Finding ways to distribute workloads to each processor core and efficiently reduce power consumption is of vital importance, especially for real-time systems. In this paper, a novel scheduling algorithm is proposed for real-time multicore systems to balance the computation loads and save power. The developed algorithm simultaneously considers multiple criteria, a novel factor, and task deadline, and is called power and deadline-aware multicore scheduling (PDAMS). Experiment results show that the proposed algorithm can greatly reduce energy consumption by up to 54.2% and the deadline times missed, as compared to the other scheduling algorithms outlined in this paper
International audienceEnergy consumption is an important concern when designing embedded systems. St...
International audienceEnergy consumption is an important concern when designing embedded systems. St...
AbstractPower aware computing has become popular recently because of the vast application of the por...
Copyright © 2014 Keng-Mao Cho et al.This is an open access article distributed under the Creative Co...
This article presents a survey of energy-aware scheduling algorithms proposed for real-time systems....
The use of real-time systems is growing at an increasing rate. This raises the power efficiency as t...
The use of real-time systems is growing at an increasing rate. This raises the power efficiency as t...
This article presents a survey of energy-aware scheduling algorithms proposed for real-time systems....
This article presents a survey of energy-aware scheduling algorithms proposed for real-time systems....
The use of real-time systems is growing at an increasing rate. This raises the power efficiency as t...
This article presents a survey of energy-aware scheduling algorithms proposed for real-time systems....
This article presents a survey of energy-aware scheduling algorithms proposed for real-time systems....
The power consumption of modern high-performance pro-cessors is becoming a major concern because it ...
International audienceEnergy consumption is an important concern when designing embedded systems. St...
International audienceEnergy consumption is an important concern when designing embedded systems. St...
International audienceEnergy consumption is an important concern when designing embedded systems. St...
International audienceEnergy consumption is an important concern when designing embedded systems. St...
AbstractPower aware computing has become popular recently because of the vast application of the por...
Copyright © 2014 Keng-Mao Cho et al.This is an open access article distributed under the Creative Co...
This article presents a survey of energy-aware scheduling algorithms proposed for real-time systems....
The use of real-time systems is growing at an increasing rate. This raises the power efficiency as t...
The use of real-time systems is growing at an increasing rate. This raises the power efficiency as t...
This article presents a survey of energy-aware scheduling algorithms proposed for real-time systems....
This article presents a survey of energy-aware scheduling algorithms proposed for real-time systems....
The use of real-time systems is growing at an increasing rate. This raises the power efficiency as t...
This article presents a survey of energy-aware scheduling algorithms proposed for real-time systems....
This article presents a survey of energy-aware scheduling algorithms proposed for real-time systems....
The power consumption of modern high-performance pro-cessors is becoming a major concern because it ...
International audienceEnergy consumption is an important concern when designing embedded systems. St...
International audienceEnergy consumption is an important concern when designing embedded systems. St...
International audienceEnergy consumption is an important concern when designing embedded systems. St...
International audienceEnergy consumption is an important concern when designing embedded systems. St...
AbstractPower aware computing has become popular recently because of the vast application of the por...