Parallel Computer

CMAPS: A Cosynthesis Methodology for Application-Oriented General-Purpose Parallel Systems

Industrial Automation / Computer Hardware / System Design / Computer Software / Requirements Analysis / Requirement analysis / Parallel Computer / Hardware Software Codesign / Parallel Systems / Directed Acyclic Graph / Requirement analysis / Parallel Computer / Hardware Software Codesign / Parallel Systems / Directed Acyclic Graph

An efficient parallel algorithm for LISSOM neural network

Cognitive Science / Distributed Computing / Parallel Computing / Neural Network / Parallel Algorithm / Parallel Computer

An efficient parallel algorithm for LISSOM neural network

Cognitive Science / Distributed Computing / Parallel Computing / Neural Network / Parallel Algorithm / Parallel Computer

An efficient parallel algorithm for LISSOM neural network

Cognitive Science / Distributed Computing / Parallel Computing / Neural Network / Parallel Algorithm / Parallel Computer

Scalable Load Balancing Techniques for Parallel Computers

Distributed Computing / Architecture / Network / Parallel & Distributed Computing / Multiprocessor Scheduling / Partition / Parallel Computation / HyperCube / Parallel Algorithm / Load Balance / Parallel Computer / Partition / Parallel Computation / HyperCube / Parallel Algorithm / Load Balance / Parallel Computer

Scalable Load Balancing Techniques for Parallel Computers

Distributed Computing / Architecture / Network / Parallel & Distributed Computing / Multiprocessor Scheduling / Partition / Parallel Computation / HyperCube / Parallel Algorithm / Load Balance / Parallel Computer / Partition / Parallel Computation / HyperCube / Parallel Algorithm / Load Balance / Parallel Computer

Three-dimensional finite-difference bidomain modeling of homogeneous cardiac tissue on a data-parallel computer

Algorithms / Cardiology / Biomedical Engineering / Parallel Processing / Humans / Computer Simulation / Heart / Finite Difference / Finite Difference Method / Three Dimensional / Parallel Computer / Electrical And Electronic Engineering / Finite Difference Methods / Computing Methodologies / Computer Simulation / Heart / Finite Difference / Finite Difference Method / Three Dimensional / Parallel Computer / Electrical And Electronic Engineering / Finite Difference Methods / Computing Methodologies

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Engineering / Algorithms / Materials Science / Solar Cell / Performance / Parallel Processing / Ab initio calculations / Micro and Nanosystems / DFT calculation / Physical sciences / Electronic Structure / Accuracy / Materials Sciences / Processors / Code Optimization / Three Dimensional / Parallel Computer / Large Scale / Atoms / Electronic Structure Calculation / Boundary Effect / Function optimization / Divide and Conquer / Lawrence Berkeley Laboratory / Parallel Processing / Ab initio calculations / Micro and Nanosystems / DFT calculation / Physical sciences / Electronic Structure / Accuracy / Materials Sciences / Processors / Code Optimization / Three Dimensional / Parallel Computer / Large Scale / Atoms / Electronic Structure Calculation / Boundary Effect / Function optimization / Divide and Conquer / Lawrence Berkeley Laboratory

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Engineering / Algorithms / Materials Science / Solar Cell / Performance / Parallel Processing / Ab initio calculations / Micro and Nanosystems / DFT calculation / Physical sciences / Electronic Structure / Accuracy / Materials Sciences / Processors / Code Optimization / Three Dimensional / Parallel Computer / Large Scale / Atoms / Electronic Structure Calculation / Boundary Effect / Function optimization / Divide and Conquer / Lawrence Berkeley Laboratory / Parallel Processing / Ab initio calculations / Micro and Nanosystems / DFT calculation / Physical sciences / Electronic Structure / Accuracy / Materials Sciences / Processors / Code Optimization / Three Dimensional / Parallel Computer / Large Scale / Atoms / Electronic Structure Calculation / Boundary Effect / Function optimization / Divide and Conquer / Lawrence Berkeley Laboratory

Optimization of a kinetic laser–plasma interaction code for large parallel systems

Cognitive Science / Distributed Computing / Parallel Computing / Kinetics / Data Management / Particle in Cell / Parallel Computer / High performance computer / Domain Decomposition / Parallel Systems / Particle in Cell / Parallel Computer / High performance computer / Domain Decomposition / Parallel Systems

SERA-IO: Integrating Energy Consciousness into Parallel I/O Middleware

Power Management / System Design / Middleware / Energy Saving / High End Computing / Experimental Evaluation / Dynamic Voltage and Frequency Scaling / Energy efficient / Parallel Computer / Large Scale / High performance computer / Experimental Evaluation / Dynamic Voltage and Frequency Scaling / Energy efficient / Parallel Computer / Large Scale / High performance computer

SERA-IO: Integrating Energy Consciousness into Parallel I/O Middleware

Power Management / System Design / Middleware / Energy Saving / High End Computing / Experimental Evaluation / Dynamic Voltage and Frequency Scaling / Energy efficient / Parallel Computer / Large Scale / High performance computer / Experimental Evaluation / Dynamic Voltage and Frequency Scaling / Energy efficient / Parallel Computer / Large Scale / High performance computer

SERA-IO: Integrating Energy Consciousness into Parallel I/O Middleware

Power Management / System Design / Middleware / Energy Saving / High End Computing / Experimental Evaluation / Dynamic Voltage and Frequency Scaling / Energy efficient / Parallel Computer / Large Scale / High performance computer / Experimental Evaluation / Dynamic Voltage and Frequency Scaling / Energy efficient / Parallel Computer / Large Scale / High performance computer

SERA-IO: Integrating Energy Consciousness into Parallel I/O Middleware

Power Management / System Design / Middleware / Energy Saving / High End Computing / Experimental Evaluation / Dynamic Voltage and Frequency Scaling / Energy efficient / Parallel Computer / Large Scale / High performance computer / Experimental Evaluation / Dynamic Voltage and Frequency Scaling / Energy efficient / Parallel Computer / Large Scale / High performance computer

Parallel data intensive computing in scientific and commercial applications

Cognitive Science / Distributed Computing / Parallel Computing / Data Mining / Parallel and Distributed Computing / Climate Model / High Speed / Parallel and distributed Databases / Wide Area Network / Data Intensive Computing / Parallel Computer / Large Scale / High performance computer / Experimental Data / Climate Model / High Speed / Parallel and distributed Databases / Wide Area Network / Data Intensive Computing / Parallel Computer / Large Scale / High performance computer / Experimental Data

MODTRAN on supercomputers and parallel computers

Cognitive Science / Distributed Computing / Parallel Computing / Cluster Computing / High performance / Large Data Sets / Data Processing / Parallel Computer / Message Passing Interface / Infrared imaging / Domain Decomposition / Jet Propulsion Laboratory / Large Data Sets / Data Processing / Parallel Computer / Message Passing Interface / Infrared imaging / Domain Decomposition / Jet Propulsion Laboratory
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