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Small Cell 5G Network Market to be worth $125.5 Billion by 2030: Grand View Research, Inc.

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The global small cell 5G network market size is anticipated to reach USD 125.5 billion by 2030, registering a CAGR of 72.5% over the forecast period, according to a new report by Grand View Research, Inc. The deployment of next-generation small cell 5G networks is estimated to witness significant growth over the forecast period. This is attributable to the increasing demand for the 5G network from a massive chunk of customers at public locations such as malls, offices, and stadiums. The ever-rising demand for fast mobile data connectivity among consumers has surged the deployment of the next-generation Radio Access Network (RAN). The installation of small cell 5G networks is rapidly increasing in enterprises, industrial, and residential applications to provide enhanced coverage capacity at an affordable cost.

Key Industry Insights & Findings from the report:

  • Based on the component, the hardware segment dominated the market in 2022. Based on hardware segment, the femtocell segment accounted for the largest revenue share 2022. This is attributed to its increasing demand to attain unified bandwidth coverage for several enclosed applications such as malls, homes, offices, and hospitals. Small cells are mainly available into three categories, including femtocells, picocells, and microcells, based on their different ranges. The covering bandwidth ranges of femtocells, picocells, and microcells encompass up to 50 meters, up to 250 meters, and up to 3 Kilometers, respectively.
  • Based on network model the non-standalone segment dominated the market in 2022. The non-standalone network is generally deployed in integration with the existing legacy network infrastructure.
  • Based on architecture type, the virtualized network architecture dominated the market in 2022. This is attributed to a robust deployment of a small cell 5G network with a centralized baseband unit controllable architecture. This helps service providers to reduce the Total Cost of Ownership (TCO) and increase the overall flexibility of the network by managing virtually all the small cell base stations.
  • Based on deployment mode, the indoor segment dominated the market in 2022. This is attributed to the reliable deployment of next-generation small cells across several residential and non-residential applications. The non-residential uses mainly involve enterprises, retail malls, airports, and hospitals.
  • Based on frequency type, the sub-6 GHz dominated the market in 2022. This is attributed to the enormous investments by key communication service providers in acquiring low and mid-band frequencies to deliver high bandwidth services to consumers, businesses, and industries.
  • Based on end-user, the market is segmented into residential, commercial, industrial, smart city, transportation & logistics, government & defense, and others segment. The commercial segment dominated the market in 2022. This is attributed to the growing deployment of small cell 5G networks across large as well as Small and Medium Enterprises (SMEs) across the globe. This 5G RAN network helps enterprises cater to the demand for massive data capacity and coverage needs at a very affordable cost.
  • Asia Pacific dominated the market in 2022. The dominant share of the region can be attributed to the aggressive deployment of 5G new radio infrastructure by major communication service providers such as KT Corporation; China Mobile Limited; Rakuten Mobile, Inc.; and NTT Docomo Inc. Consequently, the market in the region is anticipated to experience robust growth over the forecast period.

Read full market research report for more latest insights, “Small Cell 5G Network Market Size, Share, & Trends Analysis Report By Component, By Network Model, By Architecture, By Deployment, By Frequency Type, By End-use, By Region, And Segment Forecasts, 2023 – 2030“, published by Grand View Research.

Small Cell 5G Network Market Growth & Trends

Rapidly rising mobile data traffic across the globe enables telecom operators to migrate toward network densification to provide high-speed capacity to mass consumers. The rapidly building smart cities in developed countries such as the U.S., CanadaSingapore, U.K., GermanyItaly, and France have surged the deployment of small cell 5G networks for several applications, such as residential, industrial, commercial, and government, among others.

Also, the demand for 5G data services for several use cases, including Ultra-high Definition (UHD)/4K video, seamless video calling, and cloud-based VR/AR gaming, is rapidly mounting. As a result, it is further anticipated to boost the market growth over the forecast period. The small cell 5G network is anticipated to facilitate telecom operators to fulfill the demand for enhanced data connectivity for several industrial and enterprise business applications.

