|
[1]
朱宇婷,毛保华,史芮嘉,等.考虑乘客出发时刻的城市轨道列车时刻表优化[J].铁道学报,2016,38(5): 1
10. [ZHU Y T, MAO B H, SHI R J, et al. Optimization of
urban rail timetable with consideration of passenger
departure time choices[J]. Journal of the China Railway
Society, 2016, 38(5): 1-10.]
[2]SHANG P, LI R, LIU Z, et al. Equity-oriented skip
stopping schedule optimization in an oversaturated urban
rail transit network[J]. Transportation Research Part C:
Emerging Technologies, 2018, 89: 321-343.
[3]ZHOU H, QI J, YANG L, et al. Joint optimization of train
timetabling and rolling stock circulation planning: A
novel flexible train composition mode[J]. Transportation
Research Part B: Methodological, 2022, 162: 352-385.
[4]龚聪聪,杨立兴,石俊刚,等.大客流场景下列车时刻表与列车容量分配协同优化研究[J].交通运输系统工程与信息,2024, 24(2): 199-207. [GONG C C, YANG L
X, SHI J G, et al. Collaborative optimization of train
timetabling and train capacity allocation for large
passenger flow scenario[J]. Journal of Transportation
Systems Engineering and Information Technology, 2024,
24(2): 199-207.]
[5]LIU P, YANG L, GAO Z, et al. Energy-efficient train
timetable optimization in the subway system with energy
storage devices[J]. IEEE Transactions on Intelligent
Transportation Systems, 2018, 19(12): 3947-3963.
[6]ZHANG L, HE D, HE Y, et al. Real-time energy saving
optimization method for urban rail transit train timetable
under delay condition[J]. Energy, 2022, 258: 124853.
[7]JIAO X, ZHOU Y, FUJITA H. Two-stage integrated
planning of energy-saving operations of metro trains
using MOJS and GWO algorithms[J]. IEEE Transactions
on Automation Science and Engineering, 2025, 22:
10713-10727.
[8]SUN P, ZHANG C, JIN B, et al. Timetable optimization
for
maximization of regenerative braking energy
utilization in traction network of urban rail transit[J].
Computers & Industrial Engineering, 2023, 183: 109448.
[9]
ZHONG L H, XU GM, LIU W. Energy-efficient and
demand-driven train timetable optimization with a
flexible train composition mode[J]. Energy, 2024, 305:
132183.
[10] SUN X, YAO Z, DONG C, et al. Optimal control
strategies for metro trains to use the regenerative braking
energy: A speed profile adjustment approach[J]. IEEE
Transactions on Intelligent Transportation Systems,
2023, 24(6): 5883-5894.
[11] WU C, LU S, TIAN Z, et al. Energy-efficient train control
with onboard energy storage systems considering
stochastic
regenerative
braking energy[J]. IEEE
Transactions on Transportation Electrification, 2024, 11
(1): 257-274.
[12] SU S, WANG X, CAO Y, et al. An energy-efficient train
operation approach by integrating the metro timetabling
and eco-driving[J]. IEEE Transactions on Intelligent
Transportation Systems, 2019, 21(10): 4252-4268.
[13] MO P L, YANG L X, WANG Y H, et al. A flexible metro
train scheduling approach to minimize energy cost and
passenger waiting time[J]. Computers & Industrial
Engineering, 2019, 132: 412-432.
[14] 姚宇, 朱晓宁,康柳江,等.城市轨道交通列车时刻表与车底运用整合优化模型[J].交通运输系统工程与信息, 2018, 18(1): 200-206. [YAO Y, ZHU X N, KANG L
J, et al. An integrated optimization model of train
timetabling and rolling stock scheduling for an urban
railway line[J]. Journal of Transportation Systems
Engineering and Information Technology, 2018, 18(1):
200-206.]
[15] HE D, YANG Y, CHEN Y, et al. An integrated
optimization model of metro energy consumption based
on regenerative energy and passenger transfer[J].
Applied Energy, 2020, 264: 114770.
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