KAUST has been selected as the first FIFA Research Institute in the Middle East and Asia. KAUST will apply its research expertise to advance football-related studies, initially focusing on developing datasets that enable deeper insights into the game. The collaboration’s first project focuses on developing AI algorithms to analyze historical FIFA World Cup broadcast footage, while the second project leverages player and ball tracking data from the FIFA World Cup 2022™ Qatar and the FIFA Women’s World Cup 2023™ Australia & New Zealand. Why it matters: This partnership strengthens the intersection of sport, academia, and industry in the region through high-impact scientific inquiry.
KAUST Academy has launched a summer training program called "Artificial Intelligence in Sports" in partnership with Vista Equity Partners and Stats Perform. The program included 20 intensive sessions of lectures, labs, and competitions for students with Python and ML knowledge. Participants used real data from football competitions including the Saudi Pro League. Why it matters: This program supports Saudi Arabia's Vision 2030 by investing in local talent and linking academic knowledge with real-world applications, particularly in preparation for hosting the 2034 FIFA World Cup.
The Qatar Computing Research Institute (QCRI) provided insights and clarification regarding the impact of artificial intelligence on jobs and employment. This discussion likely centered on the regional economic implications, possibly in the context of the World Cup. The initiative aimed to enhance understanding of the future of work as AI adoption accelerates. Why it matters: Addressing the societal and economic challenges posed by AI's influence on the labor market is critical for GCC nations as they pursue economic diversification and technological advancement.
KAUST is partnering with the MiSK Global Forum (MGF) to support the 2020 Entrepreneurship World Cup (EWC), hosting a bootcamp for finalists. Four of the six Saudi startups among the top 100 in the EWC global finals are from KAUST. The EWC is the world's largest entrepreneurship competition, attracting 175,000 applicants from 200 countries. Why it matters: This partnership provides KAUST-nurtured startups with significant global exposure and resources, strengthening the Saudi entrepreneurship ecosystem.
Red Sea Farms, a KAUST agriculture technology spinout, placed third at the Entrepreneurship World Cup (EWC) and won $150,000. The startup specializes in saltwater greenhouse technology to reduce the dependence on fresh water for irrigation. Red Sea Farms recently received $1.9 million USD in seed funding from KAUST's Innovation Fund and Research Products Development Company to build a pilot greenhouse. Why it matters: This award and funding will enable Red Sea Farms to scale their production of saltwater tomatoes and address food system sustainability in water-scarce regions.
KAUST will host 96 Entrepreneurship World Cup (EWC) finalists from 64 countries for an entrepreneurship bootcamp, in partnership with the Misk Global Forum (MGF). The finalists will receive training at KAUST to prepare for the EWC global finals at the MGF in Riyadh in November. Six of the finalists are from Saudi Arabia and are graduates of KAUST's entrepreneurship programs. Why it matters: This partnership strengthens Saudi Arabia's position as a hub for global entrepreneurship and aligns with its economic transformation goals by attracting international startups and talent.
Five KAUST startups, graduates of programs like TAQADAM and 9/10ths Accelerator, each secured $50,000 at the Misk Entrepreneurship World Cup (EWC). Sadeem CEO Mustafa Mousa highlighted KAUST's role in supporting their flood-safety technology venture. KAUST will host a bootcamp for the finalists in preparation for the EWC Global Finals in Riyadh. Why it matters: This showcases KAUST's increasing role in fostering deep-tech entrepreneurship and supporting Saudi Arabia's innovation ecosystem.
A KAUST student blog post discusses optical wireless communications (OWC) as a solution to radio frequency exhaustion. OWC uses optical frequencies to carry electrical signals, offering advantages like high data rates and immunity to electromagnetic interference. Free-space optical (FSO) communication, a type of OWC, is applicable for inter-building connections and has seen use cases such as broadcasting during the 2010 FIFA World Cup. Why it matters: OWC research and deployment in the region can support high-bandwidth applications and provide cost-effective connectivity solutions, especially in challenging environments or disaster scenarios.