[1] 公安部交通管理局. 中华人民共和国道路交通事故统计年报(2017年度)[R]. 北京:人民交通出版社,2018.
Traffic Management Bureau of the Ministry of Public Security of China. Annual Statistics Report of China Road Traffic Collisions in 2017 [R]. Beijing: China
Communications Press, 2018.
[2] LENARDA J, ROMERO A B, DANTON R. Typical pedestrian accident scenarios for the development of autonomous emergency braking test protocols [J]. Accident
Analysis and Prevention, 2014, 73(11): 73-80.
[3] SILLA A, LEDEN L, RAMA P, et al. Can cyclist safety be improved with intelligent transport systems? [J]. Accident Analysis and Prevention, 2017, 105(8):
134-145.
[4] BELLA F, NATALE V, SILVESTRI M. Driver-pedestrian interaction under different road environments [J]. Transportation Research Procedia, 2017, 27: 148-155.
[5] SEARSON D J, ANDERSON R W G, HUTCHINSON T P. Integrated assessment of pedestrian head impact protection in testing secondary safety and autonomous emergency
braking [J]. Accident Analysis and Prevention, 2014, 63(2)3: 1-8.
[6] ANAYA J J, MERDRIGNAC P, SHAGDAR O, et al. Vehicle to pedes-trian communications for protection of vulnerable road users [C]∥ 2014 IEEE Intelligent
Vehicles Symposium Proceedings. Dearborn:[s.n.],2014: 1037-1042.
[7] DHONDGE K, SONG S, CHOI B Y, et al. Wifihonk: smartphone-based beacon stuffed Wi-Fi car2x-communication system for vulnerable road user safety [C]∥IEEE
Vehicular Technology Conference (VTC Spring). [s.l.]:IEEE, 2014: 1-5.
[8] HUSSEIN A, GARCIA F, ARMINGOL J M, et al. P2V and V2P communication for pedestrian warning on the basis of autonomous vehicles [C]∥ 19th International
IEEE Conference on Intelligent Transportation Systems (ITSC).[s.l.]:IEEE, 2016: 2034-2039.
[9] LARGE D R, KIM H, MERENDA C, et al. Investigating the effect of urgency and modality of pedestrian alert warnings on driver acceptance and performance [J].
Transportation Research Part F: Traffic Psychology and Behavior, 2019, 60(1): 11-24.
[10] SARVESTANI A T, MAHJOUB H N, FALLAH Y P, et al. Implementation and evaluation of a cooperative vehicle-to-pedestrian safety application [J]. IEEE
Intelligent Transportation Systems Magazine, 2017, 9(4): 62-75.
[11] AZIZ H, UKKUSURI S V, HASAN S. Exploring the determinants of pedestrian-vehicle crash severity in New York City [J]. Accident Analysis and Prevention,
2013, 50: 1298-1309.
[12] 潘兵宏, 赵一飞, 梁孝忠. 动视觉原理在公路线形设计中的应用[J]. 长安大学学报(自然科学版), 2004,24(6): 20-24.
PAN Binghong, ZHAO Yifei, LIANG Xiaozhong. Application of dynamic vision theory in highway alignment design [J]. Journal of Changan University: Natural Science
Edition, 2004, 24 (6): 20-24.
[13] TAHMASBI S A, MAHJOUB H N, FALLAH Y P, et al. Implemen-tation and evaluation of a cooperative vehicle-to-pedestrian safety application [J]. IEEE
Intelligent Transportation Systems Magazine, 2017, 9(4): 62-75.
[14] XIAO H, OUYANG S. Power control game in multisource multi-relay cooperative communication systems with a quality-of-service constraint [J]. IEEE
Transactions on Intelligent Transportation Systems, 2015, 16(1): 41-50.
[15] SHEYKHFARD A, HAGHIGHI F. Performance analysis of urban drivers encountering pedestrian [J]. Transportation Research Part F: Traffic Psychology and
Behavior, 2019, 62(4): 160-174.
[16] SUN J, LI T, LI F, et al. Analysis of safety factors for urban expressways considering the effect of congestion in Shanghai, China [J]. Accident Analysis
and Prevention, 2016, 95: 503-511.
[17] HALEEM K, ALLURI P, GAN A. Analyzing pedestrian crash injury severity at signalized and non-signalized locations [J]. Accident Analysis and Prevention,
2015, 81(8): 14-23.
[18] LANGBROEK J, CEUNYNCK T D, DANIELS S, et al. Analyzing Interactions between Pedestrians and Motor Vehicles at Two-Phase Signalized Intersections — An
Explorative Study Combining Traffic Behavior and Traffic Conflict Observations in a Cross-National Context [R]. Sweden: Lund University, 2012.
[19] 马莹莹, 温沉, 陆思园. 无信号路段人行横道人车冲突概率估计[J]. 重庆交通大学学报(自然科学版), 2020, 39(1): 15-22.
MA Yingying, WEN Chen, LU Siyuan. Pedestrian-vehicle conflict probability estimation at uncontrolled crosswalks [J]. Journal of Chongqing Jiaotong University
(Natural Science), 2020, 39(1): 15-22.
[20] ELBADRAWI H R. A Computer Simulation Model for Single-Lane Roundabouts [D]. Miami: Florida International University, 2000.
[21] TIPALDO J M. Pedestrian-Vehicle Conflict Based Traffic Signal Warrant for Two Lane Crossing [D]. Florida: Polytechnic University, 1999.
[22] ZHENG Y, ELEFTERIADOU L. A model of pedestrian delay at unsignalized intersections in urban networks [J]. Transportation Research Part B: Methodological,
2017, 100(6): 138-155.
[23] HUANG S, YANG J, EKLUND F. Evaluation of remote pedestrian sensor system based on the analysis of car-pedestrian accident scenarios [J]. Safety Science,
2008, 46(11): 1345-1355.
[24] MONTUFAR J, ARANGO J, PORTER M, et al. Pedestrians normal walking speed and speed when crossing a street [J]. Transportation Research Record, 2007(1),
90-97. |