Methodology and Innovation in the Design of Shared Transportation Systems for Academic Environments
Abstract
1. Introduction
- What are the current mobility habits and challenges faced by students at Politecnica Salesiana University?
- Is it technically and economically feasible to implement a shared transportation (carpooling) system in an academic environment?
- What is the social acceptance and impact of a pilot carpooling system among university students?
- Which mobile development frameworks offer the best performance and scalability for a university-oriented carpooling application?
2. Materials and Methods
2.1. Study Area
2.2. Population
2.3. Sample Size
n: | Sample size; |
N: 4123 | Population size; |
Za: 1.65 | Confidence (90%) Coefficient (1.65); |
P: 0.5 | Probability of occurrence (50%); |
Q: 0.5 | Probability of failure (1 − p); |
D: 0.05 | Precision, maximum admissible error values between 1% and 9%. |
2.4. Stratified Sampling
- ni = Sample size of each stratum;
- Ni = Population of each stratum;
- n = Sample size
- N = Total sample size.
Stratum | Sample Size | Number of Surveys to Apply | Instrument |
---|---|---|---|
Morning | 1571 | 98 | Survey |
Night | 2552 | 158 | Survey |
Total | 4123 | 256 |
2.5. Data Collection
2.5.1. Software and Tools Specification
- ArcGIS Desktop, version 10.8, developed by Esri Inc., Redlands, CA, USA, was used for route mapping and spatial analysis.
- Microsoft Excel 2019, developed by Microsoft Corporation, Redmond, WA, USA, was used for cost estimation and data organization.
- Minitab 21.3, developed by Minitab LLC, State College, PA, USA, was used for statistical analysis, including reliability testing (Cronbach’s alpha).
- The pilot test utilized the web-based platform CarpoolWorld, developed by CarpoolWorld, Toronto, ON, Canada (https://www.carpoolworld.com).
- For mobile application development, the evaluated framework was Flutter, version 3.16.4, developed by Google LLC, Mountain View, CA, USA.
2.5.2. Evaluation of the Technological Needs for the Implementation of the Shared Transportation System
Defining Evaluation Criteria
- Compatibility: This criterion refers to the framework’s ability to develop apps that run efficiently on both iOS and Android from a single codebase. Cross-platform support ensures reaching the widest possible audience without duplicating development and maintenance efforts.
- Performance and efficiency: This criterion evaluates how well the framework can create applications that run quickly and efficiently, optimally using device resources (memory, central process unit (CPU), battery). Good performance is crucial for a smooth and satisfying user experience, especially in applications that require real-time access to data and geolocation.
- Ease of use and learning: This criterion analyzes how easy it is for developers to learn and use the framework. This includes the availability of documentation, learning resources, and the learning curve associated with the framework. A framework that is easy to learn and use can significantly reduce development time and facilitate long-term maintenance.
- Access to native functionalities: This criterion focuses on the framework’s ability to access and use native mobile device functionalities such as Global Positioning System (GPS), camera, push notifications, sensors, and more. Efficient access to these functionalities is essential for ridesharing applications that rely heavily on geolocation and real-time interaction with the user’s device.
- Stability and maintenance: This criterion evaluates how well the framework supports the growth of the application in terms of functionality and user base, and the ease with which the application can be maintained and updated over time. A scalable and maintainable framework ensures that the application can continually evolve and improve without facing significant performance or compatibility issues.
2.5.3. Cost Estimate for the Implementation of the Carpooling System
Identification of Project Modules
- Developing a ride-sharing app requires a modular architecture to deliver a seamless, efficient, and secure user experience. Each module plays a crucial role in providing end-to-end services to users and administrators. The key modules are summarized below.
- User profile: Facilitates the management of personal information, travel history and preferences, improving personalization and data management.
- Trip booking: Allows selection of pickup points, scheduling of trips, choosing vehicles, and obtaining trip details, offering a convenient booking experience.
- Real-time tracking: reports the location of the vehicle on a map in real time and allows communication between user and driver.
- Payment and billing: Supports multiple payment methods, automatically calculates fees, and generates detailed invoices, ensuring transparent transactions.
- Notifications: Keep users informed with real-time notifications about bookings, trip status, and promotions.
- Rating and feedback: Allow users to rate their experience and leave comments to improve the quality of service.
