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System and method for the optimization of radiance modelling and controls in predictive daylight harvesting

机译:预测日光收获中的优化辐射建模和控制的系统和方法

摘要

In an example, an expected sky condition is calculated for a geographic location, a time of day, and a date based on a mathematical model. A predicted distribution of direct and interreflected solar radiation within the environment is calculated based on the expected sky condition. Measurement data from one or more photosensors is obtained that provides measurements of an initial distribution of direct and interreflected radiation within the environment, including radiation from solar and electrical lighting sources. A target distribution of direct and interreflected artificial electromagnetic radiation produced by electrical lighting is determined, based on the measurement data and the predicted distribution of direct and interreflected solar radiation, to achieve the target distribution of direct and interreflected radiation within the environment. Output parameters are set to one or more devices to modify the initial distribution to achieve the target distribution of direct and interreflected radiation within the environment, including diffusion characteristics of the materials between environments.
机译:在一个示例中,计算预期的天空条件,用于基于数学模型的一天中的一个地理位置,一天的时间和日期。基于预期的天空条件计算环境内的预测分布和截然切除的太阳辐射。获得来自一个或多个光电传感器的测量数据,其提供了在环境内直接和截然反射辐射的初始分布的测量,包括来自太阳能和电光源的辐射。基于测量数据和预测的直接和截然型太阳辐射的预测分布,确定通过电照射产生的直接和截然反射人工电磁辐射的目标分布,以实现环境内的直接和截然反射辐射的目标分布。输出参数被设置为一个或多个设备,以修改初始分布,以实现环境内的直接和截然反射辐射的目标分布,包括环境之间材料的扩散特性。

著录项

  • 公开/公告号US10952302B2

    专利类型

  • 公开/公告日2021-03-16

    原文格式PDF

  • 申请/专利权人 SUNTRACKER TECHNOLOGIES LTD.;

    申请/专利号US201916354476

  • 发明设计人 IAN ASHDOWN;WALLACE JAY SCOTT;

    申请日2019-03-15

  • 分类号G05B15/02;G06F17/11;H05B33/08;H05B47/105;H05B45/20;H05B47/11;H05B47/16;G06F30/13;G06F30/20;G05B19/042;G05B19/048;F24F11/30;F24F120/10;F24F130/20;F24F11/47;G06F119/06;

  • 国家 US

  • 入库时间 2022-08-24 17:42:28

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