1 |
Li Z C, Lam W H, Wong S C. Step tolling in an activity-based bottleneck model [J]. Transportation Research Part B:Methodological, 2017, 101: 306-334.
|
2 |
Long J C, Szeto W Y. Congestion and environmental toll schemes for the morning commute with heterogeneous users and parallel routes [J]. Transportation Research Part B:Methodological, 2019, 129: 305-333.
|
3 |
Tian L J, Sheu J B, Huang H J. The morning commute problem with endogenous shared autonomous vehicle penetration and parking space constraint[J]. Transportation Research Part B: Methodological,2019, 123: 258-278.
|
4 |
Yang H, Wang X L. Managing network mobility with tradable credits[J]. Transportation Research Part B: Methodological, 2011, 45(3): 580-594.
|
5 |
Tian L J, Yang H, Huang H J. Tradable credit schemes for managing bottleneck congestion and modal split with heterogeneous users[J]. Transportation Research Part E: Logistics and Transportation Review, 2013, 54(6): 1-13.
|
6 |
Storch D M, Timme M, Schröder M. Incentive-driven transition to high ride-sharing adoption [J]. Nature Communications, 2021, 12(1): 1-10.
|
7 |
Stokkink P, Geroliminis N. Predictive user-based relocation through incentives in one-way car-sharing systems [J]. Transportation Research Part B: Methodological, 2021, 149: 230-249.
|
8 |
Tafreshian A, Masoud N. A traveler incentive program for promoting community-based ridesharing [J]. Transportation Science, 2022, 56(4): 827-847.
|
9 |
Tian Y, Li Y D, Sun J, et al. Characterizing favored users of incentive-based traffic demand management program [J]. Transport Policy, 2021, 105: 94-102.
|
10 |
Zhang Z, Fujii H, Managi S, et al. How does commuting behavior change due to incentives? An empirical study of the Beijing Subway System[J]. Transportation Research Part F: Traffic Psychology and Behaviour, 2014, 24: 17-26.
|
11 |
Rey D, Dixit V V, Ygnace J L, et al. An endogenous lottery-based incentive mechanism to promote off-peak usage in congested transit systems [J]. Transport Policy, 2016, 46: 46-55.
|
12 |
Zhao C L, Leclercq L. Graphical solution for system optimum dynamic traffic assignment with day-based incentive routing strategies[J].Transportation Research Part B:Methodological, 2018, 117: 87-100.
|
13 |
李梦, 黄海军. 考虑共享出行的用户均衡交通分配模型 [J]. 系统工程理论与实践, 2019, 39(7): 1771-1780.
|
|
Li M, Huang H J. A user equilibrium assignment model with ridesharing[J]. Systems Engineering - Theory & Practice, 2019, 39(7): 1771-1780.
|
14 |
Sun J, Wu J Y, Xiao F, et al. Managing bottleneck congestion with incentives[J]. Transportation Research Part B: Methodological, 2020, 134: 143-166.
|
15 |
Vickrey W S. Congestion theory and transport investment [J]. American Economic Review, 1969, 59(2): 251-260.
|
16 |
Angelopoulos A, Gavalas D, Konstantopoulos C, et al. Incentivized vehicle relocation in vehicle sharing systems [J]. Transportation Research Part C: Emerging Technologies, 2018, 97: 175-193.
|
17 |
Tang Y L, Jiang Y, Yang H, et al. Modeling and optimizing a fare incentive strategy to manage queuing and crowding in mass transit systems[J]. Transportation Research Part B:Methodological,2020,138: 247-267.
|
18 |
Siddiq A, Tang C S, Zhang J W. Partnerships in urban mobility: Incentive mechanisms for improving public transit adoption[J]. Manufacturing & Service Operations Management, 2021, 24(2): 956-971.
|
19 |
Jin H, Liu S X, So K C, et al. Dynamic incentive schemes for managing dockless bike-sharing systems[J]. Transportation Research Part C: Emerging Technologies, 2022, 136: 103527.
|
20 |
肖玲玲, 黄海军. 等补偿行驶信用券计划管理瓶颈拥挤的效率分析 [J]. 系统工程理论与实践, 2016, 36(4): 966-972.
|
|
Xiao L L, Huang H J. Efficiency of the reward-equal-charge travel credit scheme for bottleneck congestion[J]. Systems Engineering - Theory & Practice, 2016, 36(4): 966-972.
|
21 |
田丽君, 陈金凤, 徐淑贤. 双模式系统中组合策略与通行能力协同优化 [J]. 系统工程理论与实践, 2021, 41(9): 2355-2366.
|
|
Tian L J, Chen J F, Xu S X. Collaborative optimization for the combined strategy and capacity allocation in a bi-modal system[J].Systems Engineering- Theory & Practice, 2021, 41(9): 2355-2366.
|
22 |
朱鸿伟, 田丽君, 许岩. 鼓励合乘的可交易电子路票策略管理混合时代出行需求 [J]. 系统工程理论与实践, 2022, 42(5): 1314-1326.
|
|
Zhu H W, Tian L J, Xu Y. The tradable credit scheme that encourages carpooling manage the travel demand in the era of mixed traffic[J]. Systems Engineering - Theory & Practice, 2022, 42(5): 1314-1326.
|
23 |
Huang H J. Fares and tolls in a competitive system with transit and highway: The case with two groups of commuters[J]. Transportation Research Part E: Logistics and Transportation Review, 2000, 36(4): 267-284.
|
24 |
Liu W, Yin Y F, Yang H. Effectiveness of variable speed limits considering commuters’ long-term response[J]. Transportation Research Part B: Methodological, 2015, 81: 498-519.
|
25 |
于璐伊, 郑煜, 张小宁.考虑碳排放成本的差异化停车券管理研究[J].管理科学学报,2020,23(11): 47-58.
|
|
Yu L Y, Zheng Y, Zhang X N. Differentiated parking permits for traffic management considering traffic emission costs[J]. Journal of Management Sciences in China, 2020, 23(11): 47-58.
|
26 |
李妍峰, 高自友, 李军. 基于实时交通信息的城市动态网络车辆路径优化问题 [J]. 系统工程理论与实践, 2013, 33(7): 1813-1819.
|
|
Li Y F, Gao Z Y, Li J. Vehicle routing problem in dynamic urban network with real-time traffic information[J]. Systems Engineering - Theory & Practice, 2013, 33(7): 1813-1819.
|
27 |
四兵锋, 杨小宝, 高亮. 基于系统最优的城市公交专用道网络设计模型及算法 [J]. 中国管理科学, 2016, 24(6): 106-114.
|
|
Si B F, Yang X B, Gao L. System optimization based bus-lane network design model and algorithm[J]. Chinese Journal of Management Science, 2016, 24(6): 106-114.
|