- Administration and support: offer a control panel to manage users, drivers, vehicles and reservations, as well as customer support.
- Analytics and reporting: Provide tools to analyze usage data and generate reports for strategic decisions and efficient management.
- Integrations: Support integration with external application programming interfaces (APIs) and services, facilitating expansion and adaptation to new technological functionalities.
2.5.4. Social Impact of the Implementation of the Transport System Shared
2.5.5. Evaluation of the Convenience of Implementing a Pilot Plan
3. Results
3.1. Technological Needs
Criterion Comparison Summary Between React Native Flutter and Ionic
3.2. Project Cost
3.3. Analysis of the Social Impact of the Implementation of the Shared Transport System
Survey Results
- 1.
- Indicate the university campus in Guayaquil that you attend.A total of 100% of the students surveyed came from the Centenario campus. This sample exclusively reflects the opinion and situation of the students of this campus, ensuring that the results are representative of this specific population.
- 2.
- Indicate your gender.A total of 20% of respondents identified as women and 80% as men. These data highlight the gender distribution among survey participants, providing a clear perspective on the representation of each gender in the study and allowing for a more accurate analysis of the needs and opinions of each group.
- 3.
- Have you heard about car sharing?A total of 50.8% of respondents indicated that they do have knowledge or experience with car sharing, while 49.2% indicated that they do not.
- 4.
- Would you prefer to share a vehicle with men, women, or both?A total of 74.6% of the people surveyed expressed their willingness to share a vehicle with people of both genders, that is, with both men and women. In turn, 20.4% indicated that they would prefer to share a vehicle with men, women, or both. Some indicated that would only share with women, while a minority of 5% chose to share it only with men.
- 5.
- Please indicate your UPS entry times.The data collected in the survey showed that 39.45% of students enter classes at 6:00 P.M., which is the busiest time. On the other hand, 21.09% of students enter at 7:00 A.M., while only 3.91% do so at 2:00 P.M. These results reflect a clear preference for evening schedules, which could have significant implications for the organization and demand of services such as shared transportation, especially during the afternoon rush hours, as evidenced in Figure 2.
- 6.
- Please indicate your current academic level (please indicate the lowest level you are currently studying).The highest student demand are the first, fifth, sixth and seventh, respectively. In contrast, the other semesters show significantly lower participation, with the ninth semester registering one of the lowest percentages, not exceeding 2%.
- 7.
- Please indicate your academic schedule.In the survey, 61.7% of the students surveyed belong to the evening section, while 38.3% belong to the morning section.
- 8.
- Please indicate what range of your cell phone you have. A total of 34.2% of students reported owning a mid-range phone, while 30.8% used a mid-high range phone. In addition, 15.4% owned a high-end phone, 13.8% used a low–mid range device, and 5.8% owned a lowend phone. These data reflect a variety in the types of devices students use, which could influence their access to digital apps and services.
- 9.
- What is the main type of internet access you use?The main method of accessing the Internet used by students at the Salesian Polytechnic University is Wireless Fidelity (Wi-Fi). A total of 60.4% of students connect to the Internet through this network, while 39.6% use mobile data.
- 10.
- During the study week, what type of transportation do you mainly use to get to your destination?During the study week, 31.4% of students use the Metrovía means of transport, 30.3% use private vehicles, 18.4% travel by city bus, 10.3% use taxis, and 9.7% opt for other types of transport.
- 11.
- What would be your main reason for choosing ridesharing over other forms of transportation?Students indicated that 25.2% would be willing to use the shared transport system mainly for cost reasons, 25% would do so for convenience, 18.5% would value the reduction in travel time, 6.4% would favor the environmental impact, and 24.9% for safety reasons.
- 12.
- Would you be willing to participate in a pilot plan for a shared transportation system?Regarding willingness to participate in a pilot plan for a shared transportation system, 82.7% of students said they were willing to participate, while 17.3% indicated they would not be interested.
3.4. Survey with Students to Assess the Convenience of Applying the Pilot Plan
- 1.
- Indicate your genderOf those surveyed, 18.2% said they were female, while 81.8% said they were male.
- 2.
- Have you had experience or knowledge about shared vehicles as sustainable mobility?Of the people surveys, four mentioned that they have had some kind of experience with shared mobility, while seven said they had not, but that they are willing to participate in the pilot plan as a new experience.
