1. Bandini, S., Crociani, L., Vizzari, G.: An approach for managing heterogeneous speed profiles in cellular automata pedestrian models. J. Cell. Autom. 12, 401–421 (2017).
https://www.researchgate.net/publication/316583613_An_approach_for_managing_heterogeneous_speed_profiles_in_cellular_automata_pedestrian_models
2. Burstedde, C., Klauck, K., Schadschneider, A., Zittartz, J.: Simulation of pedestrian dynamics using a two-dimensional cellular automaton. Phys. A: Stat. Mech. Appl. 295(3–4), 507–525 (2001).
https://doi.org/10.1016/S0378-4371(01)00141-8
3. Dietrich, F., Koester, G., Seitz, M., von Sivers, I.: Bridging the Gap: from cellular automata to differential equation models for pedestrian dynamics. J. Comput. Sci. 5(5), 841–846 (2014)
4. Feynman, R., Leighton, R., Sands, M.: The Feynman Lectures on Physics, The Definitive: Feynman Lectures on Physics, vol. 2, 2nd edn. California Institute of Technology, California (2005)
5. Lecture Notes in Computer Science;TM Gwizdałła,2016