Shandong Science ›› 2021, Vol. 34 ›› Issue (6): 97-105.doi: 10.3976/j.issn.1002-4026.2021.06.013
• Traffic and Transportation • Previous Articles Next Articles
ZHANG Wen-bo1(),ZUO Yu-fan1,WANG Yue-ping2,CHEN Jing-xu1,LIU Zhi-yuan1,*(
)
Received:
2020-12-30
Online:
2021-12-20
Published:
2021-12-13
Contact:
LIU Zhi-yuan
E-mail:zhiyuanl@seu.edu.cn
CLC Number:
ZHANG Wen-bo, ZUO Yu-fan, WANG Yue-ping, CHEN Jing-xu, LIU Zhi-yuan. Factors influencing residents' travel mode selection considering customized shuttle bus[J].Shandong Science, 2021, 34(6): 97-105.
Table 1
Factors influencing travel mode selection"
变量类型 | 变量符号 | 变量含义 | 变量处理 |
---|---|---|---|
个人基本属性 | GEN | 性别 | GEN=1 男性 |
AGE | 年龄,分为5个等级,以18岁以下为参考 | AGE_1=1 (18,25] | |
AGE_2=1 (25,35] | |||
AGE_3=1 (35,50] | |||
AGE_4=1 (50, +∞) | |||
LINC | 是否拥有驾驶证,以无驾驶证为参考 | LINC=1 有驾驶证 | |
IND_INC | 个人平均月收入,共分为5个等级,以收入(0,3000]为参考,单位为元 | IND_INC_1=1 (3000,6000] | |
IND_INC_2=1 (6000,10 000] | |||
IND_INC_3 =1 (10 000,15 000] | |||
IND_INC_4=1 (15 000, +∞) | |||
HOU_INC | 家庭平均月收入,共5个等级,以收入为(0,5000]为参考,单位为元 | HOU_INC_1=1 (5000,10 000] | |
HOU_INC_2=1 (10 000,15 000] | |||
HOU_INC_3=1 (15 000,20 000] | |||
HOU_INC_4=1 (20 000, +∞) | |||
CAR_OWN | 家庭私家车拥有量,以私家车拥有量为0为参考 | CAR_OWN_1=1 拥有1辆私家车 | |
CAR_OWN _2=1 拥有2辆及以上私家车 | |||
变量类型 | 变量符号 | 变量含义 | 变量处理 |
出行行为属性 | PURP | 出行目的,以通勤为参考 | PURP=0代表出行目的为通勤 |
出行方案属性 | SEAT | 是否有座位,以座位不确定为参考 | SEAT=1 确定有座位 |
TRAN | 是否需要换乘,分为3类,以不需要换乘为参考 | TRAN_1=1 需换乘1次 | |
TRAN_2=1 需换乘2次 | |||
WAIT_T | 上车前的等待时间,以2~5min为参考,单位为 min | WAIT_T_1=1 (5,10] | |
WAIT_T_2=1 (10,15] | |||
WAIT_T_3=1 (15, +∞) | |||
WALK_D | 至乘车点的步行距离,分为5个等级,以步行(0,500]为参考,单位为 m | WALK_D_1=1 步行(500,1000] | |
WALK_D_2=1 步行(1000, +∞) | |||
BIAS | 到达时间偏差,分为6个等级,以准时到达为参考 | BIAS_1=1 早到2 min | |
BIAS_2=1 早到5 min | |||
BIAS_3=1 早到6 min | |||
BIAS_4=1 早到8 min | |||
BIAS_5=1 早到10 min | |||
FEE | 出行花费 | 连续变量 | |
TIME | 行程时间 | 连续变量 |
[1] |
梁安宁, 黄娜娜, 张兵, 等. 基于NL模型的昌九客运交通方式选择分析[J]. 华东交通大学学报, 2020, 37(1):54-60. DOI: 10.16749/j.cnki.jecjtu.2020.01.008.
doi: 10.16749/j.cnki.jecjtu.2020.01.008 |
LIANG A N, HUANG N N, ZHANG B, et al. Analysis on choice of Changjiu passenger transport mode based on NL model[J]. Journal of East China Jiaotong University, 2020, 37(1):54-60. DOI: 10.16749/j.cnki.jecjtu.2020.01.008.
