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Challenges and opportunities in the electrification of trucks through big operational data
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Challenges and opportunities in the electrification of trucks through big operational data

  • Global energy-related CO2 Emissions by sector (International Energy Agency, 2020); https://www.iea.org/data-and-statistics/charts/global-energy-related-co2-emissions-by-sector

  • Basma, H. & Rodríguez, F. Race to Zero: How manufacturers of emission-free commercial vehicles and buses are positioning themselves in Europe (International Council on Clean Transport (ICCT), 2021); https://theicct.org/publication/race-to-zero-ze-hdv-eu-dec21/

  • Summary of the Advanced Clean Fleets Regulation (California Air Resources Board, 2023); https://ww2.arb.ca.gov/resources/fact-sheets/advanced-clean-fleets-regulation-overview

  • Memorandum of Understanding on zero-emission medium and heavy commercial vehicles (Alliance for Transport Decarbonization, 2023); https://globaldrivetozero.org/site/wp-content/uploads/2023/08/Global-MOU-Signatories-2023.pdf

  • Proposal for a Regulation of the European Parliament and of the Council amending Regulation (EU) 2019/1242 as regards strengthening the CO2 Emission standards for new heavy-duty vehicles and the inclusion of reporting obligations and repealing Regulation (EU) 2018/956 Document 52023PC0088 (European Commission, 2023); https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A52023PC0088

  • Energy saving and technology roadmap 2.0 for vehicles with alternative drive technology (Chinese Society of Automotive Engineers, 2021)

  • Global EV Data Explorer (International Energy Agency, 2023); https://www.iea.org/data-and-statistics/data-tools/global-ev-data-explorer

  • Wappelhorst, S. & Rodríguez, F. Global overview of government targets for the phasing out of medium and heavy-duty trucks with internal combustion engines. ICCT Blog https://theicct.org/global-overview-of-government-targets-for-phasing-out-internal-combustion-engine-medium-and-heavy-trucks/ (2021)

  • Nykvist, B. & Olsson, O. The feasibility of heavy-duty battery-powered electric trucks. Joule 5901–913 (2021).

    Article Google Scholar

  • Mao, S., Basma, H., Ragon, P.-L., Zhou, Y. & Rodríguez, F. Total cost of ownership for heavy trucks in China Battery-electric fuel cell and diesel trucks White Paper (ICCT, 2021); https://theicct.org/publication/total-cost-of-ownership-for-heavy-trucks-in-china-battery-electric-fuel-cell-and-diesel-trucks/

  • Forrest, K., Mac Kinnon, M., Tarroja, B. & Samuelsen, S. Estimating the technical feasibility of fuel cell and battery electric vehicles for the medium- and heavy-duty sector in California. Appl. Energy 276115439 (2020).

    Article Google Scholar

  • Liimatainen, H., Van Vliet, O. & Aplyn, D. The potential of electric trucks – an international analysis at commodity level. Appl. Energy 236804–814 (2019).

    Article Google Scholar

  • Hao, H. et al. Impact of transportation electrification on sustainability of critical metals with focus on the heavy-duty segment. Nat. Commun. 105398 (2019).

    Article Google Scholar

  • Borlaug, B. et al. Electrification of heavy trucks and the impact of depot charging on power distribution systems. Nat. Energy 6673–682 (2021).

    Article Google Scholar

  • McCall, M. & Phadke, AA Electrification of semi-trucks in California: Preliminary assessment of infrastructure needs and cost-benefit analysis (Lawrence Berkeley National Laboratory, 2019)

  • Lanz, L., Noll, B., Schmidt, TS & Steffen, B. Comparison of the levelized costs of charging options for electric vehicles in Europe. Nat. Commun. 135277 (2022).

    Article Google Scholar

  • Wang, K., Zavaleta, VG, Li, Y., Sarathy, SM & Abdul-Manan, AFN Life-cycle CO2 Containing China’s Class 8 heavy-duty trucks requires hybrid strategies. One Earth 5709–723 (2022).

    Article Google Scholar

  • Wang, Q., Miller, M. & Fulton, L. Technology and fuel transition: Pathways to a low-greenhouse gas future for cars and trucks in the United States (University of California, Davis, 2023)

  • Sacchi, R., Bauer, C. & Cox, BL Does size matter? The influence of size, load factor, range and application type on the life cycle assessment of current and future medium and heavy-duty vehicles. Environmental science and technology. 555224–5235 (2021).

    Article Google Scholar

  • Liang, X. et al. Air quality and health benefits from fleet electrification in China. Nat. Maintain. 2962–971 (2019).