- 3.
- Could you tell me in which canton your home is located?Of those surveys, three mentioned that they belong to Durán and Samborondón, while five indicated that they belong to the Guayaquil canton.
3.4.1. Proposed Route for the Shared Transport System
3.4.2. Safety of Journey
3.4.3. Travel Time
3.4.4. Comfort
3.4.5. Costs
Tariff Calculation
Base price | USD 0.75 |
Driver detour for drop users off per km | USD 0.40 |
Cost per kilometer route | USD 0.10 |
Cost—Income Ratio
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Appendix A
Appendix A.1. Social Impact Survey of the Implementation of the Ride-Sharing System
- Indicate the university campus in Guayaquil you attend:
- □
- María Auxiliadora
- □
- Centenario
- Indicate your gender:
- □
- Male
- □
- Female
- Are you aware of shared vehicle services?
- □
- Yes
- □
- No
- Would you prefer to share a vehicle with men, women, or both?
- □
- Men
- □
- Women
- □
- Both
- Please indicate your arrival time at UPS:
- □
- 7:00 A.M.
- □
- 9:00 A.M.
- □
- 11:00 A.M.
- □
- 2:00 P.M.
- □
- 4:00 P.M.
- □
- 6:00 P.M.
- □
- 8:00 P.M.
- Indicate your current academic level (please mark the lowest level you are currently taking):
- □
- 1
- □
- 2
- □
- 3
- □
- 4
- □
- 5
- □
- 6
- □
- 7
- □
- 8
- □
- 9
- □
- 10
- Please indicate your academic shift:
- □
- Morning
- □
- Evening
- Please indicate the range of your mobile phone:
- □
- High-end
- □
- Upper mid-range
- □
- Mid-range
- □
- Lower mid-range
- □
- Low-end
- What is your primary type of internet access?
- □
- Wi-Fi
- □
- Mobile data
- During the school week, what type of transportation do you mainly use to get to your destination?
- □
- Metrovía
- □
- Public bus
- □
- Taxi
- □
- Private vehicle
- □
- Others
- What would be your main reason for choosing shared transportation over other modes?
- □
- Cost
- □
- Comfort
- □
- Reduced travel time
- □
- Environmental impact
- □
- Safety
- Would you be willing to participate in a pilot plan for a shared transportation system?
- □
- Yes
- □
- No
Appendix A.2. The Survey
Appendix A.3. Satisfaction Survey to Pilot Test Participants
- Indicate your level of satisfaction (with 5 being the highest and 1 the lowest):
- □
- 1
- □
- 2
- □
- 3
- □
- 4
- □
- 5
- Indicate the time saved compared to traditional transportation:
- □
- 10–15 min
- □
- 20–25 min
- □
- 30–35 min
- □
- 40–45 min
- □
- More than 1 h
- Based on your experience, what do you think would be the most important improvement for an app designed for university students?
- □
- Ease of use
- □
- Safety
- □
- GPS-based vehicle location tracking
- □
- Display of occupied seats
- □
- Profile of fellow ride sharers
Appendix B. Photographic Records
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Specific Objective | Dimension | Variable | Indicator | Variable Type | Level | Measurement Instrument |
---|---|---|---|---|---|---|
Evaluate the technological needs for implementing the shared transport system. | Technical capabilities of tools | Functionality and features | Level of customization and flexibility that the tools allow to adapt to specific needs | Qualitative | Nominal | Literature review: comparative scale |
Integration and Extensibility | Number of APIs available for integration with other systems | Qualitative | Nominal | |||
Calculate the implementation costs of the shared transport system. | Development and technology costs | Software development | Cost per hour of the development team (measured in USD/hour) | Quantitative | Ordinal | Price evaluation |
System operations | Operating and administrative costs | Quantitative | Ordinal | Price evaluation | ||
Analyze the social impact of implementing the shared transport system. | Social impact of the implementation | Changes in mobility patterns | Changes from regular transport to shared transport | Qualitative | Nominal | Surveys |
Student acceptance | Percentage of respondents supporting the pilot shared transport plan | Qualitative | Likert scale | Surveys | ||
