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The Distributed Computing Environment (DCE) is a software system developed in the early 1990s from the work of the Open Software Foundation (OSF), a consortium founded in 1988 that included Apollo Computer (part of Hewlett-Packard from 1989), IBM, Digital Equipment Corporation, and others.
Distributed computing is a field of ... Various hardware and software architectures are used for distributed computing. ... allowing for live environment relay. This ...
In the distributed computing environment, checkpointing is a technique that helps tolerate failures that would otherwise force a long-running application to restart from the beginning. The most basic way to implement checkpointing is to stop the application, copy all the required data from the memory to reliable storage (e.g., parallel file ...
The architecture of the system also found use beyond MIT. The architecture of the Distributed Computing Environment (DCE) software from the Open Software Foundation was based on concepts pioneered by Athena. Subsequently, the Windows NT network operating system from Microsoft incorporates Kerberos and several other basic architecture design ...
In software deployment, an environment or tier is a computer system or set of systems in which a computer program or software component is deployed and executed. In simple cases, such as developing and immediately executing a program on the same machine, there may be a single environment, but in industrial use, the development environment (where changes are originally made) and production ...
The Andrew Project was a distributed computing environment developed at Carnegie Mellon University beginning in 1982. It was an ambitious project for its time and resulted in an unprecedentedly vast and accessible university computing infrastructure. [1]
Distributed environment may refer to: Distributed computing , about the computer science field of distributed computing Distributed computing environment , about the software system developed in the 1980s
Heterogeneous computing refers to systems that use more than one kind of processor or core. These systems gain performance or energy efficiency not just by adding the same type of processors, but by adding dissimilar coprocessors , usually incorporating specialized processing capabilities to handle particular tasks.