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Ancillary services to the grid from commercial buildings through demand scheduling and control

机译:从商业建筑到需求调度和控制的网格辅助服务

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How can a building Heating, Ventilation, Air Conditioning (HVAC) system vary its real time power consumption to provide ancillary services to the power grid without sacrificing occupant comfort? Prior work showed how this can be done if the reference power variation is of high frequency (seconds to a few minutes) so that the climate control system filters out the disturbance. This paper addresses the question of how to do that when the reference power variation is of lower frequency, e.g., periods of a few minutes to an hour. We propose a receding horizon approach to schedule the baseline cooling and heating power of a building based on weather forecasts. A lower level controller is then used to track the scheduled baseline plus ancillary service reference signal. Periodic updates to the scheduler based on measurements ensure quality of service in spite of forecasting errors. The algorithm is tested in simulation. Results show that ancillary service in the frequency range of f ∈ [1/(1 hour), 1/(10 minutes)] can be extracted from commercial building HVAC systems while still maintaining a comfortable indoor climate.
机译:建筑物的采暖,通风,空调(HVAC)系统如何在不牺牲乘员舒适性的情况下改变其实时功耗以向电网提供辅助服务?先前的工作表明,如果参考功率变化频率很高(几秒到几分钟),可以如何做到这一点,这样气候控制系统就可以滤除干扰。本文讨论了当参考功率变化频率较低时(例如几分钟到一个小时的周期)如何执行此操作的问题。我们建议采用后退地平线方法,根据天气预报来调度建筑物的基准制冷和制热能力。然后,使用较低级别的控制器来跟踪计划的基线以及辅助服务参考信号。尽管有预测错误,但基于测量值对调度程序进行的定期更新可确保服务质量。该算法已在仿真中进行了测试。结果表明,可以从商业建筑的HVAC系统中提取频率为f∈[1 /(1小时),1 /(10分钟)]的辅助服务,同时仍保持舒适的室内气候。

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