Evaluate the feasibility of implementing a pilot plan. | Feasibility of a pilot plan | Travel time | Reduction in travel time during peak hours | Quantitative | Likert scale | Survey |
Experience with shared mobility | Acceptance of carpooling | Qualitative | Ordinal | Poll |
Framework | Description | Advantages |
---|---|---|
React Native | React Native is an open-source framework developed by Facebook that enables the development of native mobile applications for iOS and Android using JavaScript and React [22]. |
|
Flutter | Flutter is an open-source framework developed by Google that supports mobile, web, and desktop development from a single codebase using the Dart programming language [23]. |
|
Ionic | Ionic is an open-source mobile app development framework that enables hybrid apps using web technologies such as HTML, CSS, and JavaScript [24]. |
|
Criterion | Framework | Score | Explanation |
---|---|---|---|
Compatibility | React Native | 5 | React Native allows development with a single codebase that works well on both iOS and Android, with access to native components to ensure compatibility. |
Flutter | 5 | Flutter also allows development for iOS and Android with a single codebase, compiling to native code for optimal performance on both platforms. | |
Ionic | 4 | Ionic enables cross-platform development using web technologies. However, performance may be slightly lower than React Native and Flutter on older devices. | |
Performance and Efficiency | React Native | 4 | Offers near-native performance, although some optimization may be needed for highly complex applications. |
Flutter | 5 | Provides high performance by compiling directly to native code. Ideal for apps requiring complex animations and graphics. | |
Ionic | 3 | Good performance for basic apps, but may present limitations for demanding apps due to its hybrid nature. | |
Ease of Use and Learning | React Native | 4 | Easy to learn for developers familiar with JavaScript and React. Good documentation and active community. |
Flutter | 4 | Medium to high learning curve due to Dart, but excellent documentation and Google-backed resources. Growing community. | |
Ionic | 5 | Very easy to learn for web developers (HTML, CSS, JavaScript). Good documentation and an active community. | |
Access to Native Features | React Native | 5 | Excellent access to native features via native modules and third-party libraries. |
Flutter | 5 | Full access to native features, with the ability to write native code when needed. | |
Ionic | 4 | Good access via Capacitor, though some features may require additional plugins. | |
Scalability and Maintenance | React Native | 4 | Highly scalable with many tools and best practices available. May need optimization as the app grows. |
Flutter | 5 | Excellent scalability and maintainability. Google provides robust tools for lifecycle management. | |
Ionic | 4 | Scalable, but may face challenges with very large or complex applications due to its hybrid nature. |
Criterion | React Native | Flutter | Ionic |
---|---|---|---|
Compatibility and Cross-Platform Support | 5 | 5 | 4 |
Performance and Efficiency | 4 | 5 | 3 |
Ease of Use and Learning Curve | 4 | 4 | 5 |
Access to Native Functionalities | 5 | 5 | 4 |
Scalability and Maintenance | 4 | 5 | 4 |
Total | 22 | 24 | 20 |
Module | Development | Infrastructure | Total |
---|---|---|---|
User Registration and Authentication | USD 1800 (200 h at USD 9/h) | USD 500 | USD 2300 |
User Profile | USD 1350 (150 h at USD 9/h) | USD 400 | USD 1750 |
Trip Booking | USD 2250 (250 h at USD 9/h) | USD 600 | USD 2850 |
Real-Time Tracking | USD 2700 (300 h at USD 9/h) | USD 750 | USD 3450 |
Payment and Billing | USD 1800 (200 h at USD 9/h) | USD 500 | USD 2300 |
Notifications | USD 900 (100 h at USD 9/h) | USD 450 | USD 1350 |
Ratings and Feedback | USD 900 (100 h at USD 9/h) | USD 250 | USD 1150 |
