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Keywords = passenger train seat

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19 pages, 4558 KB  
Article
Study on the Effect of Seatback Recline Angle and Connection Stiffness on Occupant Injury in High-Speed Train Collisions
by Fei Yu, Xu Sang, Honglei Tian, Longxi Liu and Wenbin Wang
Appl. Sci. 2025, 15(19), 10852; https://doi.org/10.3390/app151910852 - 9 Oct 2025
Cited by 1 | Viewed by 1514
Abstract
This study investigates occupant–seat interaction dynamics in high-speed train frontal collisions. A finite element model of a second-class double seat was developed and simulated using LS-DYNA R12.1 software with a Hybrid III dummy, applying trapezoidal and triangular acceleration pulses per European and American [...] Read more.
This study investigates occupant–seat interaction dynamics in high-speed train frontal collisions. A finite element model of a second-class double seat was developed and simulated using LS-DYNA R12.1 software with a Hybrid III dummy, applying trapezoidal and triangular acceleration pulses per European and American standards. The research analyzes the impact of front-row seatback recline angles (0°, 10°, 20°) and seatback-to-base connection stiffness (1000 N/mm to 0 N/mm) on head, neck, chest, and leg injury severity. Results show that a 10° recline provides optimal protection under fixed stiffness. When optimizing both parameters, a 0° recline with approximately 300 N/mm stiffness minimizes composite injury metrics (HIC15, Nij, CTI). However, reducing stiffness at non-zero recline angles increases neck injury risk due to tray table displacement toward the cervical region. These findings emphasize the critical importance of integrated seat design optimization for rail passenger passive safety and highlight the need to mitigate tray table hazards. Full article
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17 pages, 655 KB  
Review
Passenger Service Time at the Platform–Train Interface: A Review of Variability, Design Factors, and Crowd Management Implications Based on Laboratory Experiments
by Sebastian Seriani, Vicente Aprigliano, Vinicius Minatogawa, Alvaro Peña, Ariel Lopez and Felipe Gonzalez
Appl. Sci. 2025, 15(15), 8256; https://doi.org/10.3390/app15158256 - 24 Jul 2025
Cited by 2 | Viewed by 2371
Abstract
This paper reviews the variability of passenger service time (PST) at the platform–train interface (PTI), a critical performance indicator in metro systems shaped by the infrastructure design, affecting passenger behavior and accessibility. Despite its operational importance, PST remains underexplored in relation to crowd [...] Read more.
This paper reviews the variability of passenger service time (PST) at the platform–train interface (PTI), a critical performance indicator in metro systems shaped by the infrastructure design, affecting passenger behavior and accessibility. Despite its operational importance, PST remains underexplored in relation to crowd management strategies. This review synthesizes findings from empirical and experimental research to clarify the main factors influencing PST and their implications for platform-level interventions. Key contributors to PST variability include door width, gap dimensions, crowd density, and user characteristics such as mobility impairments. Design elements—such as platform edge doors, yellow safety lines, and vertical handrails—affect flow efficiency and spatial dynamics during boarding and alighting. Advanced tracking and simulation tools (e.g., PeTrack and YOLO-based systems) are identified as essential for evaluating pedestrian behavior and supporting Level of Service (LOS) analysis. To complement traditional LOS metrics, the paper introduces Level of Interaction (LOI) and a multidimensional LOS framework that captures spatial conflicts and user interaction zones. Control strategies such as platform signage, seating arrangements, and visual cues are also reviewed, with experimental evidence showing that targeted design interventions can reduce PST by up to 35%. The review highlights a persistent gap between academic knowledge and practical implementation. It calls for greater integration of empirical evidence into policy, infrastructure standards, and operational contracts. Ultimately, it advocates for human-centered, data-informed approaches to PTI planning that enhance efficiency, inclusivity, and resilience in high-demand transit environments. Full article
(This article belongs to the Special Issue Research Advances in Rail Transport Infrastructure)
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21 pages, 3081 KB  
Article
Accessibility Dilemma in Metro Stations: An Experimental Pilot Study Based on Passengers’ Emotional Experiences
by Daniel Vega, Sebastian Seriani, Álvaro Peña, Vinicius Minatogawa, Vicente Aprigliano, Bernardo Arredondo, Iván Bastías, Fernando Rodriguez-Rodriguez, Cristian Muñoz and Rodrigo Soto
Sustainability 2025, 17(7), 3064; https://doi.org/10.3390/su17073064 - 30 Mar 2025
Cited by 5 | Viewed by 3151
Abstract
This study explores the passengers’ accessibility dilemma in Valparaíso, Chile, through field observations and laboratory experiments. The aim is to investigate the accessibility in metro stations based on the users’ emotional experience. Perceptions were reported through the emotions of passengers according to a [...] Read more.
