Title :
Composite dependability modeling for in-vehicle networks
Author :
Okamura, Hiroyuki ; Dohi, Tadashi ; Shiraishi, Shin´ichi ; Abe, Mutsumi
Author_Institution :
Dept. of Inf. Eng., Hiroshima Univ., Higashi-Hiroshima, Japan
Abstract :
This paper discusses an emerging dependability assessment framework for CAN (Controller Area Network)-based in-vehicle applications. The dependability assessment of in-vehicle systems from their designed architecture is a challenging issue for automobile industry. However, since modern in-vehicle systems consist of massive components such as ECUs (Electronic Control Units), CAN equipments and software, it is not always easy to evaluate the whole system dependability from their interactions and interdependency. In this paper, with commonly-used architecture description languages such as UML (Unified Modeling Language) and SysML (Systems Modeling Language), we divide the system structure into several components, and give behavioral description of components, where each component corresponds to a state-dependent model in terms of its probabilistic behavior. We adopt a probabilistic model checking approach to analysis of the component behavior, and describe it by means of the PRISM language. Our composite dependability modeling is a promising technique not only in the in-vehicle application but also in enterprise applications to perform the quantification of system dependability in design. We also give an illustrative example on the dependability modeling of an auto-cruise system in the design phase.
Keywords :
Unified Modeling Language; controller area networks; probability; traffic engineering computing; vehicles; CAN equipments; CAN software; PRISM language; SysML; UML; architecture description languages; auto-cruise system; automobile industry; composite dependability modeling; controller area network; dependability assessment framework; electronic control units; enterprise applications; in-vehicle networks; probabilistic model checking approach; state-dependent model; systems modeling language; unified modeling language; Computer architecture; Control systems; Protocols; Software reliability; Unified modeling language; Vehicles; CAN-based in-vehicle networks; dependability assessment; dependable design; probabilistic model checking;
Conference_Titel :
Dependable Systems and Networks Workshops (DSN-W), 2011 IEEE/IFIP 41st International Conference on
Conference_Location :
Hong Kong
Print_ISBN :
978-1-4577-0374-4
Electronic_ISBN :
978-1-4577-0373-7
DOI :
10.1109/DSNW.2011.5958848