Abstract:In order to overcome the limitations of the existing evaluation model of high-speed train passenger interface,such as single index,subjective randomness of weighting method and lack of quantitative analysis. Firstly,a satisfaction survey was conducted on the new type double deck high-speed test sample train. On this basis,starting from the comprehensiveness,systematicness and hierarchy of the evaluation indicators,a hierarchical index system is constructed,which consists of five evaluation criteria and 36 specific indexes,including facility scale,safety design,function use,space environment,and aesthetic design. Secondly,a fuzzy comprehensive evaluation model is proposed,which combines the analytic hierarchy process (AHP) method with independent weight method,it retains the subjective opinions of experts and objective information in the passenger experience survey data. Finally,the weights of each level of the passenger interface evaluation index system are solved based on expert judgment data and survey score data,and the evaluation grades of the new prototype and the existing train are calculated. The results show that the comment grade of the new prototype is satisfactory with the membership degree of 0.3977,and the comment grade of the existing train is very satisfactory with the membership degree of 0.4422. According to the weight calculation,the design improvement sequence of passenger interface should be facility scale,functional operation,space environment,safety design, and aesthetic design. In the evaluation criteria,the man-machine surface of the seat,the rounded corners of the facility,the adjustability of the seat,the air quality and the color coordination are the factors that have the greatest impact on passenger satisfaction.
何思俊, 支锦亦. 基于AHP-独立性权数法的列车旅客界面设计评价[J]. 西南交通大学学报, 2021, 56(4): 897-904.
HE Sijun, ZHI Jinyi. Evaluation of Train Passenger Interface Design Based on Analytic Hierarchy Process with Independent Weight Method. Journal of SouthWest JiaoTong University, 2021, 56(4): 897-904.
王智勇,李洋,李娟. 轨道交通车辆内室的人性化设计[J]. 机械设计,2014,31(3): 125-128WANG Zhiyong, LI Yang, LI Juan. Humanization design on interiors of the railcar[J]. Journal of Machine Design, 2014, 31(3): 125-128
[2]
张卫华. 高速列车顶层设计指标研究[J]. 铁道学报,2012,34(9): 15-19ZHANG Weihua. Study on top-level design specifications of high-speed trains[J]. Journal of the China Railway Society, 2012, 34(9): 15-19
[3]
李娟,徐伯初,支锦亦,等. 列车内环境设计对用户满意度及视知觉特性影响分析[J]. 西南交通大学学报,2014,49(1): 179-184LI Juan, XU Bochu, ZHI Jinyi, et al. Analysis on influence of train interior design on user satisfaction and visual perception[J]. Journal of Southwest Jiaotong University, 2014, 49(1): 179-184
[4]
李娟,徐伯初,董时羽,等. 基于感性工学的高速列车内环境设计[J]. 机械设计与研究,2013,29(6): 47-49,54LI Juan, XU Bochu, DONG Shiyu, et al. Research on high-speed train interior aesthetic design based on kansei engineering[J]. Machine Design & Research, 2013, 29(6): 47-49,54
[5]
姜良奎,向泽锐,刘峰. 无辅助抓握件地铁车内扶手布置设计研究[J]. 包装工程,2017,38(2): 15-20JIANG Liangkui, XIANG Zerui, LIU Feng. Layout design of handrails without assistive handles for metro vehicles[J]. Packaging Engineering, 2017, 38(2): 15-20
[6]
章勇,徐伯初,支锦亦,等. 高速列车旋转座椅的人机工程改进设计[J]. 机械设计,2016,33(8): 109-112ZHANG Yong, XU Bochu, ZHI Jinyi, et al. Improved design on human-machine engineering for the rotary seat of high speed train[J]. Journal of Machine Design, 2016, 33(8): 109-112
魏峰,董石羽,徐伯初,等. 基于模糊层次分析的高速列车座椅舒适度评估与应用[J]. 机械设计,2017,34(4): 119-123WEI Feng, DONG Shiyu, XU Bochu, et al. Comfort evaluation and application of high-speed train passenger seat based on FAHP[J]. Journal of Machine Design, 2017, 34(4): 119-123
[9]
THOREAU R, HOLLOWAY C, BANSAL G, et al. Train design features affecting boarding and alighting of passengers:train design affecting boarding and alighting[J]. Journal of Advanced Transportation, 2016, 50(8): 2077-2088
[10]
LEE J H, JIN B S, JI Y. Development of a structural equation model for ride comfort of the korean high-speed railway[J]. International Journal of Industrial Ergonomics, 2009, 39(1): 7-14
[11]
ALPU O. A methodology for evaluating satisfaction with high-speed trainn,services:a case study in Turkey[J]. Transport Policy, 2015, 44(11): 151-157
[12]
周韶泽,杨文庆,聂春戈,等. 基于虚拟现实的动车组虚拟检修仿真研究[J]. 机械设计与制造,2020(3): 190-193ZHOU Shaoze, YANF Wenqing, NIE Chunge et al. Simulation research of EMU virtual maintenance based on virtual reality[J]. Machinery Design & Manufacture, 2020(3): 190-193
[13]
魏峰,徐伯初,支锦亦,等. 地铁客室乘坐设备人机功能尺寸设计[J]. 西南交通大学学报,2018,53(4): 865-872WEI Feng, XU Bochu, ZHI Jinyi, et al. Man-machine functional dimension design of riding equipment in subway passenger compartments[J]. Journal of Southwest Jiaotong University, 2018, 53(4): 865-872
[14]
裴卉宁. 基于工效学负荷理论的民机客舱乘坐舒适度评价方法[D]. 西安:西北工业大学,2018.
[15]
黄风立,赵燕伟,华尔天. 基于满意度的模糊机会约束模型在产品设计中的应用[J]. 中国机械工程,2004,15(24): 2222-2225HUANG Fengli, ZHAO Yanwei, HUA Ertian. Applications of fuzzy chance constrained model in product design based on satisfaction[J]. China Mechanical Engineering, 2004, 15(24): 2222-2225
[16]
SAATY T L. How to make a decision:the analytic hierarchy process[J]. European Journal of Operational Research, 1994, 24(6): 19-43