A Binary Integer Programming Model for Optimal Object Distribution
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Summary
An abstract model of distributed applications is developed and a binary integer programming (BIP) model is developed that takes into account an application's communication patterns and the target network characteristics to minimize the overall remote communication bandwidth for the application, while achieving a meaningful distribution of components in thetarget network setting.
- Type
- article
- Published
- 1998-01-01
- Cited by
- 39
- References
- 21
- OpenAlex
- https://openalex.org/W44115949
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:15416293
Keywords
Integer programming, Computer science, Binary number, Integer (computer science), Object (grammar)
References
- The essential CORBA - systems integration using distributed objects
- Introduction to the Special Issue on Software Architecture
- Analyzing and measuring reusability in object-oriented design
- An integrated framework for rapid system prototyping and automatic code distribution
- Information engineering of parallel and distributed systems using an object-oriented design model
- A multi formalisms prototyping approach from formal description to implementation of distributed systems
- Introduction to operations research
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- Component-Based Software Engineering
- Software architectural specification for optimal object distribution
- Software deployment architecture and quality-of-service in pervasive environments
- A framework for distributing object-oriented designs
- Proactive Self-Adaptation for Improving the Reliability of Mission-Critical, Embedded, and Mobile Software
- Full angle coverage in visual sensor networks
- Sensor selection and configuration in visual sensor networks
- Sensor selection using circular target model in Visual Sensor Networks
- An extensible framework for autonomic analysis and improvement of distributed deployment architectures
- An Extensible Framework for Improving a Distributed Software System's Deployment Architecture
- Architecture-driven software mobility in support of QoS requirements
- ScatterD: Spatial deployment optimization with hybrid heuristic/evolutionary algorithms
- A Bio-inspired Method for Distributed Deployment of Services
- A Radio Resource Management Framework for IEEE 802.16-Based OFDM/TDD Wireless Mesh Networks
- An adaptive approach to controlling parameters of evolutionary algorithms
- An architecture-driven software mobility framework
- A Classification of Disconnected Operation Techniques
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