Title :
HSD: Hybrid MARTE Sequence Diagram
Author :
Lulu Yao;Jing Liu;Yan Zhang;Yuejun Wang;Haiying Sun;Qingsheng Wang;Dehui Du;Xiaohong Chen
Author_Institution :
Shanghai Key Lab. of Trustworthy Comput., East China Normal Univ., Shanghai, China
Abstract :
Modeling and Analysis of Real-Time and Embedded systems (MARTE) is a profile of United Modeling Language (UML), which provides support for specification, design and verification for Real-Time Embedded Systems (RTES). MARTE sequence diagram can deal with both discrete and dense time in which a clock can be either chronometric or logical. However it lacks the ability to describe the continuous behavior of a hybrid system. We propose a new method named Hybrid MARTE Sequence Diagram (HSD) to describe the communication between participants and the continuous evolution within the execution occurrence of a hybrid system. HSD combines the time model from MARTE and specification of the time-continuous behavior aspects from hybrid automata with MARTE sequence diagram. It improves the MARTE sequence diagram in that: the logical time and the chronometric time are unified. Besides, the description of continuous evolution of a hybrid system is provided. We firstly extend the basic MARTE elements to support both discrete and continuous aspects. Then we define the formal syntax and semantics of HSD based on hybrid transition system. Using this new method, we model an industrial application named Train Position Determination (TPD).
Keywords :
"Unified modeling language","Clocks","Syntactics","Real-time systems","Semantics","Computational modeling","Embedded systems"
Conference_Titel :
Software Quality, Reliability and Security (QRS), 2015 IEEE International Conference on
DOI :
10.1109/QRS.2015.35