For microprocessors used in real-time embedded systems, minimizing power consumption is difficult due to the timing constraints. Dynamic voltage scaling (DVS) has been incorporated into modern microprocessors as a promising technique for exploring the trade-off between energy consumption and system performance. However, it remains a challenge to realize the potential of DVS in unpredictable environments where the system workload cannot be accurately known. Addressing system-level power-aware design for DVS-enabled embedded controllers, this paper establishes an analytical model for the DVS system that encompasses multiple real-time control tasks. From this model, a feedback control based approach to power management is developed to reduce d...
Dynamic voltage scaling (DVS) is a powerful technique to reduce power dissipation in embedded system...
Dynamic voltage scaling (DVS) is a promising method for embedded systems to exploit multiple voltage...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
For microprocessors used in real-time embedded systems, minimizing power consumption is difficult du...
For microprocessors used in real-time embedded systems, minimizing power consumption is difficult du...
AbstractRecently, the tradeoff between low energy consumption and high fault-tolerance has attracted...
Dynamic voltage scaling (DVS) is a promising method for embedded systems to exploit multiple voltage...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
With power-related concerns becoming dominant aspects of hardware and software design, significant r...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
Abstract. Although energy saving has increasing importance for energy-limited microcontrollers, low ...
For real-time computer-controlled systems, control performances of tasks as well as energy consumpti...
Dynamic voltage scaling (DVS) is a powerful technique to reduce power dissipation in embedded system...
Dynamic voltage scaling (DVS) is a promising method for embedded systems to exploit multiple voltage...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
For microprocessors used in real-time embedded systems, minimizing power consumption is difficult du...
For microprocessors used in real-time embedded systems, minimizing power consumption is difficult du...
AbstractRecently, the tradeoff between low energy consumption and high fault-tolerance has attracted...
Dynamic voltage scaling (DVS) is a promising method for embedded systems to exploit multiple voltage...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
With power-related concerns becoming dominant aspects of hardware and software design, significant r...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...
Abstract. Although energy saving has increasing importance for energy-limited microcontrollers, low ...
For real-time computer-controlled systems, control performances of tasks as well as energy consumpti...
Dynamic voltage scaling (DVS) is a powerful technique to reduce power dissipation in embedded system...
Dynamic voltage scaling (DVS) is a promising method for embedded systems to exploit multiple voltage...
A crucial objective in battery operated embedded systems is to work under the minimal power consumpt...