System-of-Systems Solution with Quantum Simulation for Monitoring, Reporting, Validation, and Verification of GHGs/Carbon Cycle in Biodiversity Ecosystems for SEPLS to Strengthen Sustainable Frameworks Development

Title :System-of-Systems Solution with Quantum Simulation for Monitoring, Reporting, Validation, and Verification of GHGs/Carbon Cycle in Biodiversity Ecosystems for SEPLS to Strengthen Sustainable

Overview:
This project aims to develop a System-of-Systems solution using quantum simulation to monitor, report, validate, and verify greenhouse gases (CO2, CH4, N2O) and the carbon cycle in biodiversity ecosystems, particularly in SEPLS (Socio-Ecological Production Landscapes and Seascapes). By integrating satellite data, field sampling, AI, and quantum-based spectral analysis, the project will create accurate regional carbon-sequestration models, maps of soil and water carbon, and identify carbon-sink hotspots. Participating institutions will benefit by gaining access to cutting-edge tools and data for ecosystem carbon monitoring, enhancing research capacity, and strengthening collaborations for sustainable ecosystem management and climate action.

Academic supervisor: Cynthia Goh and Yen-Hsun Su
Intern:Ke-Hsin Chen

Faculty Supervisor:

Cynthia Goh

Student:

Partner:

National Cheng Kung University

Discipline:

Engineering

Sector:

Environmental Science and Technology; Quantum Science; Sustainability and the Environment

University:

University of Toronto

Program:

Globalink Research Award

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