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Application of Taguchi method in optimising thermal comfort and cognitive performance during direct load control events

机译:Taguchi方法在直接负载控制事件中优化热舒适性和认知性能中的应用

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Direct load control (DLC) is a demand response strategy that allows a utility or an aggregator to cycle specific appliances of their customers on and off or implement thermostat setback during peak demand periods. In the present research, a methodology is proposed to optimise DLC air-conditioning algorithms in order to achieve optimum and robust thermal comfort and cognitive performance outcome for commercial building occupants using Taguchi method. Human subject experiments were carried out simulating DLC events with four control factors in a university lecture theatre. Results reveal that off cycle fraction and adapting temperature are the two most important control factors that affect both the variability and mean response of building occupants' thermal sensation; off cycle fraction is the only significant control factor that affects the robustness of occupants' cognitive performance while none of the four control factors has any significant impact on the mean performance scores. DLC algorithms with off cycle fraction not higher than 50% and adapting temperature lower than occupants' neutral temperature are recommended to achieve optimum and robust thermal comfort and cognitive performance outcome. Cycling period and building envelope thermal performance do not have any significant impact. DLC air-conditioning strategies can be widely implemented in commercial buildings with various thermal performance conditions as long as the off cycle fraction and adapting temperature are optimised. (C) 2016 Elsevier Ltd. All rights reserved.
机译:直接负载控制(DLC)是一种需求响应策略,它允许公用事业公司或聚合商在高峰需求时段内循环打开或关闭其客户的特定设备或实施恒温器挫折。在本研究中,提出了一种用于优化DLC空调算法的方法,以便使用Taguchi方法为商业建筑居住者获得最佳而稳定的热舒适性和认知性能结果。在大学的演讲厅中进行了具有四个控制因素的DLC事件模拟人体实验。结果表明,关闭周期分数和适应温度是两个最重要的控制因素,它们同时影响建筑物居住者的热感觉的变异性和平均响应。周期外分数是影响乘员认知表现健壮性的唯一重要控制因素,而四个控制因素均未对平均表现得分产生任何显着影响。建议使用DLC算法,其不工作循环分数不大于50%,并且适应温度低于乘员的中性温度,以实现最佳且稳定的热舒适性和认知性能结果。循环周期和建筑物围护结构的热性能没有明显影响。 DLC空调策略可在具有各种热性能条件的商业建筑中广泛实施,只要优化关闭循环比例和适应温度即可。 (C)2016 Elsevier Ltd.保留所有权利。

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