doi: 10.16749/j.cnki.jecjtu.2020.01.008 |
|
[2] |
丰晓艳, 张亚伟. 基于交通出行行为的郑焦城际公交客流预测[J]. 山东科学, 2018, 31(1):79-87. DOI: 10.3976/j.issn.1002-4026.2018.01.014.
doi: 10.3976/j.issn.1002-4026.2018.01.014 |
FENG X Y, ZHANG Y W. Passenger flow forecast of Zhengzhou-Jiaozuo intercity bus based on traffic travel behavior[J]. Shandong Science, 2018, 31(1):79-87. DOI: 10.3976/j.issn.1002-4026.2018.01.014.
doi: 10.3976/j.issn.1002-4026.2018.01.014 |
|
[3] |
马姝宇, 邵春福. 基于NL模型的节假日绿色出行行为研究[J]. 山东科学, 2017, 30(1):76-81. DOI: 10.3976/j.issn.1002-4026.2017.01.012.
doi: 10.3976/j.issn.1002-4026.2017.01.012 |
MA S Y, SHAO C F. Study on holiday green travel behavior based on Nested Logit model[J]. Shandong Science, 2017, 30(1):76-81. DOI: 10.3976/j.issn.1002-4026.2017.01.012.
doi: 10.3976/j.issn.1002-4026.2017.01.012 |
|
[4] |
王旭, 吴建军. 基于累积前景理论的突发事件下轨道交通乘客路径选择研究[J]. 山东科学, 2015, 28(2):63-69. DOI: 10.3976/j.issn.1002-4026.2015.02.011.
doi: 10.3976/j.issn.1002-4026.2015.02.011 |
WANG X, WU J J. Cumulative prospect theory based urban railway traffic route choice for travelers in emergent events[J]. Shandong Science, 2015, 28(2):63-69. DOI: 10.3976/j.issn.1002-4026.2015.02.011.
doi: 10.3976/j.issn.1002-4026.2015.02.011 |
|
[5] |
张荣花, 关宏志, 赵磊, 等. 考虑汽车共享服务的出行方式选择影响因素研究[J]. 交通运输研究, 2020, 6(3):48-54. DOI: 10.16503/j.cnki.2095-9931.2020.03.006.
doi: 10.16503/j.cnki.2095-9931.2020.03.006 |
ZHANG R H, GUAN H Z, ZHAO L, et al. Influence factors of travel mode choice considering car sharing[J]. Transport Research, 2020, 6(3):48-54. DOI: 10.16503/j.cnki.2095-9931.2020.03.006.
doi: 10.16503/j.cnki.2095-9931.2020.03.006 |
|
[6] |
朱顺应, 陈秋成, 肖文彬, 等. 低碳补贴下的武汉市居民出行方式选择边际效应[J]. 安全与环境学报, 2020, 20(3):1118-1125. DOI: 10.13637/j.issn.1009-6094.2019.0910.
doi: 10.13637/j.issn.1009-6094.2019.0910 |
ZHU S Y, CHEN Q C, XIAO W B, et al. Marginal effect of Wuhan residents 'travel mode under low carbon subsidy scenario[J]. Journal of Safety and Environment, 2020, 20(3):1118-1125. DOI: 10.13637/j.issn.1009-6094.2019.0910.
doi: 10.13637/j.issn.1009-6094.2019.0910 |
|
[7] | 何晓平. 电力汽车共享条件下城市交通出行方式选择的演化博弈分析[D]. 兰州: 兰州交通大学, 2020. |
HE X P. Evolutionary game analysis of urban travel mode choices under electric vehicle sharing[D]. Lanzhou: Lanzhou Jiatong University, 2020. | |
[8] |
李曼. 单车共享下城市居民出行方式选择行为模型分析:以湛江市为例[J]. 黑龙江交通科技, 2020, 43(8):212-214. DOI: 10.16402/j.cnki.issn1008-3383.2020.08.122.
doi: 10.16402/j.cnki.issn1008-3383.2020.08.122 |
LI M. Model analysis of urban residents' travel mode choice behavior under bicycle sharing: taking Zhanjiang City as an example[J]. Communications Science and Technology Heilongjiang, 2020, 43(8):212-214. DOI: 10.16402/j.cnki.issn1008-3383.2020.08.122.
