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Personal lighting control with occupancy and daylight adaptation

机译:占用和日光自适应的个人照明控制

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Personal control with occupancy and daylight adaptation is considered in a lighting system with multiple luminaires. Each luminaire is equipped with a co-located occupancy sensor and light sensor that respectively provide local occupancy and illumination information to a central controller. Users may also provide control inputs to indicate a desired illuminance value. Using sensor feedback and user input, the central controller determines dimming values of the luminaires using an optimization framework. The cost function consists of a weighted sum of illumination errors at light sensors and the power consumption of the system. The optimum dimming values are determined with the constraints that the illuminance value at the light sensors are above the reference set-point at the light sensors and the dimming levels are within physical allowable limits. Different approaches to determine the set-points at light sensors associated with multiple user illumination requests are considered. The performance of the proposed constrained optimization problem is compared with a reference stand-alone controller under different simulation scenarios in an open-plan office lighting system. (C) 2015 Elsevier B.V. All rights reserved.
机译:在具有多个照明器的照明系统中考虑具有占用和日光适应性的个人控制。每个照明器都配备有位于同一位置的占用传感器和光传感器,它们分别向中央控制器提供本地占用和照明信息。用户还可以提供控制输入以指示所需的照度值。使用传感器反馈和用户输入,中央控制器使用优化框架确定照明设备的调光值。成本函数由光传感器处的照明误差与系统功耗的加权总和组成。最佳调光值是受以下限制条件确定的:光传感器处的照度值高于光传感器处的参考设定点,并且调光级别在物理允许范围内。考虑了确定与多个用户照明请求相关联的光传感器处的设定点的不同方法。在开放式办公室照明系统中,在不同的模拟情况下,将所提出的约束优化问题的性能与参考独立控制器的性能进行了比较。 (C)2015 Elsevier B.V.保留所有权利。

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