DYNAMIC MODELING OF CORPORATE FINANCIAL HEALTH: APPLYING METHODS FROM THE THEORY OF RANDOM PROCESSES

Authors

  • Gulnoza Yuldosheva Senior teacher of the Department of "Corporate Economics and Management", Tashkent State University of Economics Author

Keywords:

Dynamic modeling, financial condition, stochastic processes, corporate finance, financial modeling, random processes, VUCA environment.

Abstract

This article discusses dynamic modeling strategies that use the capabilities of the theory of random processes, offering a comprehensive framework for understanding and improving the financial condition of enterprises.

References

Doheny, M., Nagali, V., & Weig, F. (2012). Agile operations for volatile times. McKinsey Quarterly, 3, 126-131.

Bennett, N., & Lemoine, G. J. (2014). What a difference a word makes: Understanding threats to performance in a VUCA world. Business horizons, 57(3), 311-317.

Codreanu, A. (2016). A VUCA action framework for a VUCA environment. Leadership challenges and solutions. Journal of Defense Resources Management (JoDRM), 7(2), 31-38.

"Who first originated the term VUCA (Volatility, Uncertainty, Complexity and Ambiguity)? - USAHEC Ask Us a Question". usawc.libanswers.com. Retrieved 2021-07-29.

Park, K. I., Park, M., & James. (2018). Fundamentals of probability and stochastic processes with applications to communications (pp. 51-72). Cham, Switzerland: Springer International Publishing.

Haykin, S. (2008). Communication systems. John Wiley & Sons.

Barry, J. R., Lee, E. A., Messerschmitt, D. G., Barry, J. R., Lee, E. A., & Messerschmitt, D. G. (2004). Stochastic Signal Processing. Digital Communication, 57-111.

Barry, J. R., Lee, E. A., Messerschmitt, D. G., Barry, J. R., Lee, E. A., & Messerschmitt, D. G. (2004). Stochastic Signal Processing. Digital Communication, 57-111.

Primak, S., Kontorovich, V., & Lyandres, V. (2005). Stochastic methods and their applications to communications: stochastic differential equations approach. John Wiley & Sons.

Chen, J. C., & Zhang, T. (2004). IP-based next-generation wireless networks: systems, architectures, and protocols. John Wiley & Sons.

Farahzadi, H. R., Langarizadeh, M., Mirhosseini, M., & Fatemi Aghda, S. A. (2021). An improved cluster formation process in wireless sensor network to decrease energy consumption. Wireless Networks, 27, 1077-1087.

Pokhrel, K., Dutta, N., Ghose, M. K., & Sarma, H. K. D. (2023). Performance Evaluation of Three Layer MIPv6 Architecture. Wireless Personal Communications, 128(2), 1259-1285.

Gersho, A., Gray, R. M., Gersho, A., & Gray, R. M. (1992). Random Processes and Linear Systems. Vector Quantization and Signal Compression, 17-47.

Kleinrock, L. (2007). Communication nets: Stochastic message flow and delay. Courier Corporation.

Author, F., Author, S., Author, T.: Book title. 2nd edn. Publisher, Location (1999)

Author, F.: Contribution title. In: 9th International Proceedings on Proceedings, pp. 1–2. Publisher, Location (2010)

LNCS Homepage, http://www.springer.com/lncs, last accessed 2023/06/20

Published

2025-03-31

How to Cite

DYNAMIC MODELING OF CORPORATE FINANCIAL HEALTH: APPLYING METHODS FROM THE THEORY OF RANDOM PROCESSES. (2025). Innovative Research in the Modern World, 4(9), 163-167. https://in-academy.uz/index.php/ZDIT/article/view/18149