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Drive cycles, battery pack scaling, and usage considerations for long-haul and regional-haul electric trucks

Research output: Contribution to journalArticlepeer-review

Abstract

Electrifying Class-8 heavy-duty trucks presents a promising opportunity to enhance energy efficiency and reduce freight transport costs. Battery electric trucks (BETs), once considered niche, are gaining traction due to advancements in battery technology and cost reductions. However, accurately predicting battery lifespan under realistic usage conditions remains a key challenge. Understanding battery failure mechanisms and their links to design, operation, and management is essential for developers and fleet operators.This study introduces a method to develop simplified, lab-testable dynamic stress test (DST) cycles for regional and long-haul Class-8 BETs, derived from real-world diesel truck usage. These DSTs enable benchmarking of battery technologies, identification of aging stressors, and optimization of battery design, life, and cost. The approach supports evaluation of key metrics such as levelized cost of driving and total cost of ownership, aiding fair comparisons and adoption decisions. We also propose feasible battery pack sizes that meet current driving demands with strategic charging, and a method to scale pack-level DSTs to cell-level cycles for lab-based testing. These tools facilitate tradeoff analysis across battery chemistries, pack sizing, and charging strategies, while offering means to get insights into battery aging under realistic conditions—ultimately supporting informed BET deployment decisions.

Original languageEnglish
Article number239662
JournalJournal of Power Sources
Volume675
Early online dateMar 13 2026
DOIs
StatePublished - May 30 2026

Keywords

  • Battery electric trucks
  • Drive cycle for battery electric trucks
  • Medium and heavy duty trucks

INL Publication Number

  • INL/JOU-25-88025
  • 207215

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