Some of the largest economies, such as the U.S. and China, are expected to continue spending insistently on provisioning healthcare facilities. The healthcare industry, especially in developed economies, has begun emphasizing remote diagnosis and patient surgeries. Additionally, the COVID-19 pandemic has enabled several key countries to build more robust healthcare capabilities through investing in advanced technologies such as 5G infrastructure. Thus, to deliver constant data connectivity during remote patient surgeries and telemedicine, the demand for small cell 5G network is expected to drive the market growth from 2022 to 2030.

The outbreak of COVID-19 slowed down the implementation of 5G infrastructure owing to the interruptions in further trials and testing needed for validating the stability and processing performance of 5G networks. Additionally, due to the COVID-19 pandemic, countries such as U.S., Germany and China have seen a robust decline in the trades of small cell telecom equipment for 5G New Radios (NR). Disruptions caused by the COVID-19 pandemic are expected to delay the implementation of private 5G networks by halting the testing and QA activities necessary for verifying the processing performance and stability of 5G standalone networks. Moreover, the labor shortage and the complete disruption of logistics and supply chains worldwide caused the delay in 5G network deployment, impacting the overall market growth in the first and second quarters of 2020.

The report covers the competitive analysis of top fifteen players in the market which includes Huawei Technologies Co., Ltd.; Nokia Corporation; Samsung Electronics Co., Ltd.; Telefonaktiebolaget LM Ericsson; Comba Telecom Systems Holdings Ltd.; Altiostar; Airspan Networks; Ceragon; ZTE Corporation; Fujitsu Limited; CommScope Inc.; Contela; Corning; Baicells Technologies. Leading players are actively making partnerships and agreements with key telecom operators to expand their geographical presence. In September 2019, Ericsson made an agreement with KT Corporation to deploy Ericsson’s indoor small cell product for enterprise applications. Besides, in July 2019, Swisscom, a Switzerland-based telecom operator, in a partnership with Ericsson, deployed small cells in Switzerland for indoor applications.

Small Cell 5G Network Market Segmentation

Grand View Research has segmented the global small cell 5G network market on the basis of component, network model, network architecture, deployment mode, frequency type, end-use, and region.

Small Cell 5G Network Market – Component Outlook (Revenue, USD Million, 2019 – 2030)

  • Hardware
    • Picocell
    • Femtocell
    • Microcell
  • Services
    • Consulting
    • Deployment & Integration
    • Training and Support & Maintenance

Small Cell 5G Network Market – Model Outlook (Revenue, USD Million, 2019 – 2030)

  • Standalone
  • Non-standalone

Small Cell 5G Network Market – Architecture Outlook (Revenue, USD Million, 2019 – 2030)

  • Distributed
  • Virtualized

Small Cell 5G Network Market – Deployment Mode Outlook (Revenue, USD Million, 2019 – 2030)

  • Indoor
  • Outdoor

Small Cell 5G Network Market – Frequency Type Outlook (Revenue, USD Million, 2019 – 2030)

  • Sub-6 GHz
  • mmWave
  • Sub-6GHz + mmWave

Small Cell 5G Network Market – End-use Outlook (Revenue, USD Million, 2019 – 2030)

  • Residential
  • Commercial
    • Corporates/ Enterprises
    • Hospitals
    • Hotels & Restaurants
    • Malls/Shops
    • Stadiums
    • Others
  • Industrial
    • Smart Manufacturing
    • Energy & Utility
    • Oil & Gas and Mining
  • Smart City
  • Transportation & Logistics
  • Government & Defense
  • Others

Small Cell 5G Network Market Outlook (Revenue, USD Million, 2019 – 2030)

  • North America
    • U.S.
    • Canada
    • Mexico
  • Europe
    • Germany
    • U.K.
    • Italy
    • Russia
  • Asia-Pacific
    • China
    • India
    • Japan
    • South Korea
  • South America
    • Brazil
  • Middle East & Africa
    • Kingdom of Saudi Arabia (KSA)
    • UAE
    • South Africa

List of Key Players of Small Cell 5G Network Market

  • Huawei Technologies Co., Ltd.
  • Samsung Electronics Co., Ltd.
  • Nokia Corporation
  • Telefonaktiebolaget LM Ericsson
  • ZTE Corporation
  • Fujitsu Limited
  • CommScope Inc.
  • Comba Telecom Systems Holdings Ltd.
  • Altiostar
  • Airspan Networks
  • Ceragon
  • Contela
  • Corning
  • Baicells Technologies

