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Application of multi-objective genetic algorithms to interior lighting optimization

机译:多目标遗传算法在室内照明优化中的应用

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摘要

The energy consumed by artificial lighting represents a vast amount of total energy consumption of a building. LED luminaires combine many advantages and they are considered a prominent lighting technology. The utilization of miscellaneous optimization methods in lighting control has achieved a variety of benefits, such as energy savings while sustaining illuminance at the required levels. However, there is a lack of methods, which take into account the uniformity of lighting which is a significant factor that should be considered according to the EN 12464. This paper proposes a multi-objective optimization model for artificial lighting control so as to minimize energy consumption and the same time maximize uniformity of lighting while maintaining the illuminance at an appropriate level. Two objective functions have been used, the first is the summation of the dimming levels of the luminaires of an interior space and the second is the coefficient of variation of root mean square error of illuminance which is metric of the uniformity of artificial lighting. Both functions have been formulated as mathematical functions of the dimming levels of the luminaires. Constraints include the required level of illuminance and the luminaires' dimming capabilities. The Non-Dominated Sorting Genetic Algorithm II is used to carry out the optimization. The proposed model has been implemented in an office room and the results demonstrated significant energy savings up to 22%. The proposed approach is flexible and can be applied to all types of interior spaces and is independent of the geometry and configuration of the room. (C) 2016 Elsevier B.V. All rights reserved.
机译:人工照明消耗的能量代表了建筑物的大量能源消耗。 LED灯具具有许多优点,被认为是一种杰出的照明技术。在照明控制中使用其他优化方法已经获得了许多好处,例如在将照明维持在所需水平的同时节省了能源。但是,缺乏方法来考虑照明的均匀性,这是根据EN 12464应当考虑的重要因素。本文提出了一种用于人工照明控制的多目标优化模型,以最大程度地减少能源消耗和同时最大化照明的均匀性,同时将照度保持在适当的水平。已经使用了两个目标函数,第一个是内部空间照明器的调光水平的总和,第二个是照度的均方根误差的变化系数,它是人造照明的均匀性的度量。这两个函数都已被公式化为照明器调光水平的数学函数。限制条件包括所需的照度水平和灯具的调光能力。使用非支配排序遗传算法II进行优化。提议的模型已在办公室中实施,结果表明可节省多达22%的能源。所提出的方法是灵活的,并且可以应用于所有类型的内部空间,并且与房间的几何形状和配置无关。 (C)2016 Elsevier B.V.保留所有权利。

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