建筑自动化节能与用户舒适的模型预测控制策略

S. Zanoli, C. Pepe, L. Orlietti, D. Barchiesi
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引用次数: 11

摘要

家庭和楼宇自动化提供室内环境的自动控制,其主要目标是在实现显著节能的同时满足用户需求。在本文中,家庭和办公建筑的节能是通过对热和照明设备的有效管理,以及利用可再生资源,如太阳(热能和光能)来实现的,同时考虑到用户的舒适度。热和照明系统(主要在快门驱动中)之间存在耦合效应,这通常要求在执行器控制动作方面进行对比,如果采用标准控制方法,则增加了控制器设计的困难。采用模型预测控制技术对原有的控制系统进行了改进。该系统将热、光供电耗能源与绿色供电源相结合。为了处理非线性,在模型预测控制器的开发中采用了一种切换方法,该方法基于依赖于热辐射和太阳光辐射的一组模型。建议的解决方案可以在监管和能源效率方面取得令人满意的表现;此外,利用绿色能源供应,实现了能源消耗的显着降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Model Predictive Control strategy for energy saving and user comfort features in building automation
Home & Building Automation provides automatic control of indoor environments and its primary goals are the fulfillment of user requirements while realizing significant energy savings. In the present paper, energy saving in home and office buildings is achieved through an efficient management of heat and lighting devices and with the exploitation of renewable resources, like sun (thermal and light energy) that takes into account user comfort. The presence of coupling effects between the thermal and illuminance systems (mainly in shutter actuation) that often calls for contrasting requests in terms of actuators control actions, adds difficulties to the controller design if approached with standard control methods. An improvement of a previous control system is performed by the authors by adopting Model Predictive Control techniques. The proposed system integrates energy-consuming sources for heat and light power supply, with green energy-supplying sources. To handle the nonlinearities a switching approach has been adopted in developing the Model Predictive Controller, which is based on a bank of models dependent on thermal and light solar radiation. The proposed solution allows obtaining satisfactory performances in terms of regulation and energy efficiency; in addition, exploiting green energy-supplying sources, a sensible reduction of energy consumption is achieved.
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