360°全景摄像机照明测量。第1部分。技术程序和验证

IF 2.1 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Lighting Research & Technology Pub Date : 2022-07-24 DOI:10.1177/14771535221101557
H. Li, H. Cai
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引用次数: 6

摘要

本研究开发了一种借助理光Theta Z1全景相机的360°视场(FOV)照明测量方法。由于该方法可以从单个360°高动态范围(HDR)图像中检索360°视场内所有观看方向的多功能照明信息,因此提高了照明测量效率。本研究的第一部分着重于技术程序和验证。首先,解决了使用Theta Z1相机进行360°视场照明测量的所有技术问题,并提供了经过验证的逐步程序。然后开发了一种新的照度测量方法,借助Theta Z1相机从360°全景视场内的任何观看方向计算相机测量点的所有方向照度数据,从现场拍摄的单个360°HDR图像中检索。该360°视场照明测量方法的照度测量平均错误率为4.0%±2.4%,建筑室内照度测量平均错误率为3.1%±2.6%。报告结果包括配置、校准和后期图像处理的详细步骤和算法,并在线共享相应的MATLAB代码和Python程序。
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Lighting measurement with a 360° panoramic camera: Part 1 – Technical procedure and validation
This study developed a 360° field of view (FOV) lighting measurement method with the aid of the Ricoh Theta Z1 panoramic camera. As versatile lighting information from all viewing directions within 360° FOV can be retrieved from a single 360° high dynamic range (HDR) image, this new method improves the lighting measurement efficiency. Part 1 of this study reported in the present paper focuses on technical procedure and validation. Firstly, all technical issues were solved for using the Theta Z1 camera to conduct 360° FOV lighting measurement with a provided and validated step-by-step procedure. A new illuminance measurement method was then developed with the aid of the Theta Z1 camera for calculating all directional illuminance data at the camera measurement point from any viewing direction within the 360° panoramic FOV, retrieved from a single 360° HDR image taken in the field. This 360° FOV lighting measurement method has average error rate of 4.0% ± 2.4% for luminance measurement and 3.1% ± 2.6% for illuminance measurement in building interiors. Reported outcomes include the detailed procedure and algorithms for the configuration, calibrations and post-image processing, and corresponding MATLAB code and Python programs are shared online.
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来源期刊
Lighting Research & Technology
Lighting Research & Technology 工程技术-光学
CiteScore
5.40
自引率
16.00%
发文量
69
审稿时长
>12 weeks
期刊介绍: Lighting Research & Technology (LR&T) publishes original peer-reviewed research on all aspects of light and lighting and is published in association with The Society of Light and Lighting. LR&T covers the human response to light, the science of light generation, light control and measurement plus lighting design for both interior and exterior environments, as well as daylighting, energy efficiency and sustainability
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