doi: 10.16402/j.cnki.issn1008-3383.2020.08.122 |
|
[9] |
CECCATO R, CHICCO A, DIANA M. Evaluating car-sharing switching rates from traditional transport means through logit models and Random Forest classifiers[J]. Transportation Planning and Technology, 2021, 44(2):160-175. DOI: 10.1080/03081060.2020.1868084.
doi: 10.1080/03081060.2020.1868084 |
[10] |
PAPU CARRONE A, HOENING V M, JENSEN A F, et al. Understanding car sharing preferences and mode substitution patterns: A stated preference experiment[J]. Transport Policy, 2020, 98:139-147. DOI: 10.1016/j.tranpol.2020.03.010.
doi: 10.1016/j.tranpol.2020.03.010 |
[11] |
POLITIS I, FYROGENIS I, PAPADOPOULOS E, et al. Shifting to shared wheels: Factors affecting dockless bike-sharing choice for short and long trips[J]. Sustainability, 2020, 12(19):8205. DOI: 10.3390/su12198205.
doi: 10.3390/su12198205 |
[12] | 奴尔加马力·安尼瓦, 王令飞, 艾力·斯木吐拉. 基于Logistic模型的定制公交出行选择影响因素研究:以乌鲁木齐市为例[J]. 公路与汽运, 2019(6):23-25. |
NUERJIAMALI·ANNIWA, WANG L F, AILI·SIMUTULA. Research on influencing factors of custom bus trip choice based on logistic model: taking Urumqi City as an example[J]. Highways & Automotive Applications, 2019(6):23-25. | |
[13] | 郭啸, 邓勇, 张婧. 空铁复合网络中旅客组合出行方式选择行为的模型研究[J]. 湖南师范大学自然科学学报, 2019, 42(6):77-85. |
GUO X, DENG Y, ZHANG J. Study on combined travel modes' choice model in a compound network of air and high-speed railway[J]. Journal of Natural Science of Hunan Normal University, 2019, 42(6):77-85. | |
[14] |
刘建荣, 郝小妮. 基于随机系数Logit模型的市内出行方式选择行为研究[J]. 交通运输系统工程与信息, 2019, 19(5):108-113. DOI: 10.16097/j.cnki.1009-6744.2019.05.015.
doi: 10.16097/j.cnki.1009-6744.2019.05.015 |
LIU J R, HAO X N. Travel mode choice in City based on random parameters Logit model[J]. Journal of Transportation Systems Engineering and Information Technology, 2019, 19(5):108-113. DOI: 10.16097/j.cnki.1009-6744.2019.05.015.
doi: 10.16097/j.cnki.1009-6744.2019.05.015 |
|
[15] | 曾思萌, 叶茂, 刘英舜, 等. 共享单车引入后通勤者出行方式选择影响因素建模[J]. 交通信息与安全, 2019, 37(1):104-112. |
ZENG S M, YE M, LIU Y S, et al. A model of influencing factors of travel mode selection for commuters with bike-sharing[J]. Journal of Transport Information and Safety, 2019, 37(1):104-112. | |
[16] |
WANG K, YE X, PENDYALA R M, et al. On the development of a semi-nonparametric generalized multinomial logit model for travel-related choices[J]. PLoS One, 2017, 12(10):e0186689. DOI: 10.1371/journal.pone.0186689.
doi: 10.1371/journal.pone.0186689 |
[17] |
王志勇, 叶祥松, 李飞星. 农业企业区位嵌入条件logit模型分析[J]. 统计与决策, 2018, 34(12):103-106. DOI: 10.13546/j.cnki.tjyjc.2018.12.025.
doi: 10.13546/j.cnki.tjyjc.2018.12.025 |
WANG Z Y, YE X S, LI F X. Analysis on Logit model of location embedding condition of agricultural enterprise[J]. Statistics & Decision, 2018, 34(12):103-106. DOI: 10.13546/j.cnki.tjyjc.2018.12.025.
doi: 10.13546/j.cnki.tjyjc.2018.12.025 |
|
[18] | 乐意. 基于混合选择模型的出行方式选择行为研究[C]// 中国城市规划学会城市交通规划学术委员会.品质交通与协同共治:2019年中国城市交通规划年会论文集.成都:中国城市规划设计研究院城市交通专业研究院, 2019: 14. |
LE Y. Research on travel mode selection behavior based on mixed selection model[C]// Academic committce of urban traffic planning of China urban planning society.Quality transportation and collaborative governance:Proceedings of 2019 China annual conference on urban traffic planning.Chengdu:Institute of urban traffic.China urban planning and design institute. 2019: 14. | |
[19] |
GOKASAR I, GUNAY G. Modeling and implications of airport ground egress mode choice[J]. KSCE Journal of Civil Engineering, 2021, 25(2):669-679. DOI: 10.1007/s12205-020-5523-8.
