Wang Biao
Title: Assistant Researcher
Tel: (86) (531) 88365157
Email: wangbiao@sdu.edu.cn
Research Areas: Game Theory, Logical Systems, Gene Regulation Networks, Finite Automata

Education Background
Bachelor of Science in Mathematics and Applied Mathematics, Jilin Normal University
Master of Science in Basic Mathematics, Yanbian University
Doctor of Science in Operations Research and Control Theory, Shandong University
Postdoctoral Fellow in Systems Theory, Shandong University

Undergraduate: Advanced Mathematics, Linear Algebra

Paper (First author or Corresponding author)
1. Observability of singular Boolean control networks with state delays. Journal of the Franklin Institute, DOI: 10.1016/j.jfranklin.2021.07.010.
2. Detectability of Boolean networks with disturbance inputs. Systems & Control Letters, 2020, 145: 104783.
3. On detectability of Boolean control networks. Nonlinear Analysis: Hybrid Systems, 2020, 36: 100859. (ESI high cited)
4. A matrix approach for the static correction problem of asynchronous sequential machines. International Journal of Control, Automation and Systems, 2020, 18(2): 477-487.
5. On detectability of probabilistic Boolean networks. Information Sciences, 2019, 483: 383-395.
6. Model matching of switched asynchronous sequential machines via matrix approach, International Journal of Control, 2019, 92(10): 2430-2440.
7. Matrix approach to detectability of discrete event systems, Journal of the Franklin Institute, 2019, 356(12): 6460-6477.
8. On dimensions of linear discrete dimension-unbounded systems, International Journal of Control, Automation and Systems, 2021, 19(1): 471-477.
9. Reconstructibility of singular Boolean control networks via automata approach, Neurocomputing, 2020, 416: 19-27.
10. On reconstructibility of switched Boolean control networks. International Journal of Control, Doi: 10.1080/00207179.2020.1763470.
11. Matrix approach to model matching of composite asynchronous sequential machines. IET Control Theory & Applications, 2017, 11(13): 2122-2130.
12. Identifiability of the delay parameter for time-delay Boolean networks. Proceedings of the International Conference on Applied Nonlinear Dynamics, Vibration and Control (ICANDVC2021), August, 23-25, 2021, Hong Kong. 277-288.
13. Recent development on observability and detectability of Boolean control networks. Control and Decision, 2020, 35(9): 2049-2058.
14. Matrix approach to reachability of parallel interconnected asynchronous sequential machines. Proceedings of the 12th Asian Control Conference, June 9-12, 2019, Kitakyushu, Fuknoka, Japan. 1548-1553.
15. On stabilizability of time-delay Boolean networks. Proceedings of the 37th Chinese Control Conference, July 25-27, 2018, Wuhan, China, 6277-6282.
16. Output tracking of periodically time-variant Boolean control networks. Proceedings of the 36th Chinese Control Conference, July 26-28, 2017, Dalian, China, 2355-2360.
17. Controllability and reachability of periodically time-variant Boolean control networks. The 35th China Control Conference, July 27-29, 2016, Chengdu, China, 7309-7314.
18. Controllability of periodically time-variant Boolean control networks and its application in a class of apoptosis network. Journal of Systems Science and Mathematical Science, 2016, 26(7): 973-985.
19. Exponential stability of hybrid redundant systems with fault repair. Journal of Mathematics in Practice and Theory, 2015, 45(8): 225-234.
20. Exponential stability of an M/G/1-type queueing system with nonperfect servers and no waiting capacity. Acta Analysis Functionalis Applicata, 2015, 17(3): 282-290.

Patent
1. Static Controller Design Method and System of Home Security Alarm System, Invention, ZL.201910544037.3 (second place)

Papers (Collaborative)
1. Finite automata approach to reconstructibility of switched Boolean control networks. Neurocomputing, 2021, 454: 34-44.
2. General decomposition of fuzzy relations: Semi-tensor product appraoch. Fuzzy Sets and Systems, 2020, 384: 75-90.
3. Event-triggered mechanism of designing set stabilization state feedback controller for switched Boolean networks. Applied Mathematics and Computation, 2020, 383: 125372.
4. The equivalence transformation between Galois NFSRs and Fibonacci NFSRs. Asian Journal of Control, 2020, DOI: 10.1002/asjc.2390.
5. Input observability of Boolean control netwroks. Neurocomputing, 2019, 333: 22-28.
6. Bisimulations of Boolean control networks with impulsive effects and its application in controllability. Asian Journal of Control, 2019, 21: 2559-2568.
7. Sampled-data controllability and stabilizability of Boolean control networks: Nonuniform sampliing. Journal of the Franklin Institute, 2018, 355: 5324-5335.
8. Topological structure of implicit Boolean networks. IET Control Theory & Applications, 2017, 11(13): 2058-2064.
9. On stability and stabilization of continuous-time cross-dimensional linear systems. The 31th Chinese Control and Decision Conference (2019 CCDC), 1118-1123.
10. A note on observability of switched Boolean control networks. Proceedings of the 38th Chinese Control Conference July 27-30, 2019, Guangzhou, China, 336-341.
11. Observability of singular Boolean control networks. Proceedings of the 38th Chinese Control Conference July 27-30, 2019, Guangzhou, China, 439-444.
12. Minimum node control of Boolean networks. Proceedings of the 38th Chinese Control Conference July 27-30, 2019, Guangzhou, China, 468-472.
13. Stability of Markov jump mix-valued logical networks. Proceedings of the 37th Chinese Control Conference July 25-27, 2018, Wuhan, China, 1451-1456.

1. Data-based Modeling, Control and Application of Gene Regulatory Networks (Project supported by the Social Science Fund of Shandong Province, organizer)
2. Theory and Application of Cascaded Finite Automaton Based on Semi-tensor Product Method (Youth Project supported by the Natural Science Foundation of Shandong Province, facilitator)
3. Control Theory and Application of Hidden Boolean Network (General Project supported by the National Natural Science Foundation of China, facilitator)
4. Application of Semi-tensor Product in Multi-input Multi-output Fuzzy Control System (General Project supported by the National Natural Science Foundation of China, facilitator)