The use of high-end multicore processors today can incur high power density with significant variability in spatial and temporal usage of resources by workloads. This situation leads to power and temperature hotspots, which in turn may lead to non-uniform ageing and accelerated chip failure. These drawbacks can be mitigated by online tuning of system performance and adopting closed-loop thermal and reliability management policies. The development and evaluation of these policies cannot be performed solely on real hardware - due to observability and flexibility limitations or just by relying on trace-driven simulation, due to dependencies present among power, thermal effects, reliability and performance. We present a complete and virtual pla...
Today’s designs are being shaped by the challenges of nano-CMOS technologies: increased power densit...
The continuous advance in technology enables the design of more complex embedded systems making use ...
The continuous advance in technology enables the design of more complex embedded systems making use ...
The use of high-end multicore processors today can incur high power density with significant variabi...
The use of high-end multicore processors today can incur high power density with significant variabi...
High temperatures and large thermal variations on the die create severe challenges in system reliabi...
As result of technology scaling, single-chip multi-core power density increases and its spatial and ...
As result of technology scaling, single-chip multi-core power density increases and its spatial and ...
As result of technology scaling, single-chip multi-core power density increases and its spatial and ...
Temperature-induced reliability issues are among the major chal-lenges for multicore architectures. ...
With technological advances, the number of cores integrated on a chip is increasing. This, in turn i...
With technological advances, the number of cores integrated on a chip is increasing. This, in turn i...
With technological advances, the number of cores integrated on a chip is increasing. This, in turn i...
none4noHigh-end multicore processors are characterized by high power density with significant spatia...
Reliable on-chip power delivery is a challenging design task for sub-100nm and below VLSI technologi...
Today’s designs are being shaped by the challenges of nano-CMOS technologies: increased power densit...
The continuous advance in technology enables the design of more complex embedded systems making use ...
The continuous advance in technology enables the design of more complex embedded systems making use ...
The use of high-end multicore processors today can incur high power density with significant variabi...
The use of high-end multicore processors today can incur high power density with significant variabi...
High temperatures and large thermal variations on the die create severe challenges in system reliabi...
As result of technology scaling, single-chip multi-core power density increases and its spatial and ...
As result of technology scaling, single-chip multi-core power density increases and its spatial and ...
As result of technology scaling, single-chip multi-core power density increases and its spatial and ...
Temperature-induced reliability issues are among the major chal-lenges for multicore architectures. ...
With technological advances, the number of cores integrated on a chip is increasing. This, in turn i...
With technological advances, the number of cores integrated on a chip is increasing. This, in turn i...
With technological advances, the number of cores integrated on a chip is increasing. This, in turn i...
none4noHigh-end multicore processors are characterized by high power density with significant spatia...
Reliable on-chip power delivery is a challenging design task for sub-100nm and below VLSI technologi...
Today’s designs are being shaped by the challenges of nano-CMOS technologies: increased power densit...
The continuous advance in technology enables the design of more complex embedded systems making use ...
The continuous advance in technology enables the design of more complex embedded systems making use ...