Applications of Complex Function Analysis in Transmission, Physics, and Economy
DOI:
https://doi.org/10.54097/6ypebq08Keywords:
Complex function; transmission; physics; economy.Abstract
The usage of complex functions is common in many professions. This study focuses on the usage of the complex function in physics, transmission, and economics. Among these, many research demonstrate the relationship between complex function and the disciplines of physics and transmission. This study demonstrates how the complex function has improved transmission accuracy and the measurement of the Fault Index in the transmission area. Furthermore, the research demonstrates how the complex function has aided the study of physics, such as investigating the usefulness of the complex function in wind generating. Finally, the research reveals that in the field of economics, the complex function improves calculating performance. The author has the potential to better help readers understand the usage of complex functions in real settings by demonstrating the relationship between the complex function and fields such as physics, transmission, and economics. As a result, it may give people with another important tool for future investigations. Meanwhile, it demonstrates the widespread use and importance of the complex function in specific areas, pushing individuals to consider whether they can apply the complex function in new domains or in a deeper way.
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Fang J. Under the background of the new engineering exploration "complex function" course teaching reform. Education science, 2023, 5(6): 171-174
Zhang Y. Mathematical physics equation of some related theory and the development of complex function. Journal of Jishou University, 2015, 36(02): 38-45.
Wen X. The application of the complex variable function in the communication system and performance analysis. Chinese Science and Technology Journal Database ‘Full-text Edition’ Engineering Technology, 2023, 6: 541004
Greenlaw S A, Shapiro D, Richardson C, et al. Principles of Micro-economics 2e. for AP® Courses. Rice University, 2017.
Boas R P. Invitation to complex analysis. American Mathematical Soc., 2020.
Gerasimov M, Dyunin E, Gerasimov J, et al. Application of Wigner distribution function for THz propagation analysis. Sensors, 2021, 22(1): 240.
Kulshrestha A, Prakash Mahela O, Gupta M K, et al. Hybridization of the stockwell transform and wigner distribution function to design a transmission line protection scheme. Applied Sciences, 2020, 10(22): 7985.
Tailor N, Joshi S, Mahela O P. Transmission line protection schemes based on wigner distribution function and discrete wavelet transform. 2020 IEEE 9th Power India International Conference (PIICON). IEEE, 2020: 1-6.
Mei B A, Munteshari O, Lau J, et al. Physical interpretations of Nyquist plots for EDLC electrodes and devices. The Journal of Physical Chemistry C, 2018, 122(1): 194-206.
Alsumiri M, Jiang L, Alalwani S. Residue theorem based sensorless maximum power point tracking tip speed ratio control for wind generation system. 2019 SoutheastCon. IEEE, 2019: 1-5.
Yang Y J, Chen C C, Chen Y T. New method of solving the economic complex systems. Discrete Dynamics in Nature and Society, 2020, 2020: 1-26.
Zhu B, Ma S, Xie R, et al. Hilbert spectra and empirical mode decomposition: a multiscale event analysis method to detect the impact of economic crises on the European carbon market. Computational Economics, 2018, 52: 105-121.
Svetunkov S G, Chanysheva A F. Properties of complex dispersion and standard deviation. Revista ESPACIOS, 2017, 38(33).
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