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| Content Provider | IEEE Xplore Digital Library |
|---|---|
| Author | Giannakopoulou, D. |
| Copyright Year | 2010 |
| Abstract | The safety-critical nature of aerospace systems mandates the development of advanced formal verification techniques that provide desired correctness guarantees. In this paper, we present two inherently different approaches towards achieving this goal. The first approach aims at scaling exhaustive verification techniques by applying divide-and-conquer principles. It involves automated compositional verification algorithms for model checking both finite and infinite-state software components. The second approach does not perform exhaustive verification but it is more versatile. It uses a model checker to automatically generate tests for aerospace algorithms and only requires knowledge of the types of inputs that the algorithms process. We will discuss our experience with formal verification of aerospace systems and analyze the applicability of the two approaches in several settings. |
| Starting Page | 5 |
| Ending Page | 11 |
| File Size | 431751 |
| Page Count | 7 |
| File Format | |
| ISBN | 9781424482894 |
| DOI | 10.1109/SEFM.2010.9 |
| Language | English |
| Publisher | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
| Publisher Date | 2010-09-13 |
| Publisher Place | Italy |
| Access Restriction | Subscribed |
| Rights Holder | Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
| Subject Keyword | Aircraft Concrete Testing Prototypes Cognition Software algorithms Software Java Pathfinder compositional verification aerospace systems test case generation model checking assume guarantee reasoning |
| Content Type | Text |
| Resource Type | Article |
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