1 |
刘毅刚. 智能座舱趋势研究[J]. 广东化工, 2019, 46(8):128-130.
|
|
LIU Y G. Intelligent cockpit trend research[J]. Guangdong Chemical Industry, 2019, 46(8):128-130.
|
2 |
JAMIE Broome.GPU与NNA赋能智能座舱与自动驾驶[J].电子产品世界,2021,28(8):15.
|
|
JAMIE Broome.GPU and NNA enable intelligent cockpit and autopilot [J]. World of Electronic Products,2021,28(8):15.
|
3 |
张颖. 数字化时代,汽车座舱显示屏技术的发展之路[J]. 汽车与配件,2019(23):48-49.
|
|
ZHANG Y. In the digital age, the development road of automobile cockpit display technology [J]. Automobile and Accessories,2019(23):48-49.
|
4 |
张腾龙. 汽车座舱显示屏技术的发展之路[J]. 汽车博览,2020(13):120.
|
|
ZHANG T L. The development of automobile cabin display technology[J]. Automobile Expo,2020(13):120.
|
5 |
冯世杰、刘鹏飞、靳兵. 基于CAN总线的汽车语音功能设计实现[J]. 汽车电器, 2020(9):36-39.
|
|
FENG S J,LIU P F,JIN B. Design and implementation of automobile voice function based on CAN bus [J]. Automobile Electrical Appliances, 2020(9):36-39.
|
6 |
RIERA B, GRISLIN M, MILLOT P. Methodology to evaluate man-car interfaces[J]. IFAC Proceedings Volumes, 1994, 27(12): 425-430.
|
7 |
ALM T, OHLSSON K, KOVORDANYI R. Glass cockpit simulators tools for IT-based car systems design and evaluation[C]. Proceedings of Driving Simulator Conference,2005.
|
8 |
李金波, 许百华. 人机交互过程中认知负荷的综合测评方法[J]. 心理学报, 2009, 41(1): 35-43.
|
|
LI J B, XU B H. Synthetic assessment of cognitive load in human-machine interaction process [J]. Acta Psychologica Sinica, 2009, 41(1): 35-43.
|
9 |
PAAS F, MERRINBOER J J G V. The efficiency of instructional conditions: an approach to combine mental effort and performance measures [J]. Human Factors The Journal of the Human Factors and Ergonomics Society, 1993, 35(4):737-743.
|
10 |
NA S H, LIM S H, CHOI H S, et al. Evaluation of driver’s discomfort and postural change using dynamic body pressure distribution[J]. International Journal of Industrial Ergonomics, 2005(35):1085-1096.
|
11 |
TELFER S, SPENCE W D, SOLOMONIDIS S E. The potential for actigraphy to be used as an indicator of sitting discomfort[J]. Human Factors, 2009, 51(5):694-704.
|
12 |
TRAPANESE S, NADDEO A, CAPPETTI N. A preventive evaluation of perceived postural comfort in car-cockpit design: differences between the postural approach and the accurate muscular simulation under different load conditions in the case of steering-wheel usage[C]. SAE Paper 2016-01-1434.
|
13 |
NADDEO A, CAPPETTI N, DORIA C. Proposal of a new quantitative method for postural comfort evaluation[J]. International Journal of Industrial Ergonomics, 2015(48):25-35.
|
14 |
NADDEO A, FASULO L, VALLONE M. Ergonomic analysis and comfort driven redesign of student classroom combo desks at university of salerno (ITALY)[J]. Journal of Industrial Design & Engineering Graphics, 2015, 10(Special Issue):33-44.
|
15 |
刘潇. 面向任务的歼击机座舱工效评价指标体系[J]. 机械工程师, 2018(6):88-90.
|
|
LIU X. Task-oriented indicator system for human factor assessment of fighter cockpit[J]. Mechanical Engineer, 2018(6):88-90.
|
16 |
ZHANG X, SUN Y C, ZHANG Y J, et al. Multi-agent modelling and situational awareness analysis of human-computer interaction in the aircraft cockpit: a case study[J]. Simulation Modelling Practice and Theory, 2021(111):1-22.
|