Research Associate

Current Work

I am a postdoc in Prof Alex Archibald's group in the Centre for Atmospheric Science. I am working also with National Centre for Atmospheric Science (NCAS) researchers Dr Luke Abraham and Maria Russo, and PhD student Zainab Hakim on the NERC-funded REVEAL-NOx project, which aims to better quantify the climate effects of aviation NOx emissions.

We are now at the stage where we have made many global atmosphere model runs to estimate the climate forcing due to aviation NOx, including over the interesting Covid "anthropause". We have started comparing both our results and those of partner universities against observational datasets to qualify the individual models, and will feed that into weights for multi-model ensemble climate effect predictions.

Previous Career

I worked for many years in automotive electronics as a software engineer, in diverse projects covering electric powertrain, combustion engine and pollution controls, autonomous vehicles, and also software tools. As technical leader I present the final video of the UKRI-funded MuCCA autonomous vehicle consortium project here

I have also been involved in machine learning competitions on public platforms, and other coding projects including an early educational molecular dynamics project. I have a GitHub area here.

PhD

I did my PhD here in Cambridge under Prof Sir David King, concerning the measurement and modelling of heats of adsorption and reaction on single-crystal metal surfaces. My thesis is available here. Nearly thirty years on, I was able to retrieve a couple of souvenir bits of metalwork from the floor of my old ground-floor lab just before it was refurbished...

Publications

Please see my Google Scholar page, or my (currently incomplete) ORCID page.

An autogenerated list of publications appears below.

Also

I have a LinkedIn profile here.

I am a marathon-running nerd; for results and niche videos see here.

Publications

A comparative analysis of multi‐criteria decision methods for secure beacon selection in vehicular platoons
SJ Taylor, F Ahmad, HN Nguyen, SA Shaikh, J Bryans, CE Wartnaby
Transactions on Emerging Telecommunications Technologies
(2023)
34
ARISTOTLE: AddRessIng falSe daTa injectiOn atTacks in vehicLE platoons
SJ Taylor, F Ahamad, HN Nguyen, SA Shaikh, D Evans, CE Wartnaby
IET Conference Proceedings
(2023)
2022
A formal framework for security testing of automotive over-the-air update systems
R Kirk, HN Nguyen, J Bryans, SA Shaikh, C Wartnaby
Journal of Logical and Algebraic Methods in Programming
(2023)
130
Bps: Beacon Prediction and Selection to Mitigate FDI Attacks in Vehicular Platoons
SJ Taylor, F Ahmad, HN Nguyen, SA Shaikh, CE Wartnaby, D Evans
SSRN Electronic Journal
(2022)
Decentralized Cooperative Collision Avoidance for Automated Vehicles: a Real-World Implementation**Project supported by Innovate UK.
D Bellan, C Wartnaby
2020 IEEE INTELLIGENT VEHICLES SYMPOSIUM (IV)
(2020)
00
Decentralised cooperative collision avoidance with reference-free model predictive control and desired versus planned trajectories
C Wartnaby, D Bellan
(2019)
ADSORPTION HEATS AND STICKING PROBABILITIES FOR CO ON POTASSIUM-PREDOSED Ni{110}
CE WARTNABY, JT STUCKLESS, DA KING
Surface Review and Letters
(2012)
1
Auto-Generated Production Code Development for Ford/Think Fuel Cell Vehicle Programme
CE Wartnaby, SM Bennett, M Ellims, RR Raju, MS Mohammed, B Patel, SC Jones
SAE Technical Paper Series
(2003)
1
Microcalorimetric study of ethylene adsorption at 300 K on Pt{100}-hex and Pt{100}-(1 X 1)
YY Yeo, A Stuck, CE Wartnaby, R Kose, DA King
Journal of Molecular Catalysis A Chemical
(1998)
131
Oxygen chemisorption and oxide film growth on Ni{100}, {110}, and {111}: Sticking probabilities and microcalorimetric adsorption heats
JT Stuckless, CE Wartnaby, N Al-Sarraf, SJB Dixon-Warren, M Kovar, DA King
Journal of Chemical Physics
(1997)
106

Research Group

Email address