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Title: Characterizing the Payback and Profitability for Automated Heavy Duty Vehicle Platooning

Journal Article · · Sustainability (Basel)
DOI: https://doi.org/10.3390/su14042333 · OSTI ID:1881145

Heavy duty vehicle platooning under highway operating conditions has been projected to provide significant fuel economy gains based on aerodynamic drag improvements of the platooning vehicles. Realizing these benefits and the economic viability under real-world operating conditions presents several challenges. The objective of this paper (the third as part of a series) is to analytically quantify the payback and profitability of heavy-duty vehicles platooning across the U.S. Interstate highway system. In this paper, a rigorous assessment of several factors that influence the platooning system payback for an end-user as well as the revenue potential for suppliers who may be utilizing an equipment lease model dependent on end-user savings, is presented. In this assessment key interactions explored include market adoption rates, platooning velocities, platoon-able daily mileage, platooning likelihood, variations in baseline powertrain fuel economy (diesel or electric), price of fuel (diesel or electricity), platooning fuel economy benefits, price of the added technology, and the impact of natural platooning due to traffic interactions. Further, the paper explores the economic impact of higher levels of vehicle automation for the trailing vehicles in the platoon, where extending the driver Hours of Service (HoS) may provide additional financial benefits. While the approach makes use of a limited fidelity vehicle analytical model for longitudinal dynamics and operations economics, the narrative provides application decision personnel with a mechanism and well-defined set of impact factors to consider as part of their architectural selection process.

Research Organization:
Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)
Sponsoring Organization:
USDOE
Grant/Contract Number:
AC05-00OR22725
OSTI ID:
1881145
Journal Information:
Sustainability (Basel), Journal Name: Sustainability (Basel) Journal Issue: 4 Vol. 14; ISSN 2071-1050
Publisher:
MDPICopyright Statement
Country of Publication:
United States
Language:
English

References (16)

Energy saving potentials of connected and automated vehicles journal October 2018
Projecting adoption of truck powertrain technologies and CO2 emissions in line-haul networks journal July 2020
Ecological Cooperative Adaptive Cruise Control for a Heterogeneous Platoon of Heavy-Duty Vehicles With Time Delays journal January 2020
A Dynamics-Based Adaptive String Stable Controller for Connected Heavy Road Vehicle Platoon Safety journal January 2020
Optimal Energy Management for HEVs in Eco-Driving Applications Using Bi-Level MPC journal August 2017
Improvement and Investigation of the Requirements for Electric Vehicles by the use of HVAC Modeling journal March 2021
Truck Driver Behavior and Travel Time Effectiveness Using Smart GPS journal April 2020
Perceived Value of Time for Truck Operators journal January 2000
Aerodynamic Impact of Tractor-Trailer in Drafting Configuration journal September 2014
Effect of Platooning on Fuel Consumption of Class 8 Vehicles Over a Range of Speeds, Following Distances, and Mass journal May 2014
Fuel and Freight Efficiency - Past, Present and Future Perspectives journal September 2016
Future Challenges for Engine Manufacturers in View of Future Emissions Legislation conference May 2017
Influences on Energy Savings of Heavy Trucks Using Cooperative Adaptive Cruise Control conference April 2018
Experimental Investigation of the Aerodynamic Benefits of Truck Platooning: Two- and Four-Vehicle Platoons conference April 2021
Quantification of Platooning Fuel Economy Benefits across United States Interstates Using Closed-Loop Vehicle Model Simulation conference February 2021
Value of Time for Commercial Vehicle Operators journal October 2010