• English
    • Filipino
    • 中文
    • 한국어
    • français
    • русский
  • 中文 
    • English
    • Filipino
    • 中文
    • 한국어
    • français
    • русский
  • Login
View Item 
  •   BAHÁNDÌAN 主页
  • School of Graduate Studies
  • Collaborative Researches
  • Journal articles
  • View Item
  •   BAHÁNDÌAN 主页
  • School of Graduate Studies
  • Collaborative Researches
  • Journal articles
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Robust control strategy for intelligent connected electric vehicles facing cybersecurity threats

Thumbnail
Associated URL
link.springer.com
Page views
1
发表日期
2025-09
作者
Zhong, Zonglin
Gao, Risheng
Espina, Bibiana
股票 
 
元數據
显示条目完整记录

摘要
This study investigates robust control strategies for Intelligent Connected Electric Vehicles (ICEVs) under cybersecurity threats, with the objective of enhancing both operational safety and energy efficiency in electrified vehicular systems. The proposed framework integrates three key innovations: (1) A hierarchical control architecture combining H ∞ robust control for actuator-level resilience with adaptive Kalman filter to mitigate sensor anomalies caused by cyberattacks; (2) An energy-aware distributed control algorithm that optimizes torque distribution in heterogeneous platoons while maintaining cybersecurity constraints; (3) A novel pre-post filter mechanism for safety-critical systems that provides additional protection layers against false data injection and ECU intrusions. This study combines H ∞ control with blockchain verification for the first time to solve the problem of dynamic delay attacks in V2X communication, and proposes a distributed collaborative control architecture to address the coupling problem between malicious node identification and energy allocation in heterogeneous fleets. The response speed is 40% faster than centralized control. Experimental validation demonstrates significant improvements: Cybersecurity performance 18.7% higher penetration test scores compared to conventional systems. Energy efficiency 12.2% reduction in energy consumption for electric vehicles in mixed platoons through coordinated control. Control robustness Maintains 98.3% trajectory tracking accuracy under simulated GNSS spoofing attacks. The results establish that the proposed strategy simultaneously addresses cybersecurity vulnerabilities and operational optimization in ICEVs, providing a unified solution for next-generation vehicle safety and sustainability.
描述
Journal article

DOI: https://doi.org/10.1007/s42452-025-07719-2
网址
https://hdl.handle.net/20.500.12852/3749
建议引文
Zhong, Z., Gao, R., & Espina, B. (2025). Robust control strategy for intelligent connected electric vehicles facing cybersecurity threats. Discover Applied Sciences, 7(10), 1-17.
文件类型
Article
主题
Automobiles OCLC - FAST (Faceted Application of Subject Terminology); Electric vehicles--Energy consumption OCLC - FAST (Faceted Application of Subject Terminology); Robust control OCLC - FAST (Faceted Application of Subject Terminology); Kalman filtering OCLC - FAST (Faceted Application of Subject Terminology); Intelligent transportation systems OCLC - FAST (Faceted Application of Subject Terminology); Vehicular ad hoc networks (Computer networks) OCLC - FAST (Faceted Application of Subject Terminology); Data integrity OCLC - FAST (Faceted Application of Subject Terminology); Sensor networks OCLC - FAST (Faceted Application of Subject Terminology)
集合
  • Journal articles [3]

联系我们 | Send Feedback | https://creativecommons.org/licenses/by/4.0/ Logo by HLL
Central Philippine University © 2026
Managed by 
Henry Luce III LibraryHenry Luce III Library
 

 

Links
BAHÁNDÌAN Repository GuideDisclaimerFAQsSubmit your workNews and Updates

浏览

全部BAHÁNDÌAN文献分类和数据库按发布日期作者标题关键词该集合按发布日期作者标题关键词

My Account

LoginRegister

Statistics

View Usage Statistics
CPU Henry Luce III Library

联系我们 | Send Feedback | https://creativecommons.org/licenses/by/4.0/ Logo by HLL
Central Philippine University © 2026
Managed by 
Henry Luce III LibraryHenry Luce III Library
 

 

EXTERNAL LINKS DISCLAIMER

This link is being provided as a convenience and for informational purposes only. Central Philippine University bears no responsibility for the accuracy, legality or content of the external site or for that of subsequent links. Contact the external site for answers to questions regarding its content.

If you come across any external links that don't work, we would be grateful if you could report them to the repository administrators.

Click DOWNLOAD to open/view the file. Chat Bertha to inform us in case the link we provided don't work.

Download