Beyond 5G networks are expected to distribute the computations from the cloud to multiple edge nodes, some of which should process both low-level baseband functions and high-level tasks, most notably AI/ML. These edge computing nodes will demand high-performance, re-programmability, and low-power, especially when located at the far-edges of the network. An attractive solution in meeting these needs is to utilize highly-complex SoC FPGAs, such as the state-of-the-art RFSoC or ACAP devices. As proposed in this work towards minimizing cost and power consumption of nodes, sophisticated SoC programming will enables us to execute in parallel the baseband and AI processes, i.e., to exploit a single device as an accelerator for the full range of ta...
Field Programmable Gate Arrays (FPGAs) are a new addition to the world of data center acceleration. ...
The Internet-of-Things (IoT) revolution has shaped a new application domain where low-power RISC arc...
In recent years, network bandwidth has increased at a rapid pace, moving from 10G, to 40G/100G, to 4...
In this paper we tangle with the mechanisms and solutions of transferring intelligence to the IoT ed...
abstract: As the Internet of Things continues to expand, not only must our computing power grow alon...
Large-scale field-programmable analog arrays (FPAA) have the potential to handle machine inference a...
In the last few years Internet of Things (ioT) applications are moving from the cloud-sensor paradig...
Machine learning (ML) algorithms are already transforming the way data are collected and processed i...
The forum provides a comprehensive full-stack (hardware and software) view of ML acceleration from c...
Deep Neural Networks (DNNs) deployment for IoT Edge applications requires strong skills in hardware ...
abstract: Edge computing is an emerging field that improves upon cloud computing by moving the servi...
Hardware-based acceleration is an extensive attempt to facilitate many computationally-intensive mat...
Deep Learning techniques have been successfully applied to solve many Artificial Intelligence (AI) a...
In recent years, the continuous development of artificial intelligence has largely been driven by al...
Neural networks have contributed significantly in applications that had been difficult to implement ...
Field Programmable Gate Arrays (FPGAs) are a new addition to the world of data center acceleration. ...
The Internet-of-Things (IoT) revolution has shaped a new application domain where low-power RISC arc...
In recent years, network bandwidth has increased at a rapid pace, moving from 10G, to 40G/100G, to 4...
In this paper we tangle with the mechanisms and solutions of transferring intelligence to the IoT ed...
abstract: As the Internet of Things continues to expand, not only must our computing power grow alon...
Large-scale field-programmable analog arrays (FPAA) have the potential to handle machine inference a...
In the last few years Internet of Things (ioT) applications are moving from the cloud-sensor paradig...
Machine learning (ML) algorithms are already transforming the way data are collected and processed i...
The forum provides a comprehensive full-stack (hardware and software) view of ML acceleration from c...
Deep Neural Networks (DNNs) deployment for IoT Edge applications requires strong skills in hardware ...
abstract: Edge computing is an emerging field that improves upon cloud computing by moving the servi...
Hardware-based acceleration is an extensive attempt to facilitate many computationally-intensive mat...
Deep Learning techniques have been successfully applied to solve many Artificial Intelligence (AI) a...
In recent years, the continuous development of artificial intelligence has largely been driven by al...
Neural networks have contributed significantly in applications that had been difficult to implement ...
Field Programmable Gate Arrays (FPGAs) are a new addition to the world of data center acceleration. ...
The Internet-of-Things (IoT) revolution has shaped a new application domain where low-power RISC arc...
In recent years, network bandwidth has increased at a rapid pace, moving from 10G, to 40G/100G, to 4...