AC and estimated thermal parameters individually, then broadcasts this identified model parameters - the coordination information - to each local controller. Resorting to a state-estimation method considering the coordinated information and local measurements, local controller determines whether to toggle the state of local AC to realise a fast frequency response. Simulation results show that the approach can effectively manage a large number of ACs with heterogeneous parameters to provide a primary frequency regulation service without inducing a rebound effect.
机译:大规模可再生能源的渗透导致主要频率调节资源的短缺以及调节需求的增加。通过利用建筑物的热容量,作者通过聚集多个空调单元(AC)参与一次频率调节而不会影响室内舒适度,从而获得了与涡轮机下垂控制相当的线性工频特性。由于带宽的限制和通信的等待时间,实时集中控制方法面临很大的挑战。这项研究提出了一种两级协调状态估计方法来减轻协调负担,其中涉及每个AC的中央协调器和本地控制器。中央协调器定期分别收集每个AC的工作状态和估计的热参数,然后将此识别的模型参数-协调信息-广播到每个本地控制器。借助于考虑协调信息和本地测量的状态估计方法,本地控制器确定是否切换本地AC的状态以实现快速的频率响应。仿真结果表明,该方法可以有效地管理大量具有异构参数的AC,从而在不引起回弹效应的情况下提供一次调频服务。

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