基于模糊的楼宇自动化控制系统仿真及灵敏度分析

L. Martirano, G. Parise, L. Parise, M. Manganelli
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引用次数: 14

摘要

楼宇自动化系统是提高建筑物能源性能和居住者舒适度的关键。有必要建立一个关于这个问题的知识库,并为“智能建筑”的智能管理开发合适的算法。事实上,模糊逻辑是开发鲁棒算法的一个有价值的候选者。目前的工作范围是验证一种模糊逻辑方法,能够优化办公空间的能源性能和舒适度,利用BAS和太阳能。在BAS中,动态元素(例如动态幕墙和灯具)可以利用日光和太阳能增益;在程序良好的情况下,采用综合多准则决策方法。本文研究了智能办公空间SOR的虚拟模型,该模型配备了动态遮阳、照明和空调控制系统,并考虑了不同的场景:1)控制与无控制;Ii)经济vs舒适模式;iii)荧光灯与LED;Iv)调光与切换。经济和舒适模式均比非控制模式表现出更好的能源性能。总之,所提出的模型是一个有价值的工具,以优化舒适功能和能源需求作为一个整体。
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Simulation and sensitivity analysis of a fuzzy-based building automation control system
Building Automation Systems BAS are the key to improve the energy performance of buildings and the occupants' comfort. There is a need to build a knowledge base on the matter and to grow suitable algorithms for a smart management of the “intelligent buildings”. Indeed, fuzzy logic is a valuable candidate for developing robust algorithms. The scope of the present work is to validate a fuzzy logic approach able to optimize the level of energy performance and comfort in an office space, taking advantage of BAS and solar energy. In BAS, dynamic elements (e.g. dynamic façade and luminaires) can exploit daylight and solar gain; on the condition that well-programmed integrated multicriteria decision making methods are used. In this paper, a virtual model of a Smart Office Room SOR, equipped with dynamic shading, lighting and air conditioning control system, was studied and different scenarios were considered: i) control versus no-control; ii) economy versus comfort mode; iii) fluorescent versus LED; iv) dimming versus switching. Both economy and comfort mode showed a better energy performance than non-controlled scenarios. In conclusion, the proposed model is a valuable tool to optimize comfort features and energy demand as a whole.
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