Network-on-Chips (NoCs) have been widely used as a scalable communication solution in the design of multiprocessor system-on-chips (MPSoCs). NoCs enable communications between on-chip Intellectual Property (IP) cores and allow processing cores to achieve higher performance by outsourcing their communication tasks. NoC paradigm is based on the idea of resource sharing in which hardware resources, including buffers, communication links, routers, etc., are shared between all IPs of the MPSoC. In fact, the data being routed by each NoC router might not be related to the router’s local core. Such a utilization-centric design approach can raise security issues in NoC-based designs, e.g., integrity and confidentiality of the data being rout...
Abstract—In multiprocessor system-on-chip (MPSoC), a CPU can access physical resources, such as on-c...
Malicious applications target Multi-Processors System-on-Chip (MPSoCs) to capture sensitive informat...
Abstract—In the future almost every consumer electronics device will be connected to an ecosystem of...
Recent advancements in integrated circuit technology have led to the integration of multiple embedde...
In the context of the overall embedded System-on-Chip (SoC)/device security, security-awareness is t...
MHRD PhD scholarshipWith Multiprocessor Systems-on-Chips (MPSoCs) pervading our lives, security issu...
The growing number of applications and processing units in modern Multiprocessor Systems-on-Chips (M...
With increasing integration in SoCs, the Network-on-Chip (NoC) connecting cores and accelerators is ...
Network-on-chip facilitates glueless interconnection of various on-chip components in the forthcomin...
This paper addresses a new kind of security vulnerable spots introduced by Network-on-chip (NoC) use...
\u3cp\u3eAfter gaining popularity as a method of authentication in the form of smart cards, electron...
As computing and communications increasingly pervade our lives, security and protection of sensitive...
Mobile devices are in roles where the integrity and confidentiality of their apps and data are of pa...
Summarization: In the future almost every consumer electronics device will be connected to an ecosys...
Abstract—In multiprocessor system-on-chip (MPSoC), a CPU can access physical resources, such as on-c...
Malicious applications target Multi-Processors System-on-Chip (MPSoCs) to capture sensitive informat...
Abstract—In the future almost every consumer electronics device will be connected to an ecosystem of...
Recent advancements in integrated circuit technology have led to the integration of multiple embedde...
In the context of the overall embedded System-on-Chip (SoC)/device security, security-awareness is t...
MHRD PhD scholarshipWith Multiprocessor Systems-on-Chips (MPSoCs) pervading our lives, security issu...
The growing number of applications and processing units in modern Multiprocessor Systems-on-Chips (M...
With increasing integration in SoCs, the Network-on-Chip (NoC) connecting cores and accelerators is ...
Network-on-chip facilitates glueless interconnection of various on-chip components in the forthcomin...
This paper addresses a new kind of security vulnerable spots introduced by Network-on-chip (NoC) use...
\u3cp\u3eAfter gaining popularity as a method of authentication in the form of smart cards, electron...
As computing and communications increasingly pervade our lives, security and protection of sensitive...
Mobile devices are in roles where the integrity and confidentiality of their apps and data are of pa...
Summarization: In the future almost every consumer electronics device will be connected to an ecosys...
Abstract—In multiprocessor system-on-chip (MPSoC), a CPU can access physical resources, such as on-c...
Malicious applications target Multi-Processors System-on-Chip (MPSoCs) to capture sensitive informat...
Abstract—In the future almost every consumer electronics device will be connected to an ecosystem of...