In this paper we investigate and contrast two techniques to maximize the performance of multi-core processors under thermal constraints. The first technique is a distributed dynamic thermal management system that maximizes the total performance without exceeding given thermal constraints. In our scheme, each core adjusts its operating parameters, i.e., frequency and voltage, according to its temperature which is measured using integrated thermal sensors. We propose a novel controller that dynamically adapts the system to simultaneously avoid timing errors and thermal violations. For comparison purposes, we implement a second technique based on a runtime centralized, optimal system that uses combinatorial optimization techniques to calculate...
Editor's note: Thermal management in high-performance multicore platforms has become exceedingly com...
We are entering the era of thermally-bound computing: Advanced and costly cooling solutions are need...
We introduce a novel algorithm for dynamic energy management (DEM) under performance constraints in ...
In this paper we investigate and contrast two techniques to maximize the performance of multi-core p...
In this paper we investigate and contrast two techniques to maxi-mize the performance of multi-core ...
Over the past decades, the shrinking transistor size enabled more transistors to be integrated into ...
Abstract — Clock frequency and transistor density increases have resulted in elevated chip temperatu...
With continuous IC(Integrated Circuit) technology size scaling, more and more transistors are integr...
Abstract—With the high integration density and complexity of the modern multi-core platform, thermal...
High-performance desktop and server processor design is hampered by constraints on chip power, tempe...
With the increasing clock rate and transistor count of to-day’s microprocessors, power dissipation i...
AbstractMulti-core processors support all modern electronic devices nowadays. However, power managem...
Fueled by increasing human appetite for high computing performance, semiconductor technology has now...
Multi-core processors support all modern electronic devices nowadays. However, temperature and perfo...
Multi-core architectures are a promising paradigm to exploit the huge integration density reached by...
Editor's note: Thermal management in high-performance multicore platforms has become exceedingly com...
We are entering the era of thermally-bound computing: Advanced and costly cooling solutions are need...
We introduce a novel algorithm for dynamic energy management (DEM) under performance constraints in ...
In this paper we investigate and contrast two techniques to maximize the performance of multi-core p...
In this paper we investigate and contrast two techniques to maxi-mize the performance of multi-core ...
Over the past decades, the shrinking transistor size enabled more transistors to be integrated into ...
Abstract — Clock frequency and transistor density increases have resulted in elevated chip temperatu...
With continuous IC(Integrated Circuit) technology size scaling, more and more transistors are integr...
Abstract—With the high integration density and complexity of the modern multi-core platform, thermal...
High-performance desktop and server processor design is hampered by constraints on chip power, tempe...
With the increasing clock rate and transistor count of to-day’s microprocessors, power dissipation i...
AbstractMulti-core processors support all modern electronic devices nowadays. However, power managem...
Fueled by increasing human appetite for high computing performance, semiconductor technology has now...
Multi-core processors support all modern electronic devices nowadays. However, temperature and perfo...
Multi-core architectures are a promising paradigm to exploit the huge integration density reached by...
Editor's note: Thermal management in high-performance multicore platforms has become exceedingly com...
We are entering the era of thermally-bound computing: Advanced and costly cooling solutions are need...
We introduce a novel algorithm for dynamic energy management (DEM) under performance constraints in ...