Power management through dynamic core, cache and frequency adaptation is becoming a necessity in today’s power-constrained many-core environments. Unfortunately, as core count grows, the complexity of both the adaptation hardware and the power management algorithms increases exponentially. This calls for hierarchical solutions, such as on-chip voltage regulators per-tile rather than per-core, along with multi-level power management. As power-driven adaptation of shared resources affects multiple threads at once, the efficiency in a tile-organized many-core processor architecture hinges on the ability to co-schedule compatible threads to tiles in tandem with hardware adaptations per tile and per core. In this paper, we propose a two-tier hi...
With the current technology trends, the number of computers and computation demand is increasing dra...
The inactive part of a chip, termed as Dark Silicon, is extending rapidly by introducing new technol...
Reducing the energy expended to carry out a computational task is important. In this work, we explor...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Modern microprocessors are increasingly power-constrained as a result of slowed supply voltage scali...
Modern microprocessors are increasingly power-constrained as a result of slowed supply voltage scali...
Modern microprocessors are increasingly power-constrained as a result of slowed supply voltage scali...
Modern microprocessors are increasingly power-constrained as a result of slowed supply voltage scali...
Energy consumption has become a core concern in computing systems. In this context, power capping is...
With continued scaling of CMOS technology, power, thermal, and reliability issues threaten to signif...
With the current technology trends, the number of computers and computation demand is increasing dra...
The inactive part of a chip, termed as Dark Silicon, is extending rapidly by introducing new technol...
Reducing the energy expended to carry out a computational task is important. In this work, we explor...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Power management through dynamic core, cache and frequency adaptation is becoming a necessity in tod...
Modern microprocessors are increasingly power-constrained as a result of slowed supply voltage scali...
Modern microprocessors are increasingly power-constrained as a result of slowed supply voltage scali...
Modern microprocessors are increasingly power-constrained as a result of slowed supply voltage scali...
Modern microprocessors are increasingly power-constrained as a result of slowed supply voltage scali...
Energy consumption has become a core concern in computing systems. In this context, power capping is...
With continued scaling of CMOS technology, power, thermal, and reliability issues threaten to signif...
With the current technology trends, the number of computers and computation demand is increasing dra...
The inactive part of a chip, termed as Dark Silicon, is extending rapidly by introducing new technol...
Reducing the energy expended to carry out a computational task is important. In this work, we explor...