This study explores the passengers’ accessibility dilemma in Valparaíso, Chile, through field observations and laboratory experiments. The aim is to investigate the accessibility in metro stations based on the users’ emotional experience. Perceptions were reported through the emotions of passengers according to a circumplex psychological model and an accessibility ranking. Passengers reported their emotions (e.g., stress, sadness, relaxation, and happiness) during different trip moments. Results indicate that rearranging train seats parallel to movement creates a more spacious aisle, enhancing mobility and evoking positive emotions such as happiness. However, an unexpected rise in sadness suggests that social dynamics may influence emotional responses, warranting further investigation. Overcrowding increases stress and sadness, emphasizing the need for capacity management to improve passengers’ emotional experiences. Field observations reveal that early journey stages, such as walking to the station or waiting on the platform, are associated with unpleasant experiences due to poor infrastructure and accessibility barriers. In contrast, train rides foster more positive emotions, credited to better accessibility onboard. Passenger dissatisfaction arises from issues such as elevator malfunctions, inconsistent train schedules, and inadequate station accessibility. This study could help to understand passenger behavior when the accessibility conditions of metro stations and their surroundings are changed. Further studies will expand the concept of emotions by considering social and psychological factors and explore different types of stations and their surroundings considering a larger sample size in laboratory experiments and field studies. Full article
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31 pages, 5462 KB  
Article
Optimization of Line Planning by Integrating Ticket Pricing and Seat Allocation Decisions for High-Speed Railway
by Xin Shi, Wenliang Zhou and Xiang Li
Mathematics 2025, 13(7), 1073; https://doi.org/10.3390/math13071073 - 25 Mar 2025
Cited by 3 | Viewed by 1617
Abstract
In the transportation organization optimization of high-speed railway (HSR), optimizations such as line planning, ticket pricing, and seat allocation are generally studied separately. However, in reality, when passengers choose trains, they need to consider multiple factors such as train routes, stop plans, seat [...] Read more.
In the transportation organization optimization of high-speed railway (HSR), optimizations such as line planning, ticket pricing, and seat allocation are generally studied separately. However, in reality, when passengers choose trains, they need to consider multiple factors such as train routes, stop plans, seat prices, seat availability, and departure times. Therefore, there is an urgent need for an integrated optimization method to simultaneously make decisions regarding these multiple factors. This study constructs a nonlinear optimization model of line planning integrating differentiated pricing and seat allocation decisions for HSR under elastic demand. To efficiently solve the model, an improved heuristic algorithm based on the simulated annealing framework combined with a linear passenger flow allocation method is proposed. Finally, case analysis proves that the improved algorithm can effectively solve the model under the input conditions of an actual Y-shaped HSR network composed of 13 stations, with a potential for a 106.54% improvement from the initial solution to the final solution. The uniqueness of our study lies in the joint optimization of three critical HSR operations, which has not been comprehensively explored in prior studies and is of great significance for improving the level of HSR train operations and passenger services. Full article
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19 pages, 6439 KB  
Article
The Potential Carrying of Bicycles Inside the Train Carriage: An Experimental Pilot Study Based on Valparaíso Metro, Chile
by Sebastian Seriani, Vicente Aprigliano, Álvaro Peña, Milenka Rubio, Bernardo Arredondo, Emilio Bustos, Iván Bastías, Felipe Gonzalez and Taku Fujiyama
Sustainability 2024, 16(24), 10870; https://doi.org/10.3390/su162410870 - 11 Dec 2024
Cited by 1 | Viewed by 2094
Abstract
This study analyses the potential carrying of bicycles inside a train carriage. To this end, an experimental methodology based on observation and experimentation is implemented. The survey is conducted on the metro system in Valparaíso, Chile, highlighting the importance of intermodality between bicycles [...] Read more.
