Most modern mobile cyber-physical systems such as smartphones come equipped with multi-processor systems-on-chip (MPSoCs) with variant computing capacity both to cater to performance requirements and reduce power consumption when executing an application. In this paper, we propose a novel approach to dynamic voltage and frequency scaling (DVFS) on CPU, GPU and RAM in a mobile MPSoC, which caters to the performance requirements of the executing application while consuming low power. We evaluate our methodology on a real hardware platform, Odroid XU4, and the experimental results prove the approach to be 26% more power-efficient and 21% more thermal-efficient compared to the state-of-the-art system
In the world, 70−80% of the people directly or indirectly depend on battery operated devices like mo...
With the development of modern smartphones, mobile devices have become ubiquitous in our daily live...
Abstract—A crucial objective in battery operated embedded systems is to work under the minimal power...
Most modern mobile cyber-physical systems such as smartphones come equipped with multi-processor sys...
Most modern mobile cyber-physical systems such as smartphones come equipped with multi-processor sys...
Low power mobile computing systems such as smartphones and wearables have become an integral part of...
Games have emerged as one of the most popular applications on mobile platforms. Recent platforms are...
Memory significantly affects the power consumption of embedded systems as well as performance. CPU f...
Dynamic voltage and frequency scaling (DVFS) mechanisms have been developed for years to decrease th...
One of the fundamental challenges to contemporary mobile platforms deploying heterogeneous CPU-GPU b...
One of the fundamental challenges to contemporary mobile platforms deploying heterogeneous CPU-GPU b...
Heterogeneous Multiprocessor System-on-Chip (MPSoC) are progressively becoming predominant in most m...
Energy management is a problem of all types of computing devices. For example, short battery life is...
Power is an important design constraint for all nomadic and tethered devices as mobile phones or med...
The ever-increasing computational workload enforces new design approaches for Hardware (HW) and Soft...
In the world, 70−80% of the people directly or indirectly depend on battery operated devices like mo...
With the development of modern smartphones, mobile devices have become ubiquitous in our daily live...
Abstract—A crucial objective in battery operated embedded systems is to work under the minimal power...
Most modern mobile cyber-physical systems such as smartphones come equipped with multi-processor sys...
Most modern mobile cyber-physical systems such as smartphones come equipped with multi-processor sys...
Low power mobile computing systems such as smartphones and wearables have become an integral part of...
Games have emerged as one of the most popular applications on mobile platforms. Recent platforms are...
Memory significantly affects the power consumption of embedded systems as well as performance. CPU f...
Dynamic voltage and frequency scaling (DVFS) mechanisms have been developed for years to decrease th...
One of the fundamental challenges to contemporary mobile platforms deploying heterogeneous CPU-GPU b...
One of the fundamental challenges to contemporary mobile platforms deploying heterogeneous CPU-GPU b...
Heterogeneous Multiprocessor System-on-Chip (MPSoC) are progressively becoming predominant in most m...
Energy management is a problem of all types of computing devices. For example, short battery life is...
Power is an important design constraint for all nomadic and tethered devices as mobile phones or med...
The ever-increasing computational workload enforces new design approaches for Hardware (HW) and Soft...
In the world, 70−80% of the people directly or indirectly depend on battery operated devices like mo...
With the development of modern smartphones, mobile devices have become ubiquitous in our daily live...
Abstract—A crucial objective in battery operated embedded systems is to work under the minimal power...