Frequency regulation by management of building cooling systems through Model Predictive Control

F. Baccino, F. Conte, S. Massucco, F. Silvestro, S. Grillo
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引用次数: 21

Abstract

Frequency stability in power systems is a key driver for the maintenance of supply quality. Thermal loads, if properly managed, can play an important role in providing support to the frequency regulation. In this framework, the paper presents a control strategy to enable a load aggregator to manage a set of building cooling systems to contribute both to primary and secondary regulation. The proposed strategy uses the Model Predictive Control approach. Frequency support is provided without compromising the natural mission of the controlled loads, i.e., the end-user thermal comfort. The introduced method is tested by means of software-in-the-loop simulation studies. The implemented testing framework emulates real-time operation of a building aggregate within a benchmark network with high penetration of wind generation. Results show the ability of the control algorithm to optimally coordinate the contribution of thermal loads both to primary and secondary frequency regulation.
基于模型预测控制的建筑冷却系统频率调节
电力系统的频率稳定性是保证供电质量的关键因素。热负荷,如果管理得当,可以发挥重要作用,为频率调节提供支持。在此框架下,本文提出了一种控制策略,使负荷聚合器能够管理一组建筑冷却系统,以促进一次和二次调节。该策略采用模型预测控制方法。频率支持在不影响受控负载的自然任务的情况下提供,即最终用户的热舒适性。通过软件在环仿真研究对所提出的方法进行了验证。实施的测试框架模拟了在风力发电高渗透的基准网络中建筑骨料的实时运行。结果表明,该控制算法能够最优地协调热负荷对一次和二次频率调节的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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