    Article Google Scholar

  • Wang, G., Fulton, L. & Miller, M. Current and future performance and costs of battery-electric trucks: review of key studies and detailed comparison of the scope and coverage of their cost modeling (Univ. California, Davis, 2022); https://doi.org/10.7922/G2D50K9T

  • Burke, A., Miller, M., Sinha, A. & Fulton, L. Evaluating the economics of battery-electric and fuel cell trucks and buses: methods, issues and results (University of California, Davis, 2022); https://escholarship.org/uc/item/1g89p8dn

  • Kurani, KS, Miller, M., Sugihara, C., Stepnitz, E.-A. & Nesbitt, K.A Factors determining fleet turnover of medium and heavy trucks (University of California, Davis, 2023); https://escholarship.org/uc/item/20n8n4mb

  • Hunter, C. et al. Spatial and temporal analysis of total cost of ownership for Class 8 tractors and Class 4 parcel delivery vehicles (National Renewable Energy Laboratory, 2021); https://www.nrel.gov/docs/fy21osti/71796.pdf

  • Burnham, A. et al. Comprehensive quantification of total cost of ownership for vehicles of different size classes and drivetrains (Argonne National Laboratory, 2021); https://publications.anl.gov/anlpubs/2021/05/167399.pdf

  • Mao, S. & Rodríguez, F. Race to Zero: How manufacturers of emission-free commercial vehicles and buses are positioning themselves in China (ICCT, 2021); https://theicct.org/publication/race-to-zero-how-manufacturers-are-positioned-for-zero-emission-commercial-trucks-and-buses-in-china/

  • MacDonnell, O. et al. Market update for zero-emission trucks and buses (CALSTART, 2022); https://globaldrivetozero.org/site/wp-content/uploads/2022/10/ZE_TruckBus_update.pdf

  • Mao, S., Zhang, Y., Rodríguez, F., Wang, S. & Hao, C. Performance of battery-powered heavy commercial vehicles in practical operation in China: energy consumption, range and charging behavior (ICCT, 2023); https://theicct.org/publication/hdv-china-real-world-performance-apr23/

  • Cui, H., Xie, Y. & Niu, T. China is driving its electric truck market by adopting battery swapping. ICCT Blog https://theicct.org/china-is-propelling-its-electric-truck-market-aug23/ (2023)

  • Wang, F. et al. Cross-sector drivers of battery electric vehicle decarbonization in China. PNAS Nexus 2pgad123 (2023).

    Article Google Scholar

  • Herberz, M., Hahnel, UJJ & Brosch, T. Addressing range concerns in electric vehicles with a scalable behavioral intervention. Nat. Energy 7503–510 (2022).

    Article Google Scholar

  • Wei, W., Ramakrishnan, S., Needell, ZA & Trancik, JE – Private vehicle electrification and charging solutions for high energy demand days. Nat. Energy 6105–114 (2021).

    Article Google Scholar

  • Wang, Z. Annual Report on Big Data in New Vehicles in China (2021) (Springer, 2023)

  • Yin, Q., Shuhan, S. & McLane, R. The actual performance of zero-emission trucks in the US and Europe and its impact on China (in Chinese) (CALSTART, 2022); https://globaldrivetozero.org/site/wp-content/uploads/2022/05/EFC-Task-2_CH.pdf

  • Nykvist, B., Sprei, F. & Nilsson, M. Assessing progress towards lower-cost long-range battery electric vehicles. Energy policy 124144–155 (2019).

    Article Google Scholar

  • Total cost of ownership estimator. California Hybrid and Zero-Emission Truck and Bus Voucher Incentive Project (HVIP) https://californiahvip.org/tco/ (2023)

  • How to buy an electric truck: Public funding helps hauliers achieve emission-free road freight transport (Transport & Environment, 2022); https://www.transportenvironment.org/articles/how-to-buy-an-electric-truck

  • Run on Less – Electric Depot Program (North American Council for Freight Efficiency, 2023); https://runonless.com/

  • Limit values ​​and measurement methods for emissions from heavy-duty diesel-powered vehicles (China VI) (Ministry of Ecology and Environment of the People’s Republic of China, 2018)

  • Zhang, S. et al. On-board monitoring (OBM) for heavy-duty vehicle emissions in China: regulations, early-stage evaluation, and policy recommendations. Science, overall environment. 731139045 (2020).

    Article Google Scholar

  • Greenhouse Gases, Regulated Emissions and Energy Use in Transport (GREET) Model (Argonne National Laboratory, 2023); https://greet.es.anl.gov

  • He, X. et al. Economic and climatic benefits of electric vehicles in China, the USA and Germany. Environmental science and technology. 5311013–11022 (2019).

    Article Google Scholar

  • Fuel consumption limits for heavy commercial vehicles (Draft for comment) (Ministry of Industry and Information Technology of the People’s Republic of China, 2022)

  • Ledna, C., et al. Decarbonisation of medium and heavy road vehicles: Cost analysis for zero-emission vehicles (National Renewable Energy Laboratory, 2022); https://www.nrel.gov/docs/fy22osti/82081.pdf

  • Hall, D. & Lutsey, N. Estimating infrastructure needs and costs for introducing zero-emission trucks White Paper (ICCT, 2019); https://theicct.org/publication/estimating-the-infrastructure-needs-and-costs-for-the-launch-of-zero-emission-trucks/

  • Zhao, P. et al. Challenges and opportunities in truck electrification using big operational data. Figshare https://doi.org/10.6084/m9.figshare.24421210 (2024)

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