In this brief, we propose a novel real-time loop-scheduling technique to minimize energy consumption via dynamic voltage scaling (DVS) for applications with loops considering transition overhead. One algorithm, dynamic voltage loop scheduling (DVLS), is designed integrating with DVS. In DVLS, we repeatedly regroup a loop based on rotation scheduling and decrease the energy by DVS as much as possible within a timing constraint. We conduct the experiments on a set of digital signal processing benchmarks. The experimental results show that DVLS achieves big energy saving compared with the traditional time-performance-oriented scheduling algorithm.Department of Computin
Dynamic voltage scheduling has been proven to be one of the most effective ways to reduce the power ...
In this paper, we combine coarse-grained software pipelining with DVS (Dynamic Voltage/Frequency Sca...
Dynamic voltage scaling (DVS) is a technique used in modern microprocessors operated by battery to s...
Abstract — In this paper, we propose a novel real-time loop scheduling technique to minimize energy ...
This paper applies the concept of real-time process scheduling to a Dynamic Voltage Scaling (DVS) mi...
As the energy consumption of multi-core systems becomes increasingly prominent, it's a challenge to ...
Abstract Dynamic Voltage Scaling (DVS) is an effective technique for reducing energy consumption in...
Abstract—With the shrinking of technology feature sizes, the share of leakage in total power consump...
In recent years, there has been a rapid and wide spread of non-traditional computing platforms, espe...
Dynamic voltage scaling (DVS) is a well-known low power design technique that reduces the processor ...
Dynamic voltage scaling (DVS) has been adopted in many com-puting systems to reduce the energy consu...
Dynamic voltage scaling (DVS) is a well-known low power design technique that reduces the processor ...
While Dynamic Voltage Scaling (DVS) is an efficient tech-nique in reducing the dynamic energy consum...
Abstract — Not only system performance but also energy ef-ficiency is critically important for embed...
Power-efficient design of multimedia applications becomes more important as they are used in-creasin...
Dynamic voltage scheduling has been proven to be one of the most effective ways to reduce the power ...
In this paper, we combine coarse-grained software pipelining with DVS (Dynamic Voltage/Frequency Sca...
Dynamic voltage scaling (DVS) is a technique used in modern microprocessors operated by battery to s...
Abstract — In this paper, we propose a novel real-time loop scheduling technique to minimize energy ...
This paper applies the concept of real-time process scheduling to a Dynamic Voltage Scaling (DVS) mi...
As the energy consumption of multi-core systems becomes increasingly prominent, it's a challenge to ...
Abstract Dynamic Voltage Scaling (DVS) is an effective technique for reducing energy consumption in...
Abstract—With the shrinking of technology feature sizes, the share of leakage in total power consump...
In recent years, there has been a rapid and wide spread of non-traditional computing platforms, espe...
Dynamic voltage scaling (DVS) is a well-known low power design technique that reduces the processor ...
Dynamic voltage scaling (DVS) has been adopted in many com-puting systems to reduce the energy consu...
Dynamic voltage scaling (DVS) is a well-known low power design technique that reduces the processor ...
While Dynamic Voltage Scaling (DVS) is an efficient tech-nique in reducing the dynamic energy consum...
Abstract — Not only system performance but also energy ef-ficiency is critically important for embed...
Power-efficient design of multimedia applications becomes more important as they are used in-creasin...
Dynamic voltage scheduling has been proven to be one of the most effective ways to reduce the power ...
In this paper, we combine coarse-grained software pipelining with DVS (Dynamic Voltage/Frequency Sca...
Dynamic voltage scaling (DVS) is a technique used in modern microprocessors operated by battery to s...