[1] 王建民. 图形用户界面设计的原则与发展趋势探讨[J]. 艺术探索, 2007, 21(2): 118-119. WANG Jianmin. Discussion on the principle and development trend of graphic user interface design[J]. Arts Exploration, 2007, 21(2): 118-119. [2] 谭浩, 赵江洪, 王巍. 汽车人机交互界面设计研究[J]. 汽车工程学报, 2012, 2(5): 315-321. TAN Hao, ZHAO Jianghong, WANG Wei. Vehicle human machine interface design research[J]. Chinese Journal of Automotive Engineering, 2012, 2(5): 315-321. [3] WALKER G H, STANTON N A, YOUNG M S. Hierarchical task analysis of driving: a new research tool[C/OL].(2001-01). https://www.researchgate.net/publication/288008253_Hierarchical_task_analysis_of_driving_A_new_research_tool. [4] MICHON J. A Critical view of driver behavior models: What do we know, What should we do?[C/OL].(1984-09-23). http: //www.jamichon.nl/jam_writings/1985_criticial_view.pdf. [5] 谭浩, 张文泉, 赵江洪, 等.汽车交互界面视觉信息显示设计研究[J]. 装饰, 2012(9): 106-108. TAN Hao, ZHANG Wenquan, ZHAO Jianghong, et al. Automobile user interface visual information display design research[J]. Art & Design, 2012(9): 106-108. [6] 李永锋, 朱丽萍. 基于模糊层次分析法的产品可用性评价方法[J].机械工程学报, 2012, 48(14): 183-191. LI Yongfeng, ZHU Liping. Product usability evaluation method based on fuzzy analytic hierarchy process[J]. Journal of Mechanical Engineering, 2012, 48(14): 183-191. [7] 李慧芬, 李永锋. 汽车车内信息系统界面设计[J]. 人类工效学, 2014, 20(5): 43-46. LI Huifen, LI Yongfeng. In - vehicle information systems interface design[J]. Chinese Journal of Ergonomics, 2014, 20(5): 43-46. [8] 王颖, 刘瑞雪, 姜祝伟, 等.车载智能终端使用行为及人机交互安全研究[J]. 工业工程与管理, 2014, 19(3): 141-146. WANG Ying, LIU Ruixue, JIANG Zhuwei, et al. Using behavior and human machine interaction safety of in-vehicle smart terminals[J]. Industrial Engineering and Management, 2014, 19(3): 141-146. [9] 李霖, 贺锦鹏, 刘卫国, 等.先进驾驶辅助系统人机交互界面评价方法研究[J]. 汽车技术, 2014 (2): 58-62. LI Lin, HE Jinpeng, LIU Weiguo, et al. Evaluation method study of human-machine-interface of advanced driver assistance systems[J]. Automobile Technology, 2014 (2): 58-62. [10] JONEFJÄLL M. Visual assistance HMI for use of video camera applications in the car[D]. Västerbottens län: Luleå University of Technology, 2009. [11] MUHAMMAD A. A smart-dashboard augmenting safe & smooth driving [D]. Goteborg: Blekinge Institute of Technology, 2010. [12] 倪捷, 刘志强, 涂孝军, 等. 面向驾驶辅助系统的换道安全性预测模型研究[J]. 交通运输系统工程与信息, 2016, 16(4): 95-100. NI Jie, LIU Zhiqiang, TU Xiaojun, et al. Safety prediction model of lane changing based on driver assistance system[J]. Journal of Transportation Systems Engineering and Information Technology, 2016, 16(4): 95-100. [13] 王建强, 王海鹏, 刘佳熙, 等. 基于车路一体化的交叉口车辆驾驶辅助系统[J]. 中国公路学报, 2013, 26(4): 169-175, 183. WANG Jianqiang, WANG Haipeng, LIU Jiaxi, et al. Intersection vehicle driving assistance system based on vehicle-to-infrastructure communication[J]. China Journal of Highway and Transport, 2013, 26(4): 169-175, 183. [14] HARVEY C, STANTON N A. Usability evaluation for in-vehicle systems[M]. USA: Crc Press, 2013. [15] RYDSTRÖM A, BROSTRÖM R, BENGTSSON P A. Comparison of two contemporary types of in-car multifunctional interfaces [J]. Applied Ergonomics, 2012, 43(3): 507-514. [16] STANTON N A, YOUNG M S, WALKER G H. Automating the driver's control tasks[J]. International Journal of Cognitive Ergonomics, 2001, 5(3): 221-236. |