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* [https://link.springer.com/chapter/10.1007/978-3-031-05814-1_10 Generating and Verifying Configuration Data with OVADO]: <i>"The second chain first produces a B abstract machine gathering data values and rules modeled as B properties and then calls the B model-checker ProB to evaluate the rules."</i> | * [https://link.springer.com/chapter/10.1007/978-3-031-05814-1_10 Generating and Verifying Configuration Data with OVADO]: <i>"The second chain first produces a B abstract machine gathering data values and rules modeled as B properties and then calls the B model-checker ProB to evaluate the rules."</i> | ||
* [https://ieeexplore.ieee.org/document/9755408 Applying B and ProB to a Real-world Data Validation Project]: <i>In this paper, we present our experiences on applying B language and ProB tool to validate the correctness of the part of the section topology of Tram Line 1 of Guangzhou Huangpu in China.</i> ... <i>ProB is used to validate the correctness of the assertions, which is equivalent to checking that the data meet the rules. The validated topology improved the functional correctness of the tram control system.</i> | * [https://ieeexplore.ieee.org/document/9755408 Applying B and ProB to a Real-world Data Validation Project]: <i>In this paper, we present our experiences on applying B language and ProB tool to validate the correctness of the part of the section topology of Tram Line 1 of Guangzhou Huangpu in China.</i> ... <i>ProB is used to validate the correctness of the assertions, which is equivalent to checking that the data meet the rules. The validated topology improved the functional correctness of the tram control system.</i> | ||
* [https://link.springer.com/chapter/10.1007/978-3-031-16014-1_50 Xtend Transformation from PDDL to Event-B]: <i>Through the use of ProB animator, we can validate plan solutions. Unlike the VAL tool associated with PDDL, the animation with ProB allows locating errors of an incorrect plan solution.</i> | |||
== Other Links == | == Other Links == |