The primary focus in the analysis of multiprocessor systems has traditionally been on their performance. However, their large number of components, their complex network topologies, and sophisticated system software can make them very unreliable. The dependability of a computing system ought to be considered in an early stage of its development in order to take influence on the system architecture and to achieve best performance with high dependability. In this paper a simulation-based method for the combined performance and dependability analysis of fault tolerant multiprocessor systems are presented which provide meaningful results already during the design phase
The paper presents an example of performance-related dependability evaluation of a supercomputer str...
A fault-tolerant computing system performs its intended functions irrespective of the occurrence of ...
In the paper we present original fault simulation tools developed in our Institute. These tools are ...
The primary focus in the analysis of multiprocessor systems has traditionally been on their performa...
This dissertation develops a new approach for evaluating the dependability of fault-tolerant compute...
This research addresses issues in simulation-based system level dependability analysis of fault-tole...
System reliability is an important issue in designing modern multiprocessor systems. This paper prop...
With the new generation of very fast microprocessors and support chips, it is now possible to consid...
The primary focus in the analysis of massively parallel supercomputers has traditionally been on th...
The analysis of dependability in large, complex, parallel systems executing real applications or wor...
Analysis of dependability is a significant stage in structuring and examining the safety of protecti...
We present a quantitative comparison of two popular approaches for recovering from CPU errors: Quadr...
Multiprocessor systems which afford a high degree of parallelism are used in a variety of applicati...
This paper presents a methodology for the system-level dependability analysis of multiprocessor embe...
Performability is an attribute of a system which combines reliability and performance. Recovery proc...
The paper presents an example of performance-related dependability evaluation of a supercomputer str...
A fault-tolerant computing system performs its intended functions irrespective of the occurrence of ...
In the paper we present original fault simulation tools developed in our Institute. These tools are ...
The primary focus in the analysis of multiprocessor systems has traditionally been on their performa...
This dissertation develops a new approach for evaluating the dependability of fault-tolerant compute...
This research addresses issues in simulation-based system level dependability analysis of fault-tole...
System reliability is an important issue in designing modern multiprocessor systems. This paper prop...
With the new generation of very fast microprocessors and support chips, it is now possible to consid...
The primary focus in the analysis of massively parallel supercomputers has traditionally been on th...
The analysis of dependability in large, complex, parallel systems executing real applications or wor...
Analysis of dependability is a significant stage in structuring and examining the safety of protecti...
We present a quantitative comparison of two popular approaches for recovering from CPU errors: Quadr...
Multiprocessor systems which afford a high degree of parallelism are used in a variety of applicati...
This paper presents a methodology for the system-level dependability analysis of multiprocessor embe...
Performability is an attribute of a system which combines reliability and performance. Recovery proc...
The paper presents an example of performance-related dependability evaluation of a supercomputer str...
A fault-tolerant computing system performs its intended functions irrespective of the occurrence of ...
In the paper we present original fault simulation tools developed in our Institute. These tools are ...