[1] B. Ataşlar and A. İftar:
Decentralized routing controller design using overlapping decompositions. Internat. J. Control 72 (1999), 1175–1192.
MR 1717872
[2] A. Aybar and A. İftar:
Decentralized supervisory controller design for discrete-event systems using overlapping decompositions and expansions. Dynamics of Continuous, Discrete and Impulse Systems (Series B) 11 (2004), 553–568.
MR 2071227
[3] A. Aybar and A. İftar:
Overlapping decompositions and expansions of Petri nets. IEEE Trans. Automat. Control 47 (2002), 511–515.
MR 1891337
[4] A. Aybar and A. İftar: Decentralized controller design to enforce boundedness, liveness and reversibility in Petri nets. In: Proc. CD-ROM of the European Control Conference, Cambridge 2003.
[5] A. Aybar and A. İftar:
Decentralized supervisory controller design to avoid deadlock in Petri nets. Internat. J. Control 76 (2003), 1285–1295. Also see: A. Aybar and A. İftar: Corrections to decentralized supervisory controller design to avoid deadlock in Petri nets. Internat. J. Control 76 (2003), p. 1584.
MR 1992919
[6] A. Aybar, A. İftar, and H. Apaydın-Özkan:
Centralized and decentralized supervisory controller design to enforce boundedness, liveness, and reversibility in Petri nets. Internat. J. Control 78 (2005), 537–553.
MR 2147642
[7] L. Bakule, J. Rodellar, and J. M. Rossell:
Generalized selection of complementary matrices in the inclusion principle. IEEE Trans. Automat. Control 45 (2000), 1237–1243.
MR 1778388
[8] K. Barkaoui and I. B. Abdallah: Deadlock avoidance in FMS based on structural theory of Petri nets. In: Proc. 1995 IEEE Symposium on the Emerging Technology and Factory Automation, Paris 1995, pp. 499–510.
[9] C. G. Cassandras and S. Lafortune:
Introduction to Discrete Event Systems. Kluwer Academic Publishers, Norwell 1999.
MR 1728175
[10] R. Cordone, L. Ferrarini, and L. Piroddi: Some results on the computation of minimal siphons in Petri nets. In: Proc. IEEE Conference on Decision and Control, Maui 2003, pp. 3754–3759.
[11] J. Esparza and M. Nielsen: Decidability Issues in Petri Nets. BRICS Report Series, RS-94-8, Department of Computer Science, University of Aarhus 1994.
[12] M. P. Fanti, B. Maione, and B. Turchiano: Comparing digraph and Petri net approaches to deadlock avoidance in FMS. IEEE Trans. Systems, Man and Cybernetics, Part B 30 (2000), 783–798.
[13] M. P. Fanti and M. Zhou: Deadlock control methods in automated manufacturing systems. IEEE Trans. Systems, Man, and Cybernetics, Part A 34 (2004), 5–22.
[14] Y. Ho (ed.): Discrete Event Dynamic Systems: Analyzing Complexity and Performance in the Modern World. A Selected Reprint Volume. The Institute of Electrical and Electronics Engineers, New York 1992.
[15] L. E. Holloway and B. H. Krogh:
On closed-loop liveness of discrete-event systems under maximally permissive control. IEEE Trans. Automat. Control 37 (1992), 692–697.
MR 1158617
[16] A. İftar:
Overlapping decentralized dynamic optimal control. Internat. J. Control 58 (1993), 187–209.
MR 1222143
[17] A. İftar:
Decentralized estimation and control with overlapping input, state, and output decomposition. Automatica 29 (1993), 511–516.
MR 1211311
[18] A. İftar and Ü. Özgüner: Local LQG/LTR controller design for decentralized systems. IEEE Trans. Automat. Control 32 (1987), 926–930.
[19] A. İftar and Ü. Özgüner:
Contractible controller design and optimal control with state and input inclusion. Automatica 26 (1990), 593–597.
MR 1056141
[20] A. İftar and Ü. Özgüner:
Overlapping decompositions, expansions, contractions, and stability of hybrid systems. IEEE Trans. Automat. Control 43 (1998), 1040–1055.
MR 1636494
[21] M. Ikeda and D. D. Šiljak:
Overlapping decompositions, expansions, and contractions of dynamic systems. Large Scale Systems 1 (1980), 29–38.
MR 0617153
[22] M. Ikeda and D. D. Šiljak: Overlapping decentralized control with input, state, and output inclusion. Control Theory Adv. Technol. 2 (1986), 155–172.
[23] M. Ikeda, D. D. Šiljak, and D. E. White:
Decentralized control with overlapping information sets. J. Optim. Theory Appl. 34 (1981), 279–310.
MR 0625231
[24] M. V. Iordache and P. J. Antsaklis: Software Tools for the Supervisory Control of Petri Nets Based on Place Invariants. Tech. Rep. ISIS-2002-003, the ISIS Group at the University of Notre Dame, 2002.
[25] M. V. Iordache and P. J. Antsaklis:
Design of ${\cal T}$-liveness enforcing supervisors in Petri nets. IEEE Trans. Automat. Control 48 (2003), 1962–1974.
MR 2017627
[26] M. V. Iordache, J. O. Moody, and P. J. Antsaklis: A method for the synthesis of liveness enforcing supervisors in Petri nets. In: Proc. American Control Conference, Arligton 2001, pp. 4943–4948.
[27] Z. W. Li and M. C. Zhou: Elementary siphons of Petri nets and their application to deadlock prevention in flexible manufacturing systems. IEEE Trans. Systems, Man and Cybernetics, Part A, 34 (2004), 38–51.
[28] Y. Ohta, D. D. Šiljak, and T. Matsumoto:
Decentralized control using quasi-block diagonal dominance of transfer function matrices. IEEE Trans. Automat. Control 31 (1986), 420–430.
MR 0833851
[29] J. Proth and X. Xie: Petri Nets: A Tool for Design and Management of Manufacturing Systems. Wiley, West Sussex 1996.
[30] R. S. Sreenivas:
On the existence of supervisory policies that enforce liveness in discrete-event dynamic systems modelled by controlled Petri nets. IEEE Trans. Automat. Control 42 (1997), 928–945.
MR 1469834
[31] M. Uzam and M. Zhou: An iterative synthesis approach to Petri net-based deadlock prevention policy for flexible manufacturing systems. IEEE Trans. Systems, Man, and Cybernetics, Part A, 37 (2007), 362–371.
[32] A. R. Wang, Z. W. Li, and J. Y. Jia: A Petri nets based deadlock avoidance policy for flexible manufacturing systems. In: Proc. 30th Annual Conference of the IEEE Industrial Electronics Society, Busan 2004, pp. 1896–1901.
[33] N. Viswanadham, Y. Narahari, and T. L. Johnson: Deadlock prevention and deadlock avoidance in flexible manufacturing systems using Petri net models. IEEE Trans. Robotics and Automation 6 (1990), 713–723.
[34] M. Zhou and F. Di Cesare: Petri Net Synthesis for Discrete Event Control of Manufacturing Systems. Kluwer Academic Publishers, Norwell 1993.