This study analyses the potential carrying of bicycles inside a train carriage. To this end, an experimental methodology based on observation and experimentation is implemented. The survey is conducted on the metro system in Valparaíso, Chile, highlighting the importance of intermodality between bicycles and trains. It identifies that the current capacity of the carriages is not adequate to ensure safety and efficiency during boarding and alighting. As a result of the survey, a solution is tested to reduce the number of seats in the carriage and create a designated special waiting area for cyclists. This test is conducted experimentally in a laboratory, using a full-scale model of a metro carriage and its corresponding platform. The experiments show that the designated special waiting area for bicycles reduces boarding time and results in a better distribution of passengers inside the carriage, offering a solution that improves both safety and efficiency. This study could contribute to the development of incentive policies for intermodality, which is a key aspect in achieving sustainability in railway transportation systems. Future research will aim to expand this study by including other carriage configurations and a wider variation of demand levels. Full article
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23 pages, 5982 KB  
Article
Static Factors in Sitting Comfort: Seat Foam Properties, Temperature, and Contact Pressure
by P. Silva, D. Ribeiro, O. Postolache, E. Seabra and J. Mendes
Appl. Sci. 2024, 14(17), 7753; https://doi.org/10.3390/app14177753 - 2 Sep 2024
Cited by 6 | Viewed by 5878
Abstract
The seat characteristics have high relevance in overall comfort on any transportation means. In particular, the foam’s mechanical properties, interface pressure, and contact temperature play an important role in low- or no-vibration situations regarding static comfort. The present work presents the complete protocol [...] Read more.
The seat characteristics have high relevance in overall comfort on any transportation means. In particular, the foam’s mechanical properties, interface pressure, and contact temperature play an important role in low- or no-vibration situations regarding static comfort. The present work presents the complete protocol for a static evaluation of different foams and seat covers to assess railway seats. Based on the evaluation of the foam’s mechanical properties and interface pressure profiles, it was concluded that higher-density foam (80 kg/m3) is the most favorable. Regarding the foam cover, a thermographic assessment demonstrated that the fabric cover that induces lower temperatures at passenger interface contact promotes higher comfort levels. It should be highlighted that experiments were conducted on real train seat cushions and environments using a thermographic camera and pressure map sensor. Full article
(This article belongs to the Section Acoustics and Vibrations)
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30 pages, 29156 KB  
Article
Evaluation and Decision of a Seat Color Design Scheme for a High-Speed Train Based on the Practical Color Coordinate System and Hybrid Kansei Engineering
by Xuan-Hui Xie, Yunpeng Xu, Shilin Guo, Hongyang Zhu and Huiran Yan
Systems 2024, 12(8), 316; https://doi.org/10.3390/systems12080316 - 22 Aug 2024
Cited by 11 | Viewed by 3850
Abstract
Color is an important visual element of high-speed train seats, which has a significant impact on passenger travel experience. In order to solve the problem that color design relies on the subjective experience of designers, this study aims to establish an effective evaluation [...] Read more.
