4.6 Article

Balanced strategy based on environment and user benefit-oriented carpooling service mode for commuting trips

期刊

TRANSPORTATION
卷 48, 期 3, 页码 1241-1266

出版社

SPRINGER
DOI: 10.1007/s11116-020-10093-0

关键词

Carpooling for commuting; Environment and user benefit; Carbon emission reduction; Time cost and time efficiency; Nonlinear 0-1 programming

资金

  1. State Key Development Program of (for) Basic Research of China (973 Program) [2011CB201200]
  2. Funds for Creative Research Groups of China [50221402]
  3. National Natural Science Foundation of China [71971150, 71501137]
  4. Sichuan Science and Technology Program [2019JDR0167]
  5. Sichuan University [2019hhs-16, skqy201647, 20826041C4201]
  6. Xi'an University of Technology [256081928]
  7. project of Research Center for System Sciences and Enterprise Development [Xq16B05]

向作者/读者索取更多资源

Carpooling not only saves money and provides convenience, but also brings environmental benefits to society. By developing an environment and user benefit-oriented carpooling service model, conflicts related to carpooling match rates and environmental protection can be addressed effectively.
Besides saving money and providing convenience, carpooling can result in environmental benefits to society; therefore, it is important to promote and improve daily carpooling services. However, some conflicts related to carpooling match rates and environmental protection have been influencing user satisfaction. To broaden the carpooling service scope and improve service flexibility, an environment and user benefit-oriented carpooling service model was developed that included mixed user groups, different user types, multiple origin and destination pairs, a time window and user attitudes, and considered the cost and time efficiency requirements of the users to guarantee individual benefits and provide more reasonable matches. A 0-1 nonlinear optimization model was built to describe the model and an improved genetic algorithm based on a nearby matching principle designed to find the optimal solution. Finally, a case simulation from Chengdu city was conducted to demonstrate the effectiveness of the proposed model and the influence of different user attitudes on the carbon emissions and match rates, from which it was found that the proposed carpooling mode was able to provide a more systematic carpooling plan, avoid the increased carbon emissions from potential mismatching due to time and efficiency losses, and guarante the maximum social benefit.

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