International audienceWe consider a Dynamic Voltage and Frequency Scaling (DVFS) processor executing jobs with obsolescence deadlines: A job becomes obsolete and is removed from the system if it is not completed before its deadline. The objective is to design a dynamic speed policy for the processor that minimizes its average energy consumption plus an obsolescence cost per deadline miss. Under Poisson arrivals and exponentially distributed deadlines and job sizes, we show that this problem can be modeled as a continuous time Markov decision process (MDP) with unbounded state space and unbounded rates. While this MDP admits a continuous time optimality equation for its average cost, the standard uniformization approach is not applicable. In...
As semiconductor manufacturing technology scales to smaller device sizes, the power consumption of c...
International audienceA key objective in the management of modern computer systems consists in minim...
In this paper, we study a system where the speed of a processor depends on the current number of job...
International audienceWe consider a Dynamic Voltage and Frequency Scaling (DVFS) processor executing...
International audienceThis paper proposes a Discrete Time Markov Decision Process (MDP) approach to ...
This paper proposes a Markov Decision Process (MDP) approach to compute the optimal on-line speed sc...
This paper proposes a Discrete Time Markov Decision Process (MDP) approach to compute the optimal on...
This paper proposes a Markov Decision Process (MDP) approach to compute theoptimal on-line speed sca...
International audienceThis paper presents a discrete time Markov Decision Process (MDP) to compute t...
International audienceDynamic Voltage and Frequency Scaling (DVFS) involves adjusting the speed to m...
Many multicore processors are capable of decreasing the voltage and clock frequency to save energy a...
Computers can reduce their power consumption by decreasing their speed using Dynamic Voltage and Fre...
Power management techniques are necessary to save power in the microprocessor. By changing the frequ...
Many modern microprocessors allow the speed/frequency to be set dynamically. The general goal is to ...
We first consider online speed scaling algorithms to minimize the energy used subject to the constra...
As semiconductor manufacturing technology scales to smaller device sizes, the power consumption of c...
International audienceA key objective in the management of modern computer systems consists in minim...
In this paper, we study a system where the speed of a processor depends on the current number of job...
International audienceWe consider a Dynamic Voltage and Frequency Scaling (DVFS) processor executing...
International audienceThis paper proposes a Discrete Time Markov Decision Process (MDP) approach to ...
This paper proposes a Markov Decision Process (MDP) approach to compute the optimal on-line speed sc...
This paper proposes a Discrete Time Markov Decision Process (MDP) approach to compute the optimal on...
This paper proposes a Markov Decision Process (MDP) approach to compute theoptimal on-line speed sca...
International audienceThis paper presents a discrete time Markov Decision Process (MDP) to compute t...
International audienceDynamic Voltage and Frequency Scaling (DVFS) involves adjusting the speed to m...
Many multicore processors are capable of decreasing the voltage and clock frequency to save energy a...
Computers can reduce their power consumption by decreasing their speed using Dynamic Voltage and Fre...
Power management techniques are necessary to save power in the microprocessor. By changing the frequ...
Many modern microprocessors allow the speed/frequency to be set dynamically. The general goal is to ...
We first consider online speed scaling algorithms to minimize the energy used subject to the constra...
As semiconductor manufacturing technology scales to smaller device sizes, the power consumption of c...
International audienceA key objective in the management of modern computer systems consists in minim...
In this paper, we study a system where the speed of a processor depends on the current number of job...