doi: 10.1007/s12205-020-5523-8 |
[20] |
FERREIRA G E, HOWARD K, ZADRO J R, et al. People considering exercise to prevent low back pain recurrence prefer exercise programs that differ from programs known to be effective: a discrete choice experiment[J]. Journal of Physiotherapy, 2020, 66(4):249-255. DOI: 10.1016/j.jphys.2020.09.011.
doi: 10.1016/j.jphys.2020.09.011 |
[21] |
LEE B J. An introduction to mixed logit model[J]. Journal of Research Methodology, 2017, 2(1):79-104. DOI: 10.21487/jrm.2017.05.2.1.79.
doi: 10.21487/jrm.2017.05.2.1.79 |
[22] |
MA S H, YU Z L, LIU C Q. Nested logit joint model of travel mode and travel time choice for urban commuting trips in Xi'an, China[J]. Journal of Urban Planning and Development, 2020, 146(2):04020020. DOI: 10.1061/(asce)up.1943-5444.0000574.
doi: 10.1061/(asce)up.1943-5444.0000574 |
[23] | 范琪, 王炜, 杨洋, 等. 家庭收入差异对出行方式选择的影响分析[J]. 交通信息与安全, 2019, 37(6):111-120. |
FAN Q, WANG W, YANG Y, et al. Effects of household income differences on travel mode choice[J]. Journal of Transport Information and Safety, 2019, 37(6):111-120. | |
[24] |
骆晨, 李想, 钟林峰, 等. 基于家庭属性差异的大学生出行方式选择行为研究[J]. 交通运输系统工程与信息, 2020, 20(3):227-232. DOI: 10.16097/j.cnki.1009-6744.2020.03.034.
doi: 10.16097/j.cnki.1009-6744.2020.03.034 |
LUO C, LI X, ZHONG L F, et al. Choice of travel mode for college students based on family attributes[J]. Journal of Transportation Systems Engineering and Information Technology, 2020, 20(3):227-232. DOI: 10.16097/j.cnki.1009-6744.2020.03.034.
doi: 10.16097/j.cnki.1009-6744.2020.03.034 |
|
[25] |
梁文博, 刘晨, 王艳玲. 基于Logistic回归模型的居民出行方式影响因素分析[J]. 生产力研究, 2020(1):125-127. DOI: 10.19374/j.cnki.14-1145/f.2020.01.030.
doi: 10.19374/j.cnki.14-1145/f.2020.01.030 |
LIANG W B, LIU C, WANG Y L. Analysis of factors influencing residents' travel modes based on Logistic regression model[J]. Productivity Research, 2020(1):125-127. DOI: 10.19374/j.cnki.14-1145/f.2020.01.030.
doi: 10.19374/j.cnki.14-1145/f.2020.01.030 |
|
[26] |
LI W B, KAMARGIANNI M. Steering short-term demand for car-sharing:a mode choice and policy impact analysis by trip distance[J]. Transportation, 2020, 47(5):2233-2265. DOI: 10.1007/s11116-019-10010-0.
doi: 10.1007/s11116-019-10010-0 |
[27] |
AZIMI G, RAHIMI A, ASGARI H, et al. Role of attitudes in transit and auto users' mode choice of ridesourcing[J]. Transportation Research Record: Journal of the Transportation Research Board, 2020, 2674(11):1-16. DOI: 10.1177/0361198120941841.
doi: 10.1177/0361198120941841 |
[1] | LUO Feng, ZUO Yu-fan, ZHANG Wen-bo, LIU Zhi-yuan, JIA Ruo. Residents' travel mode choice analysis considering city exchange center [J]. Shandong Science, 2022, 35(4): 98-106. |
[2] | YE Qian-wen, CHEN Xu-mei, BAI Xi-hong. Research on the impact of Beijing public transportation fare on travel modal choice based on NL model [J]. Shandong Science, 2019, 32(2): 79-88. |
|