Check out more related studies published by Grand View Research:

  • 5G Network Slicing Market – The global 5G network slicing market size is expected to reach USD 4,829.3 million by 2030, growing at a CAGR of 43.0% from 2023 to 2030, according to a new report by Grand View Research, Inc. 5G network slicing technology enables mobile network operators (MNOs) to make numerous virtual networks within a single physical infrastructure, providing increased flexibility, resource utilization, efficiency, and better user experiences. The growing need for flexible and tailored 5G networks that can cater to the various necessities of different industries is increasing the demand for 5G network slicing.
  • Private 5G Network Market – The global private 5G network market size is estimated to reach USD 36.08 billion by 2030, registering a CAGR of 51.2% from 2023 to 2030, according to a new study by Grand View Research, Inc. Significantly growing demand for ultra-reliable low-latency connectivity with an extremely secure network across several mission-critical applications, such as public safety, is expected to boost the deployment of private 5G networks during the forecast period. Moreover, a wide range of industries, including manufacturing, oil & gas, mining, and energy & utility, are investing a massive amount in deploying private 5G telecom service to enhance their overall productivity and operational efficiency. As a result, it is expected to foster market growth from 2023 to 2030.
  • 5G System Integration Market – The global 5G systems integration market size is estimated to reach USD 62.69 billion by 2030, registering a CAGR of 27.3% from 2022 to 2030, according to a new study by Grand View Research, Inc. Robust increase in the investments to deploy 5G network infrastructures across key countries, such as U.S., China, and Japan, has created the demand for integrating entire fifth generation infrastructure and applications across enterprises. This process will help enterprises to work as a centralized platform that will assist in reducing overall complexity. Thus, robust investments in building fifth-generation infrastructure, coupled with the growing need to set up a 5G-enabled ecosystem, are estimated to propel market growth.

Artificial Intelligence

IBM, Government of Canada, Government of Quebec Sign Agreements to Strengthen Canada’s Semiconductor Industry

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Up to $187M CAD to be invested to progress expansion of chip packaging capacity and capabilities and to strengthen R&D at IBM Canada’s Bromont plant
BROMONT, QC, April 26, 2024 /PRNewswire/ — IBM (NYSE: IBM), the Government of Canada, and the Government of Quebec today announced agreements that will strengthen Canada’s semiconductor industry, and further develop the assembly, testing and packaging (ATP) capabilities for semiconductor modules to be used across a wide range of applications including telecommunications, high performance computing, automotive, aerospace & defence, computer networks, and generative AI, at IBM Canada’s plant in Bromont, Quebec. The agreements reflect a combined investment valued at approximately $187M CAD.