Color is an important visual element of high-speed train seats, which has a significant impact on passenger travel experience. In order to solve the problem that color design relies on the subjective experience of designers, this study aims to establish an effective evaluation and decision method for seat color design in a high-speed train based on the Practical Color Coordinate System (PCCS) and hybrid Kansei Engineering. Firstly, we created a series of design schemes based on the typical colors in the PCCS. Secondly, a new hybrid Kansei Engineering system was constructed; in this system, forward Kansei Engineering was constructed with Factor Analysis (FA) and Multidimensional Scaling Analysis (MDS) to analyze the cognitive feature of color sample. The Analytic Hierarchy Process (AHP) and Independent Weight Coefficient Method (IW) were used to calculate comprehensive weights, and backward Kansei Engineering was constructed with the TOPSIS to optimize and evaluate color design schemes. Finally, the design and evaluation methods were illustrated with a case. The results showed that (1) the three main influencing factors of seat color design for high-speed trains included function, aesthetics and experience, and comfort and harmony; two other potential factors included calmness and relaxation. (2) In the PCCS, warm colors have a better esthetic, while cool colors are calmer. Tones with medium brightness and saturation such as It- and Sf-tones are the optimal choice, while the V-tone is not suitable for seat color design. The effectiveness of this method is verified by a case study, which provides a reference for seat color design evaluation and optimization of high-speed trains. Full article
(This article belongs to the Special Issue Value Assessment of Product Service System Design)
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15 pages, 3090 KB  
Article
The Effect of Seat Layout on the Interaction of Passengers Inside the Train Carriage: An Experimental Approach for Urban Services
by Sebastian Seriani, Vicente Aprigliano, Shirley Gonzalez, Gabriela Baeza, Ariel Lopez and Taku Fujiyama
Sustainability 2024, 16(3), 998; https://doi.org/10.3390/su16030998 - 24 Jan 2024
Cited by 10 | Viewed by 4275
Abstract
The platform–train interface (PTI) is one of the most complex spaces in metro stations. At the PTI, the interaction of passengers boarding and alighting reaches high density, affecting the boarding and alighting time, among other variables related to safety and efficiency. Developing research [...] Read more.
The platform–train interface (PTI) is one of the most complex spaces in metro stations. At the PTI, the interaction of passengers boarding and alighting reaches high density, affecting the boarding and alighting time, among other variables related to safety and efficiency. Developing research was performed to study the effect of seat layout on the interaction of passengers by means of experiments in a controlled environment. The laboratory facility included a mock-up of a train carriage and its adjacent platform. The train was representative of urban services in the Valparaiso Metro (Chile). The results showed that seat layout changed the patterns of interaction of passengers inside the train carriage. If seats were parallel to the movement of the train, then wider corridors inside the train were generated, and therefore, the number of passengers using this space could increase up to three times. However, in urban services, passengers were located closer to the train doors to be prepared for alighting, and therefore, the passenger numbers at the central hall remained the same with the seat layout. In addition, most passengers always used seats even if they were in a different position due to the aforementioned reasons. Further research will include passengers with reduced mobility and remaining inside the train while others are alighting to identify the effect of the space used on the interaction of passengers inside the train. Full article
(This article belongs to the Special Issue Traffic Safety and Sustainable Crowd Management)
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30 pages, 2725 KB  
Review
Railways Passengers Comfort Evaluation through Motion Parameters: A Systematic Review
by Patricia Silva, Diogo Ribeiro, Joaquim Mendes, Eurico Augusto Rodrigues Seabra and Octavian Postolache
Machines 2023, 11(4), 465; https://doi.org/10.3390/machines11040465 - 8 Apr 2023
Cited by 7 | Viewed by 5881
Abstract
Railways are one of the most widely used mass transportation systems. Its superior transportation capacity, low environmental impact, high safety, and comfort have been leading to a continuous increase in passengers. To keep this trend going, it is crucial to improve the railways’ [...] Read more.
