Araştırma Makalesi

Integrating a Connected Micromobility Infrastructure to the Existing Public Transport

Cilt: 6 Sayı: 1 27 Mart 2023
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Integrating a Connected Micromobility Infrastructure to the Existing Public Transport

Öz

This paper presents the integration of connected micromobility infrastructure into the existing public transport system. The integration purpose is to help organize the public space in the urban environment, lower operation costs for micromobility operators, and create a better Mobility-as-a-Service (MaaS) experience for citizens with the connected and universal micromobility charging infrastructure solution. Our goal is to efficiently consolidate electric-powered shared micromobility vehicles such as e-scooters and e-bikes into hubs to manage their charging and maintenance operations efficiently. Therefore, determining the locations of these e-hubs and the required charging infrastructure is paramount for satisfying the commuters' needs. We address this problem using an optimization approach and develop a model for siting and sizing micromobility e-hubs within an urban context. We formulate the problem as a mixed-integer linear programming (MILP) and develop a Variable Neighbourhood Search (VNS) metaheuristic algorithm to solve the problem. The evaluation of the performance of the solution methodology is applied using real data from Ankara Metropolitan Municipality (AMM).

Anahtar Kelimeler

Destekleyen Kurum

Sabanci University

Proje Numarası

MeHUB: Integrating a Connected Micromobility Infrastructure to the Existing Public Transport (2021) EIT Urban Mobility (Coordinator: B. Çatay, Partners: DUCKT, Ankara Metropolitan Municipality)

Kaynakça

  1. Affi, M., Derbel, H., & Jarboui, B. (2018). Variable neighborhood search algorithm for the green vehicle routing problem. International Journal of Industrial Engineering Computations, 9(2), 195-204.
  2. Fishman, E., Cherry, C. (2016). E-bikes in the Mainstream: Reviewing a Decade of Research. Transport Reviews 36, 72–91,1069907.
  3. Giordano, A., Fischbeck, P. and Matthews, H.S. (2018). Environmental and economic comparison of diesel and battery electric delivery vans to inform city logistics fleet replacement strategies. Transportation Research Part D: Transport and Environment, 64, 216–229.
  4. Jaller, M., Pineda, L. and Ambrose, H. (2018). Evaluating the use of zero-emission vehicles in last mile deliveries. Institute of Transportation Studies, University of California, Davis, Research Report UCD-ITS-RR-18-48.
  5. Mladenović, N. and Hansen, P. (1997). Variable neighborhood search. Computers & Operations Research, 24(11), 1097–1100.
  6. Özger, A. (2022). Multi-depot heterogeneous fleet vehicle routing problem with time windows: Airline and roadway integrated routing. International Journal of Industrial Engineering Computations, 13(3), 435-456.
  7. Pan, S., Zhou, W., Piramuthu, S., Giannikas, V. and Chen, C. (2021). Smart city for sustainable urban freight logistics. International Journal of Production Research, 59(7), 2079–2089.
  8. Popovich, N., Gordon, E., Shao, Z., Xing, Y., Wang, Y., Handy, S. (2014). Experiences of electric bicycle users in the Sacramento, California area. Travel Behaviour and Society 1, 37–44.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

27 Mart 2023

Gönderilme Tarihi

24 Temmuz 2022

Kabul Tarihi

28 Şubat 2023

Yayımlandığı Sayı

Yıl 2023 Cilt: 6 Sayı: 1

Kaynak Göster

APA
Sadati, İ. (2023). Integrating a Connected Micromobility Infrastructure to the Existing Public Transport. Akıllı Ulaşım Sistemleri ve Uygulamaları Dergisi, 6(1), 184-193. https://doi.org/10.51513/jitsa.1148025
AMA
1.Sadati İ. Integrating a Connected Micromobility Infrastructure to the Existing Public Transport. Jitsa. 2023;6(1):184-193. doi:10.51513/jitsa.1148025
Chicago
Sadati, İhsan. 2023. “Integrating a Connected Micromobility Infrastructure to the Existing Public Transport”. Akıllı Ulaşım Sistemleri ve Uygulamaları Dergisi 6 (1): 184-93. https://doi.org/10.51513/jitsa.1148025.
EndNote
Sadati İ (01 Mart 2023) Integrating a Connected Micromobility Infrastructure to the Existing Public Transport. Akıllı Ulaşım Sistemleri ve Uygulamaları Dergisi 6 1 184–193.
IEEE
[1]İ. Sadati, “Integrating a Connected Micromobility Infrastructure to the Existing Public Transport”, Jitsa, c. 6, sy 1, ss. 184–193, Mar. 2023, doi: 10.51513/jitsa.1148025.
ISNAD
Sadati, İhsan. “Integrating a Connected Micromobility Infrastructure to the Existing Public Transport”. Akıllı Ulaşım Sistemleri ve Uygulamaları Dergisi 6/1 (01 Mart 2023): 184-193. https://doi.org/10.51513/jitsa.1148025.
JAMA
1.Sadati İ. Integrating a Connected Micromobility Infrastructure to the Existing Public Transport. Jitsa. 2023;6:184–193.
MLA
Sadati, İhsan. “Integrating a Connected Micromobility Infrastructure to the Existing Public Transport”. Akıllı Ulaşım Sistemleri ve Uygulamaları Dergisi, c. 6, sy 1, Mart 2023, ss. 184-93, doi:10.51513/jitsa.1148025.
Vancouver
1.İhsan Sadati. Integrating a Connected Micromobility Infrastructure to the Existing Public Transport. Jitsa. 01 Mart 2023;6(1):184-93. doi:10.51513/jitsa.1148025

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