SCIESCOPUSQ4
International Journal of Heavy Vehicle Systems
INDERSCIENCE ENTERPRISES LTD, United Kingdom
International Journal of Heavy Vehicle Systems is an academic journal published by INDERSCIENCE ENTERPRISES LTD (United Kingdom). Identifiers: ISSN 1744-232X, eISSN 1741-5152. Indexed in SCIE, SCOPUS. Metrics: JIF 0.6, CiteScore 1.2, SJR 0.265, SNIP 0.35. Subject areas: ENGINEERING, MECHANICAL, TRANSPORTATION SCIENCE & TECHNOLOGY. tlooto lists 1,012 papers from this journal.
CiteScore
1.20
Scopus citation metric
SJR
0.265
SCImago rank
SNIP
0.35
Source normalized impact
Percentage rank
-
JIF percentile rank
Journal profile
- ISSN
- 1744-232X
- eISSN
- 1741-5152
- Abbreviation
- INT J HEAVY VEH SYST
- Publisher
- INDERSCIENCE ENTERPRISES LTD
- Country
- United Kingdom
Web of Science categories
SCIEENGINEERING, MECHANICAL, TRANSPORTATION SCIENCE & TECHNOLOGY
Scopus ASJC categories
2203 Automotive Engineering2210 Mechanical Engineering
Keywords
Engineering, Mechanical | Transportation Science & Technology
Papers in this journal
Recent papers
- Nonlinear vibrations study of truck seat-cab suspension system
2026
- DDQN-based trajectory tracking control for unmanned ground vehicles: design and experimental validation
2026
- Modelling and manufacturing of a polyurethane non-pneumatic tyre for unmanned ground vehicles
2026
- A comprehensive review on deep learning based adaptive methods for obstacle detection in autonomous ground vehicles using sensor fusion
2026
- Reconfigurable multi-unit, multi-axle, multi-articulation heavy vehicle (RUAAHV) parameter estimation
2026
Most cited papers
- Combined optimisation of design and power management of the hydraulic hybrid propulsion system for the 6 × 6 medium truck
2004 · 151 citations
- On the use of bridge weigh–in–motion for overweight truck enforcement
2014 · 82 citations
- Dynamic modelling and stability analysis of articulated frame steer vehicles
2005 · 77 citations
- Modelling and control of a medium-duty hybrid electric truck
2004 · 65 citations
- Simulation-based optimal design of heavy trucks by model-based decomposition: an extensive analytical target cascading case study
2004 · 63 citations