Admin and Support | USD 1800 (200 h at USD 9/h) | USD 500 | USD 2300 |
Analytics and Reporting | USD 1350 (150 h at USD 9/h) | USD 400 | USD 1750 |
Integrations | USD 1350 (150 h at USD 9/h) | USD 400 | USD 1750 |
Total | USD 16,200 | USD 4750 | USD 20,950 |
Omitted Item | Adj. Total Mean | Adj. Std. Dev. | Item-Total Corr. | Squared Mult. Corr. | Cronbach’s Alpha |
---|---|---|---|---|---|
Have you heard about carpooling? | 12.743 | 3.552 | 0.1616 | 0.1685 | 0.9475 |
Would you prefer to share a vehicle? | 12.560 | 3.212 | 0.6543 | 0.4604 | 0.9221 |
Please indicate your available time slots | 12.673 | 3.244 | 0.7451 | 0.5850 | 0.9133 |
Please indicate your academic schedule | 12.560 | 3.320 | 0.7070 | 0.6103 | 0.9160 |
Please indicate your preferred fare range | 12.704 | 3.220 | 0.8775 | 0.8745 | 0.9050 |
What is your main mode of transportation? | 12.669 | 3.215 | 0.8941 | 0.8716 | 0.9040 |
During the study week, how do you usually travel? | 12.646 | 3.218 | 0.8967 | 0.9222 | 0.9039 |
What would be your main reason for using carpooling? | 12.630 | 3.221 | 0.8963 | 0.9287 | 0.9040 |
Would you be willing to participate in a pilot test? | 12.712 | 3.252 | 0.8040 | 0.7819 | 0.9097 |
Answers | Travel Time | Stop |
---|---|---|
2 | 10–15 min | Guayaquil North Naval Base |
2 | 20–25 min | CC Riocentro |
1 | 30–35 min | The Recreation—Duran |
1 | 40–45 min | Overview—Duran |
Costs of the 6 Passengers of the Pilot Plan | |
Cost per deviation | USD 0.50/km |
Base price | USD 0.75 |
Distance traveled | USD 0.10/km |
Price to Naval Base stop | |
Number of passengers | 2 |
Distance | 7.4 km |
Base price | USD 0.75 |
Total per passenger | USD 1.50 |
Total 2 passengers | USD 3.00 |
Price at the CC Riocentro stop | |
Number of passengers | 2 |
Distance | 11.4 km |
Base price | USD 0.75 |
Detour | USD 0.40 |
Total per passenger | USD 2.30 |
Total 2 passengers | USD 4.60 |
Price at the Duran-El Recreo stop | |
Number of passengers | 1 |
Distance | 16 km |
Base price | USD 0.75 |
Total | USD 2.35 |
Price at the Duran stop—Panorama citadel | |
Number of passengers | 1 |
Distance | 17.1 km |
Detour | USD 0.20 (2 km) |
Base price | USD 0.75 |
Total per passenger | USD 2.86 |
Total profit from the trip | USD 12.81 |
Usage and Maintenance Expenses | |
---|---|
Vehicle fuel consumption | 10.7 L/100 km |
Fuel cost per kilometer | USD 0.08/km |
Vehicle cleaning and care | USD 20/month |
Oil changes | USD 30 approx./month |
A/C maintenance (filters) | USD 10 (filters)/month |
Insurance | USD 0 |
Licenses and permits | USD 0 |
Fines and penalties | USD 0 |
Parking and garage | USD 0 |
Monthly fuel cost | USD 35.20 |
Monthly distance traveled | 440 km |
Total | USD 65.20 |
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© 2025 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
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López-Chila, R.; Dávila-Moreno, M.; Muñoz-Franco, G.; Estrella-Guayasamin, M. Methodology and Innovation in the Design of Shared Transportation Systems for Academic Environments. Sustainability 2025, 17, 6946. https://doi.org/10.3390/su17156946
López-Chila R, Dávila-Moreno M, Muñoz-Franco G, Estrella-Guayasamin M. Methodology and Innovation in the Design of Shared Transportation Systems for Academic Environments. Sustainability. 2025; 17(15):6946. https://doi.org/10.3390/su17156946
Chicago/Turabian StyleLópez-Chila, Roberto, Mario Dávila-Moreno, Gustavo Muñoz-Franco, and Marcelo Estrella-Guayasamin. 2025. "Methodology and Innovation in the Design of Shared Transportation Systems for Academic Environments" Sustainability 17, no. 15: 6946. https://doi.org/10.3390/su17156946
APA StyleLópez-Chila, R., Dávila-Moreno, M., Muñoz-Franco, G., & Estrella-Guayasamin, M. (2025). Methodology and Innovation in the Design of Shared Transportation Systems for Academic Environments. Sustainability, 17(15), 6946. https://doi.org/10.3390/su17156946