USENIX Security2025Top-tier venue
Current Affairs: A Security Measurement Study of CCS EV Charging Deployments
Marcell Szakály, Sebastian Köhler, Ivan Martinovic
Abstract
Since its introduction in 2012, the Combined Charging System (CCS) has emerged as the leading technology for EV fast charging in Europe, North America and parts of Asia. The charging communication of CCS is defined by the ISO 15118 standards, which have been improved over the years. Most notably, in 2014, important security features such as Transport Layer Security (TLS) and usability enhancements such as Plug and Charge were introduced. In this paper, we conduct the first measurement study of publicly deployed CCS DC charging stations to capture the state of deployment for different protocol versions and to better understand the attack surface of the EV charging infrastructure. In our evaluation, we examine 325 chargers manufactured between April 2013 and June 2023, and installed as late as May 2024 by 26 manufacturers across 4 European countries. We find that only 12% of the charging stations we analyzed implement TLS at all, leaving all others vulnerable to attacks that have already been demonstrated many years ago. We observe an increasing trend in support for ISO 15118-2 over the years, reaching 70% of chargers manufactured in 2023. We further notice that most chargers use a decade-old firmware for their HomePlug modems, which could contain vulnerabilities that have been patched since. Finally, we discuss design flaws with the Public Key Infrastructure system used in EV charging, and propose changes to improve the adoption and availability of TLS.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext cc3e28d1-bf41-4e20-ae6c-ce9259175fd9Builds on6
- Losing the Car Keys: Wireless PHY-Layer Insecurity in EV ChargingRichard Baker, Ivan MartinovicUSENIX Security 2019 · 67 citations
- A Large-scale and Longitudinal Measurement Study of DKIM DeploymentChuhan Wang, Kaiwen Shen, Minglei Guo, Yuxuan Zhao et al.USENIX Security 2022
- A Large-Scale Measurement of Website Login PoliciesSuood Abdulaziz Al-Roomi, Frank LiUSENIX Security 2023
- Brokenwire : Wireless Disruption of CCS Electric Vehicle ChargingSebastian Köhler, Richard Baker, Martin Strohmeier, Ivan MartinovicNDSS 2023
- Physical-Layer Attacks Against Pulse Width Modulation-Controlled ActuatorsGökçen Yilmaz Dayanikli, Sourav Sinha, Devaprakash Muniraj, Ryan M. Gerdes et al.USENIX Security 2022
Related papers
- ChargePrint: A Framework for Internet-Scale Discovery and Security Analysis of EV Charging Management SystemsTony Nasr, Sadegh Torabi, Elias Bou-Harb, Claude Fachkha et al.NDSS 2023
- OCPPuzz: Specification-Driven Fuzzing of Charging Station Management Systems with Large Language ModelJongchan Hong, Jaewon Kim, Sungjae HwangFSE 2026
- TLS 1.3 in Practice: How TLS 1.3 Contributes to the InternetHyunwoo Lee, Doowon Kim, Yonghwi KwonWWW 2021 · 47 citations
- CSLens: Towards Better Deploying Charging Stations via Visual Analytics - a Coupled Networks PerspectiveYutian Zhang, Liwen Xu, Shaocong Tao, Quanxue Guan et al.IEEE VIS 2024 · 3 citations
- Revisiting Automotive Attack Surfaces: a Practitioners' PerspectivePengfei Jing, Zhiqiang Cai, Yingjie Cao, Le Yu et al.S&P 2024 · 16 citations