“Today’s announcement is a massive win for Canada and our dynamic tech sector. It will create high-paying jobs, invest in innovation, strengthen supply chains, and help make sure the most advanced technologies are Canadian-made. Semiconductors power the world, and we’re putting Canada at the forefront of that opportunity,” said the Right Honourable Justin Trudeau, Prime Minister of Canada
In addition to the advancement of packaging capabilities, IBM will be conducting R&D to develop methods for scalable manufacturing and other advanced assembly processes to support the packaging of different chip technologies, to further Canada’s role in the North American semiconductor supply chain and expand and anchor Canada’s capabilities in advanced packaging.
The agreements also allow for collaborations with small and medium-sized Canadian-based enterprises with the intent of fostering the development of a semiconductor ecosystem, now and into the future.
“IBM has long been a leader in semiconductor research and development, pioneering breakthroughs to meet tomorrow’s challenges. With the demand for compute surging in the age of AI, advanced packaging and chiplet technology is becoming critical for the acceleration of AI workloads,” said Darío Gil, IBM Senior Vice President and Director of Research. “As one of the largest chip assembly and testing facilities in North America, IBM’s Bromont facility will play a central role in this future. We are proud to be working with the governments of Canada and Quebec toward those goals and to build a stronger and more balanced semiconductor ecosystem in North America and beyond.”
IBM Canada’s Bromont plant is one of North America’s largest chip assembly and testing facilities, having operated in the region for 52 years. Today, the facility transforms advanced semiconductor components into state-of-the-art microelectronic solutions, playing a key role in IBM’s semiconductor R&D leadership alongside IBM’s facilities at the Albany NanoTech Complex and throughout New York’s Hudson Valley. These agreements will help to further establish a corridor of semiconductor innovation from New York to Bromont. 
“Advanced packaging is a crucial component of the semiconductor industry, and IBM Canada’s Bromont plant has led the world in this process for decades,” said Deb Pimentel, president of IBM Canada. “Building upon IBM’s 107-year legacy of technology innovation and R&D in Canada, the Canadian semiconductor industry will now become even stronger, allowing for robust supply chains and giving Canadians steady access to even more innovative technologies and products. This announcement represents just one more example of IBM’s leadership and commitment to the country’s technology and business landscape.”
Chip packaging, the process of connecting integrated circuits on a chip or circuit board, has become more complex as electronic devices have shrunk and the components of chips themselves get smaller and smaller. IBM announced the world’s first 2 nanometer chip technology in 2021 and, as the semiconductor industry moves towards new methods of chip construction, advances in packaging will grow in importance. 
“Semiconductors are part of our everyday life. They are in our phones, our cars, and our appliances. Through this investment, we are supporting Canadian innovators, creating good jobs, and solidifying Canada’s semiconductor industry to build a stronger economy. Canada is set to play a larger role in the global semiconductor industry thanks to projects like the one we are announcing today. Because, when we invest in semiconductor and quantum technologies, we invest in economic security.”  — The Honourable François-Philippe Champagne, Minister of Innovation, Science and Industry
“This investment by IBM in Bromont will ensure that Quebec continues to stand out in the field of microelectronics. An increase in production capacity will solidify Quebec’s position in the strategic microelectronics sector in North America.” — The Honourable Pierre Fitzgibbon, Minister of Economy, Innovation and Energy, Minister responsible for Regional Economic Development and Minister responsible for the Metropolis and the Montreal region
About IBMIBM is a leading provider of global hybrid cloud and AI, and consulting expertise. We help clients in more than 175 countries capitalize on insights from their data, streamline business processes, reduce costs and gain the competitive edge in their industries. More than 4,000 government and corporate entities in critical infrastructure areas such as financial services, telecommunications and healthcare rely on IBM’s hybrid cloud platform and Red Hat OpenShift to affect their digital transformations quickly, efficiently and securely. IBM’s breakthrough innovations in semiconductors, AI, quantum computing, industry-specific cloud solutions and consulting deliver open and flexible options to our clients. All of this is backed by IBM’s legendary commitment to trust, transparency, responsibility, inclusivity and service. Visit www.ibm.com for more information. 
Media ContactLorraine BaldwinIBM [email protected] 
Willa HahnIBM [email protected]
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Artificial Intelligence

HITACHI ACQUIRES MA MICRO AUTOMATION OF GERMANY IN EFFORT TO ACCELERATE GLOBAL EXPANSION OF ROBOTIC SI BUSINESS IN THE MEDICAL AND OTHER FIELDS

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HOLLAND, Mich., April 26, 2024 /PRNewswire/ — Hitachi Ltd. (TSE: 6501, “Hitachi”) has signed a stock purchase agreement on April 26 to acquire all shares of MA micro automation GmbH (“MA micro automation”, headquartered in St. Leon-Rot, Germany) from MAX Management GmbH (a subsidiary of MAX Automation SE). MA micro automation is a leading provider of robotic and automation technology (robotic SI) including high-speed linear handling systems, high-precision assembly lines, and high-speed vision inspection technology for Europe, North America, and Southeast Asia, for EUR 71.5M million. The transaction is expected to close in the second half of 2024, pending completion of the customary regulatory filings. After the acquisition is completed, MA micro automation will join JR Automation Technologies, LLC (“JR Automation”), a market leader in providing advanced automation solutions and digital technologies in the robotic system integration business for North America, Europe, and Southeast Asia as a continued effort to expand the company’s global presence.

