Zobrazeno 1 - 10
of 10
pro vyhledávání: '"Shirish Bahirat"'
Autor:
Dalton Young, Yong Zou, Anthony A. Maciejewski, Jay Smith, Sudeep Pasricha, Jonathan Apodaca, Bhavesh Khemka, Adrian Ramirez, Shirish Bahirat, Mark A. Oxley, Luis Diego Briceno, Howard Jay Siegel
Publikováno v:
IEEE Transactions on Parallel and Distributed Systems. 26:2791-2805
Today’s data centers face the issue of balancing electricity use and completion times of their workloads. Rising electricity costs are forcing data center operators to either operate within an electricity budget or to reduce electricity use as much
Autor:
Sudeep Pasricha, Shirish Bahirat
Publikováno v:
ACM Transactions on Embedded Computing Systems. 13:1-33
With increasing application complexity and improvements in process technology, Chip MultiProcessors (CMPs) with tens to hundreds of cores on a chip are becoming a reality. Networks-on-Chip (NoCs) have emerged as scalable communication fabrics that ca
Autor:
Sudeep Pasricha, Shirish Bahirat
Publikováno v:
Electronics, Vol 5, Iss 2, p 21 (2016)
Electronics; Volume 5; Issue 2; Pages: 21
Electronics; Volume 5; Issue 2; Pages: 21
Network on Chip (NoC) architectures have emerged in recent years as scalable communication fabrics to enable high bandwidth data transfers in chip multiprocessors (CMPs). These interconnection architectures still need to conquer many challenges, e.g.
Deadline and energy constrained dynamic resource allocation in a heterogeneous computing environment
Autor:
Jonathan Apodaca, Howard Jay Siegel, B. Dalton Young, Anthony A. Maciejewski, Yong Zou, Sudeep Pasricha, Bhavesh Khemka, Jay Smith, Adrian Ramirez, Shirish Bahirat, Luis Diego Briceno
Publikováno v:
The Journal of Supercomputing. 63:326-347
Energy-efficient resource allocation within clusters and data centers is important because of the growing cost of energy. We study the problem of energy-constrained dynamic allocation of tasks to a heterogeneous cluster computing environment. Our goa
Autor:
Sudeep Pasricha, Shirish Bahirat
Publikováno v:
ISQED
Hybrid nanophotonic-electric networks-on-chip (NoC) have been recently proposed to overcome the challenges of high data transfer latencies and significant power dissipation in traditional electrical NoCs. But hybrid NoCs with nanophotonic guided wave
Autor:
Sudeep Pasricha, Shirish Bahirat
Publikováno v:
ISQED
Hybrid nanophotonic-electric networks-on-chip (NoC) have been recently proposed to overcome the challenges of significant power dissipation and high data transfer latencies in traditional electrical NoCs. However, with increasing embedded application
Autor:
Sudeep Pasricha, Bhavesh Khemka, Anthony A. Maciejewski, Dalton Young, Young Zou, Shirish Bahirat, Jonathan Apodaca, Adrian Ramirez, Howard Jay Siegel, Luis Diego Briceno, Jay Smith
Publikováno v:
AICCSA
In a heterogeneous environment, uncertainty in system parameters may cause performance features to degrade considerably. It then becomes necessary to design a system that is robust. Robustness can be defined as the degree to which a system can functi
Autor:
Luis Diego Briceno, Shirish Bahirat, Howard Jay Siegel, Yong Zou, Adrian Ramirez, Jonathan Apodaca, Anthony A. Maciejewski, Jay Smith, Sudeep Pasricha, B. Dalton Young, Bhavesh Khemka
Publikováno v:
ICPP Workshops
Energy-efficient resource allocation within clusters and data centers is important because of the growing cost of energy. We study the problem of energy-constrained dynamic allocation of tasks to a heterogeneous cluster computing environment. Our goa
Autor:
Sudeep Pasricha, Shirish Bahirat
Publikováno v:
ISQED
Multiple use-case chip multiprocessor (CMP) applications require adaptive on-chip communication fabrics to cope with changing use-case performance needs. Networks-on-chip (NoC) have recently gained popularity as scalable and adaptive on-chip communic
Autor:
Sudeep Pasricha, Shirish Bahirat
Publikováno v:
CODES+ISSS
Increasing application complexity and improvements in process technology have today enabled chip multiprocessors (CMPs) with tens to hundreds of cores on a chip. Networks on Chip (NoCs) have emerged as scalable communication fabrics that can support