Director with expertise in Artificial Intelligence (AI), Geospatial Artificial Intelligence (GEOAI), In-Context Learning (ICL), Retrieval-Augmented Generation (RAG), Geomatics, LiDAR, Remote Sensing, Geophysical Sensing, Software Development, Archaeology, Non-Equilibrium Quantum Thermodynamics of Nuclear Fusion, and Subcritical Fission with Fusion Neutron Source.
Scientist, Engineer, Consultant, and Contractor with extensive experience in Geodesy, Geomatics, GNSS, 3D Laser Scanning, Remote Sensing, 3D Geophysical Sensing, GIS, Photogrammetry, Surveying, Cadastre, Mapping, Software Development, and Archaeology — recently extended into In-Context Learning Theory, Geospatial Artificial Intelligence, Quantum Geodesy, and Geospatial Intelligence, the last of these including a patent-pending constellation-aware transformer architecture for multi-GNSS positioning with learned inter-system bias estimation. Work spans academia, research, and consultancy.
Two further patent applications (PCT and USPTO provisional) cover novel nuclear architectures: a subcritical fission hybrid battery driven by a beam-target deuterium–tritium fusion neutron source, and a sub-ignition aneutronic multi-foil beam-recycling architecture operating within non-equilibrium quantum thermodynamic bounds — developed as a compact, switchable source of MeV alpha particles from stable, non-radioactive fuel.
A verification protocol for techno-economic screening of advanced nuclear and fusion concepts grew directly out of auditing the first of these architectures. The audit found a load-bearing input error that four computational validations had reproduced faithfully for two months. The method that found it is published; the corrected analysis is available on request. The protocol addresses a specific failure mode: cross-validation confirms nothing when the methods share an assumption.
Independent research spans two further tracks: a mathematical foundations program for seventh-generation (7G) wireless communications, built on the Fisher–Shannon metric space construct; and a published family of interactive geostrategic simulators — Monte Carlo and deterministic engines modeling conflict risk and agreement viability across the Middle East, each with an open, falsifiable methodology.
With a multidisciplinary background and international education — having lived, studied, and worked in Kuwait, Syria, Türkiye, the US, Austria, Saudi Arabia, Switzerland, the UK, and Jordan — a unique perspective is brought to technical challenges and business endeavors.
In-Context Learning Theory; Geospatial Artificial Intelligence; Quantum Geodesy; Geospatial Intelligence; NEQT-Fusion; SFHB-Fission-Fusion
Geodesy; Geomatics; Geophysics; Remote Sensing; LiDAR; Archaeology; FinTech Quant; Custom Software Development; Data Science
GEOINT; SIGINT; HUMINT; Geomatics; Data Science
Teaching / Research; Geomatics & Transportation Engineering
Teaching / Research; Geomatics Engineering & Construction Management
Teaching / Administration.
Technical / Administrative / Legal Consultancy.
Geomatics Projects / Administration.
Research.
Research / Teaching.
December 2010
Business Administration
University of Wales, UK
(via Zurich, Switzerland)
January 2004
Geodesy and Photogrammetry Engineering
Istanbul Technical University
Istanbul, Turkey
May 2003
Civil Engineering / Geomatics Engineering
Purdue University
West Lafayette, IN, USA
January 1999
Civil Engineering / Surveying Engineering
Middle East Technical University
Ankara, Turkey
January 1997
Civil Engineering / Construction Management
Middle East Technical University
Ankara, Turkey
Organised at Chalmers University of Technology in Gothenburg, Sweden.
Oral presentation at the symposium; Cambridge, Massachusetts, USA.
Company booth at the symposium; Tampa, Florida, USA.
1,250 lines; Python
3,200 lines; Python
2,700 lines; Python
500 lines; Python
4,200 lines; Python
10,800 lines; Python
770 lines; Python
2,500 lines; Python
600 lines; Python
1,000 lines; Rust
1,200 lines; Rust
380 lines; Python
350 lines; JavaScript
725 lines; Python