MA micro automation is a technology leader for automation solutions within micro-assembly. Through its state-of-the-art proprietary high-speed and high-precision automation know-how, combined with unique optical image inspection capabilities, MA micro automation serves high-growth med-tech automation end-markets, covering the production, assembly, and testing medical and optical components including contact lenses, IVD and diabetes diagnostics consumables, and injection molding for medical use. The company was established in 2003 through a carve-out from Siemens*1 and since 2013 has been part of the MAX Automation group. 
JR Automation is a leading provider of intelligent automated manufacturing technology solutions, serving customers across the globe in a variety of industries including automotive, life sciences, e-mobility, consumer and industrial products. With over 20 locations between North America, Europe, and Southeast Asia, the leading integrator offers nearly 2 million square feet (185,806 sq. m) of available build and engineering floorspace. This acquisition allows JR Automation to further grow and strengthen both the company’s geographical footprint and their continued commitment on expanding support capabilities within the European region and medical market vertical.
“MA micro automation provides engineering, build and support expertise with established capabilities in complex vision applications, high-speed and high-precision automation technologies. When integrated with JR Automation’s uniform global process and digital technologies, this partnership will further enhance our ability to deliver added value and support to all of our customers worldwide and continue to grow our capabilities in the medical market,” says Dave DeGraaf, CEO of JR Automation. “As we integrate this new dimension, impressive talents and abilities of the MA micro automation team we further enhance our ability to serve our customers, creating a more robust and globally balanced offering.”
With this acquisition, Hitachi aims to further enhance its ability to provide a “Total Seamless Solution*2” to connect manufacturer’s factory floors seamlessly and digitally with their front office data, allowing them to achieve total optimization and bringing Industry 4.0 to life. This “Total Seamless Solution” strategy links organizations’ operational activities such as engineering, supply chain, and purchasing to the plant floor and allows for real time, data-driven decision-making that improves the overall business value for customers.
Kazunobu Morita, Vice President and Executive Officer, CEO of Industrial Digital Business Unit, Hitachi, Ltd. says, “We are very pleased to welcome MA micro automation to the Hitachi Group. The team is based in Europe, providing robotic SI to global medical device manufacturing customers with its high technological capabilities and will join forces with JR Automation and Hitachi Automation to strengthen our global competitiveness. Hitachi aims to enhance its ability to provide value to customers and grow alongside them by leveraging its strengths in both OT, IT, including robotic SI, and “Total Seamless Solution” through Lumada*3’s customer co-creation framework.”
Joachim Hardt, CEO MA micro automation GmbH says, “Following the successful establishment and growth of MA micro automation within the attractive automation market for medical technology products, we are now opening a new chapter. Our partnership with Hitachi will not only strengthen our global competitive position, but we will also benefit from joint technological synergies and a global market presence.  We look forward to a synergistic partnership with Hitachi and JR Automation.”
Outline of MA micro automation    
Name
MA micro automation GmbH
Head Office
St. Leon-Rot, Germany
Representative
Joachim Hardt (CEO)
Outline of Business
Automation solutions within micro-assembly
Total no. of Employees:
Approx. 200 (As of April 2024)
Founded
2003
Revenues (2023)
€ 46.5 million
Website

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*1
“Siemens” is a registered trademark or trademark of Siemens Trademark GmbH & Co. KG in the U.S. and other countries.
*2
“Total Seamless Solution” is a registered trademark of Hitachi, Ltd. in the U.S. and Japan.
*3
Lumada: A collective term for solutions, services and technologies based on Hitachi’s advanced digital technologies for creating value from customers’ data accelerating digital innovation. https://www.hitachi.com/products/it/lumada/global/en/index.html
About JR AutomationEstablished in 1980, JR Automation is a leading provider of intelligent automated manufacturing technology solutions that solve customers’ key operational and productivity challenges. JR Automation serves customers across the globe in a variety of industries, including automotive, life sciences, aerospace, and more.  
In 2019, JR Automation was acquired by Hitachi, Ltd. In a strategic effort towards offering a seamless connection between the physical and cyber space for industrial manufacturers and distributers worldwide. With this partnership, JR Automation provides customers a unique, single-source solution for complete integration of their physical assets and data information, offering greater speed, flexibility, and efficiencies towards achieving their Industry 4.0 visions. JR Automation employs over 2,000 people at 21 manufacturing facilities in North America, Europe, and Asia.  For more information, please visit www.jrautomation.com.   
About Hitachi, Ltd.Hitachi drives Social Innovation Business, creating a sustainable society through the use of data and technology. We solve customers’ and society’s challenges with Lumada solutions leveraging IT, OT (Operational Technology) and products. Hitachi operates under the 3 business sectors of “Digital Systems & Services” – supporting our customers’ digital transformation; “Green Energy & Mobility” – contributing to a decarbonized society through energy and railway systems, and “Connective Industries” – connecting products through digital technology to provide solutions in various industries. Driven by Digital, Green, and Innovation, we aim for growth through co-creation with our customers. The company’s revenues as 3 sectors for fiscal year 2023 (ended March 31, 2024) totaled 8,564.3 billion yen, with 573 consolidated subsidiaries and approximately 270,000 employees worldwide. For more information on Hitachi, please visit the company’s website at https://www.hitachi.com.
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$10 million Artificial Intelligence Mathematical Olympiad Prize appoints further advisory committee members

