The article discusses the emerging non-von Neumann computer architectures and their integration in the computing continuum for supporting modern distributed applications, including artificial intelligence, big data, and scientific computing. It provides a detailed summary of the available and emerging non-von Neumann architectures, which range from power-efficient single-board accelerators to quantum and neuromorphic computers. Furthermore, it explores their potential benefits for revolutionizing data processing and analysis in various societal, science, and industry fields. The paper provides a detailed analysis of the most widely used class of distributed applications and discusses the difficulties in their execution over the computing co...
Due to the end of Moore's Law and Dennard Scaling, performance gains in general-purpose architecture...
Moore’s Law, which stated that “the complexity for minimum component costs has increased at a rate o...
Abstract Quantum computing promises to be the next disruptive technology, with numero...
The article discusses the emerging non-von Neumann computer architectures and their integration in t...
The future of computing is at crossroads. The technological advances that have sustained the exponen...
The end of Moore's Law is a cliche that none the less is a hard barrier to future scaling of high pe...
International audienceModern computation based on von Neumann architecture is now a mature cutting-e...
The title of this special section, Parallel and Distributed Computing Techniques for Non-Von Neumann...
For the past 50 years, we have based most (if not all) of the world’s computers on the von Neumann m...
The progress of hardware integration technology allows the cost-efficient implementation of innovati...
Modern computation based on the von Neumann architecture is today a mature cutting-edge science. In ...
Continuum computer architecture (CCA) is a non-von Neumann architecture that offers an alternative t...
In the Beyond Moore Law era, with increasing edge intelligence, domain-specific computing embracing ...
Development of highly intelligent computers requires a conceptual foundation that will overcome th...
In this chapter I have provided a brief and somewhat superficial survey of the specialized hardware ...
Due to the end of Moore's Law and Dennard Scaling, performance gains in general-purpose architecture...
Moore’s Law, which stated that “the complexity for minimum component costs has increased at a rate o...
Abstract Quantum computing promises to be the next disruptive technology, with numero...
The article discusses the emerging non-von Neumann computer architectures and their integration in t...
The future of computing is at crossroads. The technological advances that have sustained the exponen...
The end of Moore's Law is a cliche that none the less is a hard barrier to future scaling of high pe...
International audienceModern computation based on von Neumann architecture is now a mature cutting-e...
The title of this special section, Parallel and Distributed Computing Techniques for Non-Von Neumann...
For the past 50 years, we have based most (if not all) of the world’s computers on the von Neumann m...
The progress of hardware integration technology allows the cost-efficient implementation of innovati...
Modern computation based on the von Neumann architecture is today a mature cutting-edge science. In ...
Continuum computer architecture (CCA) is a non-von Neumann architecture that offers an alternative t...
In the Beyond Moore Law era, with increasing edge intelligence, domain-specific computing embracing ...
Development of highly intelligent computers requires a conceptual foundation that will overcome th...
In this chapter I have provided a brief and somewhat superficial survey of the specialized hardware ...
Due to the end of Moore's Law and Dennard Scaling, performance gains in general-purpose architecture...
Moore’s Law, which stated that “the complexity for minimum component costs has increased at a rate o...
Abstract Quantum computing promises to be the next disruptive technology, with numero...