Response of Non-Damped Oscillators Subjected To Rectangular Pulse
Keywords:
Rohit transform, Non-damped oscillator, Rectangula pulseAbstract
In this manuscript, a new integral transform, that is, Rohit transform (RT) is put to use for finding the response of non-damped oscillators (i.e. electrical and mechanical oscillators) subjected to a rectangular pulse. Generally, this problem has been treated by methods like calculus or Laplace transforms. Also, some operational properties of the integral RT are discussed. This manuscript put forward a novel technique, that is, RT for finding the response of non-damped oscillators subjected to a rectangular pulse. It is found that before the removal of rectangular pulse, the nature of response of non-damped mechanical oscillators subjected to a rectangular pulse increases and decreases periodically with constant amplitude but when the rectangular pulse is removed, the nature of response becomes oscillatory with constant amplitude. The results fixed are the same as fixed with other methods. This paper tenders an alternate style for finding the response of non-damped oscillators (i.e. electrical and mechanical oscillators) subjected to a rectangular pulse.
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References
H.K. Dass, 2014. Mathematical Physics. Publisher-S. Chand & Company Ltd.
Gupta R., Pandita N., Gupta R., 2022. "Solving One-Dimensional Heat and Wave Equations Via Gupta Integral Transform," 2022 International Conference on Sustainable Computing and Data Communication Systems (ICSCDS), Erode, India, pp. 921-925, doi: 10.1109/ICSCDS53736.2022.9760823.
Gupta R., Gupta R., 2021. ‘Response of a Permanent Magnet Moving Coil Instrument via the Application of Rohit Transform’, ‘Engineering & Scientific International Journal (ESIJ)’, 8(2), 42-44.
Pandita N., Gupta N., 2020. ‘Heat Conducted Through The Fins Of Varying Cross-Sections Via Rohit Transform’, ‘EPRA International Journal Of Research & Development (IJIRD)’, 5 (12), 222-226.
Gupta R., Gupta R., Talwar L., Anamika and Verma D., 2022. "Analysis of RLC Network Connected to Steady Stimulating Source via Gupta Transform," 2022 International Conference on Automation, Computing and Renewable Systems (ICACRS), Pudukkottai, India, pp. 9-12, doi: 10.1109/ICACRS55517.2022.10029269.
Gupta R., Gupta R., 2020. ‘Impulsive Responses of Damped Mechanical & Electrical Oscillators’, ‘International Journal of Scientific and Technical Advancements’, 6(3), 41-44.
Gupta R., Singh I., Sharma A., 2022. ‘Response of an Undamped Forced Oscillator via Rohit Transform’. Int. J. of Emerging Trends in Engg. Research, 10(8), 396-400.
Berman M., & Cederbaum L. S., 2018. "Fractional driven-damped oscillator and its general closed form exact solution," Physica A: Statistical Mechanics and its Applications, Elsevier, 505(C), 744-762.
F Olivar-Romero and O Rosas-Ortiz 2017 J. Phys.: Conf. Ser. 839 012010.
Deshpande A.S., 2014. ‘Transient Analysis of R-L-C Series Circuit to Step voltage by Engineering Method’, International Journal of Computational and Applied Mathematics, 9(2), 63-70.
Gupta R., Gupta R, 2023. ‘Response of Undamped Oscillators Exposed to Rectangular Pulse Force’, International Journal of Scientific Research in Physics and Applied Sciences, 11(2), 10-14.
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