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D. Sculley, Kevin Buzzard, Leo de Moura, Lester Mackey and Peter J. Liu appointed to the advisory committee for the Artificial Intelligence Mathematical Olympiad Prize.
LONDON, April 26, 2024 /PRNewswire/ — XTX Markets’ newly created Artificial Intelligence Mathematical Olympiad Prize (‘AIMO Prize’) is a $10mn challenge fund designed to spur the creation of a publicly shared AI model capable of winning a gold medal in the International Mathematical Olympiad (IMO).

XTX Markets is delighted to announce the appointment of five further advisory committee members. This group brings great expertise in machine learning, including D. Sculley, the CEO of Kaggle; Lester Mackey, a Principal Researcher at Microsoft Research and a Macarthur Fellow; and Peter J. Liu, a research scientist at Google DeepMind.
Prolific mathematicians Kevin Buzzard, who achieved a perfect score in the International Mathematical Olympiad, and Leo De Moura who is the Chief Architect for Lean, the automated reasoning tool, also join the advisory group.
They join the existing advisory committee members Terence Tao and Timothy Gowers, both winners of the Fields Medal, as well as Dan Roberts, Geoff Smith and Po-Shen Loh.
The AIMO Advisory Committee will support the development of the AIMO Prize, including advising on appropriate protocols and technical aspects, and designing the various competitions and prizes.
Simon Coyle, Head of Philanthropy at XTX Markets, commented:
“We are thrilled to complete the AIMO Advisory Committee with the appointments of D., Kevin, Leo, Lester and Peter. Together, they have enormous experience in machine learning and automated reasoning and are already bringing expertise and wisdom to the AIMO Prize. We look forward to announcing the winners of the AIMO’s first Progress Prize soon, and then publicly sharing the AI models to support the open and collaborative development of AI.”
Further information on the AIMO Prize
There will be a grand prize of $5mn for the first publicly shared AI model to enter an AIMO approved competition and perform at a standard equivalent to a gold medal in the IMO. There will also be a series of progress prizes, totalling up to $5mn, for publicly shared AI models that achieve key milestones towards the grand prize.
The first AIMO approved competition opened to participants in April 2024 on the Kaggle competition platform. The first progress prize focuses on problems pitched at junior and high-school level maths competitions. There is a total prize pot of $1.048m for the first progress prize, of which at least $254k will be awarded in July 2024, There will be a presentation of progress held in Bath, England in July 2024, as part of the 65th IMO.
For more information on the AIMO Prize visit: https://aimoprize.com/ or the competition page on Kaggle: https://www.kaggle.com/competitions/ai-mathematical-olympiad-prize/
Advisory Committee member profiles:
D. Sculley
D. is the CEO at Kaggle. Prior to joining Kaggle, he was a director at Google Brain, leading research teams working on robust, responsible, reliable and efficient ML and AI. In his career in ML, he has worked on nearly every aspect of machine learning, and has led both product and research teams including those on some of the most challenging business problems. Some of his well-known work involves ML technical debt, ML education, ML robustness, production-critical ML, and ML for scientific applications such as protein design.
Kevin Buzzard
Kevin a professor of pure mathematics at Imperial College London, specialising in algebraic number theory. As well as his research and teaching, he has a wide range of interests, including being Deputy Head of Pure Mathematics, Co-Director of a CDT and the department’s outreach champion. He is currently focusing on formal proof verification, including being an active participant in the Lean community. From October 2024, he will be leading a project to formalise a 21st century proof of Fermat’s Last Theorem. Before joining Imperial, some 20 years ago, he was a Junior Research Fellow at the University of Cambridge, where he had previously been named ‘Senior Wrangler’ (the highest scoring undergraduate mathematician). He was also a participant in the International Mathematical Olympiad, winning gold with a perfect score in 1987. He has been a visitor at the IAS in Princeton, a visiting lecturer at Harvard, has won several prizes both for research and teaching, and has given lectures all over the world.