Railways are one of the most widely used mass transportation systems. Its superior transportation capacity, low environmental impact, high safety, and comfort have been leading to a continuous increase in passengers. To keep this trend going, it is crucial to improve the railways’ attractiveness and comfort levels. A rail journey’s comfort performance is rather complex, involving the analysis of multiple factors. Those raised by the vehicle motion and seat performance are the focus of vehicle designers’ concerns. Therefore, only a combination of static and dynamic comfort methodologies can accurately characterize passengers’ comfort. This work aimed to perform a systematic review concerning the comfort evaluation of train passengers. The bibliographic search yielded 62 studies on static and dynamic comfort evaluation methods. Results show a lack of experiments conducted on real rail environments, leading to weak conclusions regarding the real in-service conditions that train users face. Moreover, an investigation gap concerning the simultaneous application of both static and dynamic methodologies was observed. Therefore, more investigations are needed to evaluate and increase passengers’ comfort and promote rail usage as a daily transportation system. Full article
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17 pages, 2362 KB  
Article
Optimization of Differential Pricing and Seat Allocation in High-Speed Railways for Multi-Class Demands: A Chinese Case Study
by Wenliang Zhou, Ziyu Zou, Naijie Chai and Guangming Xu
Mathematics 2023, 11(6), 1412; https://doi.org/10.3390/math11061412 - 15 Mar 2023
Cited by 7 | Viewed by 3622
Abstract
There are many options for passengers choosing to travel by train. In order to maximize price revenue requests, railway companies must consider the differences between passenger types in the process of formulating ticket strategies. This study firstly subdivides passenger demand according to the [...] Read more.
There are many options for passengers choosing to travel by train. In order to maximize price revenue requests, railway companies must consider the differences between passenger types in the process of formulating ticket strategies. This study firstly subdivides passenger demand according to the latent class model based on Stated Preference (SP) and Revealed Preference (RP) survey data, then the passenger’s preference for train service attributes is identified. Based on the prospect theory, logit model and passenger flow transfer model, the final passenger flow assignment result is obtained. A differential pricing and seat allocation model aiming at maximizing price revenue is established, and a simulated annealing (SA) algorithm is designed to solve it. The results of the case show that the proposed model can increase revenue by 3.52% and by 1.02% compared with the result under single fares and without demand division. Full article
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24 pages, 11897 KB  
Article
Modal Identification of Train Passenger Seats Based on Dynamic Tests and Output-Only Techniques
by Patricia Silva, Diogo Ribeiro, Joaquim Mendes and Eurico Seabra
Appl. Sci. 2023, 13(4), 2277; https://doi.org/10.3390/app13042277 - 10 Feb 2023
Cited by 5 | Viewed by 3711
Abstract
Railways are one of the most efficient and widely used mass transportation systems for mid-range distances, also being pointed out as the best strategy to reach European Union decarbonisation goals. However, to increase railways attractiveness, it is necessary to improve the quality of [...] Read more.
Railways are one of the most efficient and widely used mass transportation systems for mid-range distances, also being pointed out as the best strategy to reach European Union decarbonisation goals. However, to increase railways attractiveness, it is necessary to improve the quality of the ride, namely its comfort, by decreasing the vibration at the passenger level. This article describes the experimental vibration modal identification of train seats based on a dedicated set of dynamic tests performed on Alfa Pendular and Intercity trains. This work uses two output-only modal identification techniques: the transmissibility functions and the Enhanced Frequency Domain Decomposition (EFDD) method. The last method allows us to clearly distinguish the seat structural movements, particularly the ones related to torsion and bending of the seat frame, from the local vertical foam vibrations. The natural frequencies and mode shapes are validated by matching the results derived from the transmissibility functions and EFDD method. The identified modal parameters are particularly relevant to characterise the vibration transmissibility provided by the foams (local transmissibility) and the vibration transmissibility derived from the metallic seat frame (global transmissibility). Full article
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19 pages, 5339 KB  
Article
Simulative Study of an Innovative On-Demand Transport System Using a Realistic German Urban Scenario
by Shen Wang, Thomas Weber and Dieter Schramm
Future Transp. 2023, 3(1), 38-56; https://doi.org/10.3390/futuretransp3010003 - 30 Dec 2022
Cited by 2 | Viewed by 3439
Abstract
Trams are a meaningful means of public transport in urban traffic. However, trams have some well-known disadvantages. These include, for example, possibly long distances to the stop, long waiting times, and lack of privacy, among others. The innovative mobility concept “FLAIT-Train” offers solutions [...] Read more.
