Industrial automation.
Before the PhD, five years founding and running SSL Elektrik-Elektronik (Türkiye, 2017–2022) — an applied R&D and industrial-automation business delivering high-voltage energy distribution and AI-driven control systems for state and private oil-and-gas operators. Optimisation theory is only useful if it survives the field — this is where my methods earn their operational credibility.
A plant in motion.
SITE-A — a representative oil-and-gas distribution facility from 132 kV utility tie-in through to process motors. The model traces every layer of a real HV distribution: incomers, line CBs, isolators, instrument transformers, lightning arresters, main 132/33 kV transformers, 33 kV switchgear, distribution transformers, 11 kV ring-main units, LV switchboards, MCCs, capacitor banks, UPS, motor pumps, process tanks, separators, and standby gensets.
HV Distribution Refit
End-to-end design, commissioning, and handover for a high-voltage substation upgrade serving an upstream production site.
Pump Station Automation
PLC and SCADA architecture for a multi-pump distribution network with redundant control, condition monitoring, and remote supervisory access.
Process Control Integration
Integration of legacy field instrumentation with modern industrial control systems for downstream oil & gas operations.
Energy Optimisation
Load profiling and reactive-power management across distributed assets — grounded in the same multi-objective methods as the academic work.
Where it lands operationally.
Bring me your plant.
If you've got a complex industrial system that needs control, monitoring, or optimisation — and you want someone who has actually walked the floor — let's talk.
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