Leo de Moura
Leo is a Senior Principal Applied Scientist in the Automated Reasoning Group at AWS. In his spare time, he dedicates himself to serving as the Chief Architect of the Lean FRO, a non-profit organization that he proudly co-founded alongside Sebastian Ullrich. He is also honoured to hold a position on the Board of Directors at the Lean FRO, where he actively contributes to its growth and development. Before joining AWS in 2023, he was a Senior Principal Researcher in the RiSE group at Microsoft Research, where he worked for 17 years starting in 2006. Prior to that, he worked as a Computer Scientist at SRI International. His research areas are automated reasoning, theorem proving, decision procedures, SAT and SMT. He is the main architect of several automated reasoning tools: Lean, Z3, Yices 1.0 and SAL. Leo’s work in automated reasoning has been acknowledged with a series of prestigious awards, including the CAV, Haifa, and Herbrand awards, as well as the Programming Languages Software Award by the ACM. Leo’s work has also been reported in the New York Times and many popular science magazines such as Wired, Quanta, and Nature News.
Lester Mackey
Lester Mackey is a Principal Researcher at Microsoft Research, where he develops machine learning methods, models, and theory for large-scale learning tasks driven by applications from climate forecasting, healthcare, and the social good. Lester moved to Microsoft from Stanford University, where he was an assistant professor of Statistics and, by courtesy, of Computer Science. He earned his PhD in Computer Science and MA in Statistics from UC Berkeley and his BSE in Computer Science from Princeton University. He co-organized the second place team in the Netflix Prize competition for collaborative filtering; won the Prize4Life ALS disease progression prediction challenge; won prizes for temperature and precipitation forecasting in the yearlong real-time Subseasonal Climate Forecast Rodeo; and received best paper, outstanding paper, and best student paper awards from the ACM Conference on Programming Language Design and Implementation, the Conference on Neural Information Processing Systems, and the International Conference on Machine Learning. He is a 2023 MacArthur Fellow, a Fellow of the Institute of Mathematical Statistics, an elected member of the COPSS Leadership Academy, and the recipient of the 2023 Ethel Newbold Prize.
Peter J. Liu
Peter J. Liu is a Research Scientist at Google DeepMind in the San Francisco Bay area, doing machine learning research with a specialisation in language models since 2015 starting in the Google Brain team. He has published and served as area chair in top machine learning and NLP conferences such as ICLR, ICML, NEURIPS, ACL and EMNLP. He also has extensive production experience, including launching the first deep learning model for Gmail Anti-Spam, and using neural network models to detect financial fraud for top banks. He has degrees in Mathematics and Computer Science from the University of Toronto.
About XTX Markets:
XTX Markets is a leading financial technology firm which partners with counterparties, exchanges and e-trading venues globally to provide liquidity in the Equity, FX, Fixed Income and Commodity markets. XTX has over 200 employees based in London, Paris, New York, Mumbai, Yerevan and Singapore. XTX is consistently a top 5 liquidity provider globally in FX (Euromoney 2018-present) and is also the largest European equities (systematic internaliser) liquidity provider (Rosenblatt FY: 2020-2023).
The company’s corporate philanthropy focuses on STEM education and maximum impact giving (alongside an employee matching programme). Since 2017, XTX has donated over £100mn to charities and good causes, establishing it as a major donor in the UK and globally.
In a changing world XTX Markets is at the forefront of making financial markets fairer and more efficient for all.
 

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