参考文献/References:
[1]李正鑫,高羽,刘经纬,等.机遇与挑战:我国体育场馆智慧化转型发展策略[J].体育科技文献通报,2022,30(12):225-228.
LI Zhengxin, GAO Yu, LIU Jingwei, et al. Opportunities and challenges: strategy for the smart transformation and development of sports stadiums in China[J].Bulletin of Sport Science & Technology, 2022, 30(12):225-228.
[2]中华人民共和国住房和城乡建设部.体育场馆照明设计及检测标准:JGJ 153—2016[S].北京:中国建筑工业出版社,2016.
Ministry of Housing and Urban-Rural Development of the People's Republic of China.Standard for lighting design and test of sports venues:JGJ 153—2016[S].Beijing:China Architecture & Building Press, 2016.
[3]陈超泉,吴逢铁.低眩光篮球场节能照明光学设计与优化[J].激光与光电子学进展,2022,59(11):407-412.
CHEN Chaoquan, WU Fengtie. Optical design and optimization of energy-saving lighting for low-glare basketball courts[J].Laser & Optoelectronics Progress, 2022,59(11):407-412.
[4]黄显雯, 白荣, 薛仁雨,等. 基于DIALux的室内篮球馆照明设计与模拟[J]. 智能建筑电气技术,2018,12(4):39-42.
HUANG Xianwen, BAI Rong, XUE Renyu, et al. Lightin design and simulation of basketball infields based on DIALux[J]. Electrical Technology of Intelligent Buildings, 2018, 12(4):39-42.
[5]朱悦,林若慈.体育场馆照明灯具位置和配光照明指标的影响[J]. 照明工程学报, 2015(3):68-75.
ZHU Yue, LIN Ruoci. Impact on lighting effects of luminaire position and it's light distribution in venues lighting[J]. China Illuminating Engineering Journal, 2015(3): 68-75.
[6]于瑛,崔梓豪,陈笑,等.“十四运”场馆场地照度分布研究及照明方案设计[J].西安建筑科技大学学报(自然科版),2021,53(5):781-789.
YU Ying,CUI Zihao,CHEN Xiao, et al.Research on illumination distribution and lighting scheme design of the venues of the 14th National Games[J].J. Xi'an Univ. of Arch. & Tech.(Natural Science Edition),2021,53(5): 781-789.
[7]SUN Wenshing, TIEN Chuenlin, TSUE Chihsuan, et al. Simulation and comparison of the illuminance, uniformity, and efficiency of different forms of lighting used in basketball court illumination[J]. Applied Optics, 2014, 53(29):186-194.
[8]于瑛,崔梓豪,陈笑,等.基于贪心算法的综合性体育场馆照明系统优化设计[J].激光与光电子学进展,2022,59(17):343-350.
YU Ying, CUI Zihao,CHEN Xiao, et al. Optimal Design of a comprehensive gymnasium lighting system based on greedy algorithm[J].Laser & Optoelectronics Progress, 2022,59(17):343-350.
[9]PETRANOVIC' Davor. Football stadium floodlight aiming by using a genetic algorithm with multi-step approach[J].Polytechnic and Design, 2015, 3(2): 135-143.
[10]NATH Dipayan, SASWATI Mazumdar. Weighted sum based outdoor sports lighting designing using meta-heuristic algorithms[C]//2020 IEEE International Conference on Power Electronics, Smart Grid and Renewable Energy(PESGRE2020). Kerala,India:IEEE, 2020.
[11]XIAO Hui, FANG Jing, ZHU Ping, et al. Energy-saving optimization of football field lighting via genetic algorithm[J]. Sensor Letters, 2014, 12(2): 264-269.
[12]范文英. 基于神经网络算法的体育馆照明设计方法研究与应用[D].西安:西安建筑科技大学,2020.
FAN Wenying. Research and Application of gymnasium lighting design method based on neural network algorithm[D].Xi'an: Xi'an Univ. of Arch. & Tech.,2020.
[13]李炳华,常昊,王成,等.基于PSO-SVM的体育场馆照明计算与优化[J].照明工程学报,2020,31(4):33-39.