Trams are a meaningful means of public transport in urban traffic. However, trams have some well-known disadvantages. These include, for example, possibly long distances to the stop, long waiting times, and lack of privacy, among others. The innovative mobility concept “FLAIT-Train” offers solutions to the problems mentioned. The FLAIT-train operates on ordinary roads and is intended to offer DOOR-2-DOOR transport. In the first application phase, the FLAIT-train runs on exclusive lanes but in the future can mix with other traffic. They are designed as vehicles with 2 seats and 1 m width. The vehicle technology of FLAIT-trains is similar/identical to battery-electric autonomous vehicles. This paper uses traffic simulations to investigate whether FLAIT trains are a suitable alternative to conventional trams, taking simulated/theoretical transport capacities in passenger-kilometers per day into account. Using the software SUMO (“Simulation of Urban Mobility”), a realistic traffic scenario is generated. In this scenario, the operation of the FLAIT-Trains and the trams are simulated under the same conditions and based on statistical data. Based on the simulation results, the performances of the FLAIT-Trains and the trams are compared. Full article
(This article belongs to the Topic Transportation in Sustainable Energy Systems)
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19 pages, 22864 KB  
Article
Comfort Assessment and Optimization Based on FE Simulation for High-Speed Train Seats: Comparison with Different Design Parameters
by Shufang Huang, Dayan Sun, Liang Zhang, Jiahao Zhou and Zhihui Wang
Sustainability 2022, 14(22), 15185; https://doi.org/10.3390/su142215185 - 16 Nov 2022
Cited by 8 | Viewed by 3960
Abstract
Nowadays, riding comfort is more significant than before for evaluating the quality of high–speed railways and sitting is the most common posture for its passengers. This study aimed to analyze and optimize the pressure distribution and sitting comfort of second–class seats with different [...] Read more.
Nowadays, riding comfort is more significant than before for evaluating the quality of high–speed railways and sitting is the most common posture for its passengers. This study aimed to analyze and optimize the pressure distribution and sitting comfort of second–class seats with different design parameters. Firstly, 21 pressure features were calculated after the field sitting tests conducted on a CRH Train. The subjective comfort was quantified as a linear combination of 6 pressure features in 21, which were selected using stepwise regression analysis (R2 = 0.684). A seat-human finite element model was established using THUMS for a human body and MAT_57 for the seat foam. Finally, this study analyzed the effects of foam and seat angles on interface pressure distribution and comfort ratings. The set of design parameters with the highest comfort was selected from 12 free combinations. The results show that the seat foam with less stiffness may not improve sitting comfort due to the asymmetry of the seat frame. Moreover, appropriately increasing the stiffness of the cushion and backrest will not lead to a decrease in subjective feelings and the pressure distribution becomes more reasonable as the inclination angle increases within 10 degrees. The final optimization increases the computational comfort of the seat-human model by 6.5 in a −50 to 50 scale. Full article
(This article belongs to the Topic Built Environment and Human Comfort)
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19 pages, 1262 KB  
Article
Analyzing the Effect of Crowds on Passenger Behavior Inside Urban Trains through Laboratory Experiments—A Pilot Study
by Sebastian Seriani, Jose Miguel Barriga, Alvaro Peña, Alejandra Valencia, Vicente Aprigliano, Lorena Jorquera, Hernan Pinto, Matías Valenzuela and Taku Fujiyama
Sustainability 2022, 14(22), 14882; https://doi.org/10.3390/su142214882 - 10 Nov 2022
Cited by 7 | Viewed by 4927
Abstract
The objective is to study the distribution of passengers inside urban trains for different levels of crowding. The study is carried out through the observation of videos made by laboratory experiments in which a mock-up of a carriage represented the boarding and alighting [...] Read more.
