A two-phase design space exploration strategy for system-level real-time application mapping onto MPSoC
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Summary
The approach, compared to other approaches based only on analytical estimation models or simulations guided by e.g. genetic algorithms, not only can explore a large design space and reach a valid solution in a time-efficient way, but also can provide solutions optimizing resource usage efficiency, system traffic and processor load balancing.
- Type
- article
- Published
- 2014-02-01
- Cited by
- 30
- References
- 28
- OpenAlex
- https://openalex.org/W2125258049
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:2355769
Keywords
Computer science, Pruning, MPSoC, Design space exploration, Proof of concept
References
- Multi-objective design space exploration of embedded systems
- Real-time application to multiprocessor-system-on-chip mapping strategy for system-level design tool
- NASA: A generic infrastructure for system-level MP-SoC design space exploration
- Performance evaluation of efficient multi-objective evolutionary algorithms for design space exploration of embedded computer systems
- A Systematic Design Space Exploration of MPSoC Based on Synchronous Data Flow Specification
- Scenario-based design space exploration of MPSoCs
- A Framework for System-Level Modeling and Simulation of Embedded Systems Architectures
- Rapid Design Space Exploration of Application Specific Heterogeneous Pipelined Multiprocessor Systems
- Methods for evaluating and covering the design space during early design development
- Efficient Design Space Exploration of High Performance Embedded Out-of-Order Processors
- Combining Simulation and Formal Methods for System-Level Performance Analysis
- Overview of the MPSoC design challenge
- Rapid design space exploration of heterogeneous embedded systems using symbolic search and multi-granular simulation
- Design Space Exploration and Performance Analysis for the Modular Design of CVS in a Heterogeneous MPSoC
- Mapping Applications to Tiled Multiprocessor Embedded Systems
- Design space exploration of real-time multi-media MPSoCs with heterogeneous scheduling policies
- A system-level infrastructure for multidimensional MP-SoC design space co-exploration
- ReSPIR: A Response Surface-Based Pareto Iterative Refinement for Application-Specific Design Space Exploration
- The NP-Completeness Column: An Ongoing Guide
- System-level design: orthogonalization of concerns andplatform-based design
Cited by
- Toward a Unified Characterization of Mapping Algorithms in Cloud and MPSoC Environments Using a Literature-Based Approach
- A model-based, single-source approach to design-space exploration and synthesis of mixed-criticality systems
- An efficient joint analytical and simulation-based design space exploration flow for predictable multi-core systems
- Conceptual Abstraction Levels (CALs) for managing design complexity of market-oriented MPSoCs
- Multi-objective optimization of multimedia embedded systems using genetic algorithms and stochastic simulation
- Exploring Exploration: A Tutorial Introduction to Embedded Systems Design Space Exploration
- Using design space exploration for finding schedules with guaranteed reaction times of synchronous programs on multi-core architecture
- Accelerating MPSoC design space exploration within system-level frameworks
- Early Stage Interference Checking for Automatic Design Space Exploration of Mixed Critical Systems
- Model-driven reliability evaluation for MPSoC design
- Unaprijedeni Model Dodjeljivanja Paralelnih programa Raznorodnim Raspodijeljenim Racunalnim Sustavima ; Improved Model of Delivery Parallel Programs Different Raspodijeljenim RA Cunaln Systems
- A cross-layer aging-aware task scheduling approach for multiprocessor embedded systems
- Run-time mapping algorithm for dynamic workloads using association rule mining
- Energy Efficient Task Mapping & Scheduling on Heterogeneous NoC-MPSoCs in IoT Based Smart City
- Energy Efficient Heuristic Algorithm for Task Mapping on Shared-Memory Heterogeneous MPSoCs
- Multi-objective Optimization of Mapping Dataflow Applications to MPSoCs Using a Hybrid Evaluation Combining Analytic Models and Measurements
- Reliability-driven Automotive Software Deployment based on a Parametrizable Probabilistic Model Checking
- FARSI: An Early-stage Design Space Exploration Framework to Tame the Domain-specific System-on-chip Complexity
- On Transferring Application Mapping Knowledge Between Differing MPSoC Architectures
- ARTEMIS: Agile Discovery of Efficient Real-Time Systems-on-Chips in the Heterogeneous Era
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