scholarly journals Formal Verification of UML MARTE Specifications Based on a True Concurrency Real Time Model

2020 ◽  
Vol 39 (5) ◽  
pp. 1022-1060
Author(s):  
Nadia Chabbat ◽  
Djamel Eddine Saidouni ◽  
Radja Boukharrou ◽  
Salim Ghanemi
Author(s):  
Imed Eddine Chama ◽  
Nabil Belala ◽  
Djamel Eddine Saidouni

Different standards and languages are proposed in the literature to model the composition of Web services. Unfortunately these languages are essentially syntactic and thus contain much ambiguity and inconsistency. In addition, the formal verification of the proposed languages is impossible. In this paper, the authors propose a transformation approach allowing the formal representation, analysis and refinement of Web services compositions. Both timed constraints and the durations of interactions between these services are taken into account. The authors present a mapping from Web services described in the BPEL language to an abstract specification written in the real-time language D-LOTOS which is based on true-concurrency semantics.


1997 ◽  
Vol 31 (3) ◽  
pp. 45-51
Author(s):  
Jianmin Hou ◽  
Xuandong Li ◽  
Xiaocong Fan ◽  
Guoliang Zheng
Keyword(s):  

1996 ◽  
Vol 29 (6) ◽  
pp. 9-17
Author(s):  
Mohamed Younis ◽  
Grace Tsai ◽  
Thomas Marlowe ◽  
Alexander Stoyenko

Energies ◽  
2021 ◽  
Vol 14 (6) ◽  
pp. 1723
Author(s):  
Félix Dubuisson ◽  
Miloud Rezkallah ◽  
Hussein Ibrahim ◽  
Ambrish Chandra

In this paper, the predictive-based control with bacterial foraging optimization technique for power management in a standalone microgrid is studied and implemented. The heuristic optimization method based on the social foraging behavior of Escherichia coli bacteria is employed to determine the power references from the non-renewable energy sources and loads of the proposed configuration, which consists of a fixed speed diesel generator and battery storage system (BES). The two-stage configuration is controlled to maintain the DC-link voltage constant, regulate the AC voltage and frequency, and improve the power quality, simultaneously. For these tasks, on the AC side, the obtained power references are used as input signals to the predictive-based control. With the help of the system parameters, the predictive-based control computes all possible states of the system on the next sampling time and compares them with the estimated power references obtained using the bacterial foraging optimization (BFO) technique to get the inverter current reference. For the DC side, the same concept based on the predictive approach is employed to control the DC-DC buck-boost converter by regulating the DC-link voltage using the forward Euler method to generate the discrete-time model to predict in real-time the BES current. The proposed control strategies are evaluated using simulation results obtained with Matlab/Simulink in presence of different types of loads, as well as experimental results obtained with a small-scale microgrid.


2004 ◽  
Author(s):  
Thomas Winsel ◽  
Mohamed Ayeb ◽  
Heinz J. Theuerkauf ◽  
Stefan Pischinger ◽  
Christof Schernus ◽  
...  
Keyword(s):  

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