The objective is to study the distribution of passengers inside urban trains for different levels of crowding. The study is carried out through the observation of videos made by laboratory experiments in which a mock-up of a carriage represented the boarding and alighting process. The Fruin’s Level of Service (LOS) was adopted, but with a different approach, in which the train is divided into five zones (central hall, central aisle, side aisle, central seats and side seats). The experiments are based on the behavior of passengers in the London Underground; however, this study could be expanded to any conventional rail or LRT system. For the laboratory experiments, it is proposed to build a metro carriage and a corresponding platform section, and the scenarios will include different levels of crowding of passengers boarding and alighting to produce a variation in the density on the platform. According to the crowding level, the results allow obtaining the distribution and movements generated by passengers in the five zones for different instants of time during the process of boarding and alighting. It is observed that passengers are distributed according to safety and efficiency conditions. For example, passengers tried to avoid contact with each other unless it is inevitable. In relation to comfort, the seats of the carriage are always used even if there is a low level of crowding. If the crowding level increases, the boarding and alighting time go up. In addition, passengers will spend one or two seconds more if the “let’s get off before getting on the carriage” behavior is breached. This kind of experiment can be used in further research as a way to test “what-if” scenarios using this new method of discretization of the space inside the train, which cannot be tested in existing stations due to restrictions such as the weather, variability of the train frequency, current design of the trains, among others. New experiments are necessary for future research to include other types of passengers such as people with disabilities or reduced mobility. Full article
(This article belongs to the Special Issue Sustainable Public Transport and Logistics Network Optimization)
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23 pages, 3767 KB  
Article
Joint Optimization of Ticket Pricing and Allocation on High-Speed Railway Based on Dynamic Passenger Demand during Pre-Sale Period: A Case Study of Beijing–Shanghai HSR
by Xiaofeng Yin, Di Liu, Wenyu Rong and Zheng Li
Appl. Sci. 2022, 12(19), 10026; https://doi.org/10.3390/app121910026 - 6 Oct 2022
Cited by 16 | Viewed by 4918
Abstract
Against the background of the gradual deepening of China Railway’s market-oriented reform, and in order to improve the revenue and competitiveness for high-speed railway (HSR) passenger transport, this paper studies the joint optimization problem of the high-speed railway ticket pricing and allocation considering [...] Read more.
Against the background of the gradual deepening of China Railway’s market-oriented reform, and in order to improve the revenue and competitiveness for high-speed railway (HSR) passenger transport, this paper studies the joint optimization problem of the high-speed railway ticket pricing and allocation considering the dynamic demand characteristics of passengers during the pre-sale period. Firstly, we use the compound non-homogeneous Poisson process to describe the passengers’ ticket-purchasing process and use the sparse method to simulate the passengers’ ticket demand during the pre-sale period. Secondly, taking the ticket pricing and allocation as the decision variables and considering the full utilization of the train seat capacity, a stochastic nonlinear-programming mathematical model is established with the goal of maximizing the train revenue. A particle swarm algorithm is designed to solve the model. Finally, this study takes the G19 train running on the Beijing–Shanghai HSR in China as a case study to verify the effectiveness of the model and algorithm. The results show that the joint optimization scheme of ticket pricing and allocation considering dynamic demand yields a revenue of CNY 601,881, which increases the revenue by 1.01% with a small adjustment of the price compared with the fixed ticket price and pre-allocation scheme. This study provides scientific support for the decisions made by railway transportation enterprises, which is conducive to further increasing the potential ticket revenue and promoting sustainable development. Full article
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