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The integration of Day Light with advance fuzzy based controllers for institutional buildings in the region of Central Queensland, Australia

机译:澳大利亚中部昆士兰州地区建筑造成的日光与预先模糊控制器的整合

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Smart buildings lately have gained momentum due to its ability to drive, manage and control energy conservation measures. Fuzzy based controllers in Building Management Systems (BEMS) can use the latest and the most innovative control strategies in order to achieve a comfortable life style while savings energy and reducing greenhouse gas emissions. This system uses real life events as a point of control. Those real life events may include day-light usage (natural light), occupancy profile, passive cooling techniques and the usage of ambient atmosphere based on its ambient temperature and humidity. This paper develops a BMS using advanced fuzzy based controllers with integration of day light. This control strategy is based on quantifying the outside and the inside illuminance and allowing an add-on controller to perform a photometric calculation and comparison to decide rooms openings (windows). The paper also analyses energy savings and recommend suitable markets for this control strategy either during the design stage of a building, or after the building construction or retrofitting.
机译:由于其推动,管理和控制节能措施,智能建筑最近获得了势头。建筑管理系统(BEMS)中的基于模糊的控制器可以使用最新和最具创新性的控制策略,以实现舒适的生活方式,同时节省能源和减少温室气体排放。该系统使用真实生活事件作为控制点。这些现实生活事件可以包括日光使用(自然光),占用曲线,被动冷却技术,基于环境温度和湿度的环境大气的使用。本文使用高级模糊基于基于模糊的控制器开发了BMS,具有一天的光线。该控制策略基于量化外部和内部照度,并允许附加控制器执行光度计算和比较来决定房间开口(Windows)。本文还分析了节能,并在建筑物的设计阶段或建筑施工或改装之后推荐该控制策略的合适市场。

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