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Luminance Optimization in Closed Environments by Simulated Annealing

机译:模拟退火在封闭环境中的亮度优化

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摘要

This work presents a novel automated method for optimization of luminaries distribution in closed environments using a simulated annealing method. The input variables of the optimization method are: luminance level, luminance uniformity, installation cost and operational cost. In addition to the development of an automated method, this work offers a graphic tool to improve the environment data input and to present the results of the luminance project. To develop an optimized project, the method requires the following information: luminary type, environment destination, environment blueprint and reflection wall conditions. In the results, we show the method's performance changing the simulated annealing method parameters such as initial temperature, temperature decrease rate and number of iterations at the same temperature. We also compare the results of the developed method with results presented by the lumen method and with a project developed by a specialist. In conclusion, the use of a simulated annealing optimization method for this luminance project facilitates developing an efficient tool optimizing all the parameters previously mentioned.
机译:这项工作提出了一种使用模拟退火方法优化封闭环境中灯具分布的新颖自动化方法。优化方法的输入变量是:亮度水平,亮度均匀性,安装成本和运营成本。除了开发一种自动方法之外,这项工作还提供了一个图形工具来改善环境数据输入并显示亮度项目的结果。要开发优化的项目,该方法需要以下信息:照明类型,环境目的地,环境蓝图和反射墙状况。结果表明,该方法的性能改变了模拟退火方法的参数,例如初始温度,温度降低率和在相同温度下的迭代次数。我们还将开发方法的结果与流明方法的结果以及专家开发的项目进行比较。总之,对于该亮度项目使用模拟退火优化方法有助于开发一种有效的工具,以优化前面提到的所有参数。

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