LI Binghua, CHANG Hao, WANG Cheng, et al. The calculation and optimization of stadium lighting based on PSO-SVM[J].China Illuminating Engineering Journal, 2020,31(4):33-39.
[14]HAMEDANI Zahra, SOLGI Ebrahim, HINE, et al. Revealing the relationships between luminous environment characteristics and physiological, ocular and performance measures: An experimental study[J]. Building and Environment, 2020, 172: 106702.
[15]WANG Kun, HO Chunheng, ZONG Yan. Analysis of brightness and color temperature of liquid crystal display on visual comfort based on eye health monitoring of humans[J]. Journal of Medical Imaging and Health Informatics, 2020, 10(6): 1359-1364.
[16]庞璐,韩卫然,严少飞.晋陕传统合院民居光环境研究——以两处民居室内采光为例[J].西安建筑科技大学学报(自然科学版),2022,54(5):701-709.
PANG Lu, HAN Weiran, YAN Shaofei. Study on the light environment of traditional courtyard dwellings in Shanxi and Shaanxi[J].J. Xi'an Univ. of Arch. & Tech.(Natural Science Edition),2022,54(5): 701-709.
[17]SHI Ligang, ZHANG Yuanxue, WANG Zhuoli, et al. Luminance parameter thresholds for user visual comfort under daylight conditions from subjective responses and physiological measurements in a gymnasium[J]. Building and Environment, 2021, 205: 108187.
[18]KEVIN V W, MEHLIKA I. Evaluating a new suite of luminance-based design metrics for predicting human visual comfort in offices with daylight[J]. Leukos, 2016, 12(3): 113-138.
[19]陈燕达.办公室环境LED照明舒适性研究[D].南京:东南大学,2016.
CHEN Yanda. The study of comfort in office lighting with LEDs[D].Nanjing:Southeast University,2016.
[20]LIU Yilin, ZHANG Shanshan, WU Yue, et al. Studies on visual health features of luminous environment in college classrooms[J]. Building and Environment, 2021, 205: 108184.
[21]MARTIN M, JELLA P, THIES P, et al. Combining virtual reality and mobile eye tracking to provide a naturalistic experimental environment for shopper research[J]. Journal of Business Research, 2019, 100: 445-458.
[22]刘雨霏. 虚拟光环境下导识亮度对比对行人注视行为影响的研究[D].泉州:华侨大学,2021.
LIU Yufei. The influence of luminance contrast of signs on pedestrians'gaze behavior in virtual lighting environment[D].Quanzhou:Huaqiao University,2021.
[23]GIOVANN C, ENRICO R, DANIEL N. Way-finding lighting systems for rail tunnel evacuation: A virtual reality experiment with Oculus Rift[J]. Journal of Transportation Safety & Security, 2016, 8(s1): 101-117.
[24]HEGAZY Muhammad, YASUFUKU Kensuke, ABE Hirokazu. An interactive approach to investigate brightness perception of daylighting in immersive virtual environments: Comparing subjective responses and quantitative metrics[C]//Building Simulation. Beijing, China: Tsinghua University Press, 2022.
[25]NATEEPHRA Worawan, MOTAMEDI Ali, FUKUD Tomohir, et al. Integrating building information modeling and virtual reality development engines for building indoor lighting design[J]. Visualization in Engineering, 2017, 5: 1-21
[26]CHEN Yaodong, CUI Zhe, HAO Luoxi. Virtual reality in lighting research: Comparing physical and virtual lighting environments[J]. Lighting Research & Technology, 2019, 51(6): 820-837.
[27]ABD-ALHAMID Fedaa, KENT Michael, BENNETT Christopher, et al. Developing an innovative method for visual perception evaluation in a physical-based virtual environment[J]. Building and Environment, 2019, 162: 106278.
[28]ROCKCASTLE Siobhan, CALABRESE Evon. Comparing perceptions of a dimmable LED lighting system between a real space and a virtual reality display[J]. Lighting Research & Technology, 2021, 53(8): 701-725.
[29]MA J H, LEE J K, CHA S H. Effects of lighting CCT and illuminance on visual perception and task performance in immersive virtual environments[J]. Building and Environment, 2022, 209: 108678.