Comparison of the Solution of the Van der Pol Equation Using the Modified Adomian Decomposition Method and Truncated Taylor Series Method
Keywords:
van der Pol oscillator, modified Adomian decomposition method, Taylor series methodAbstract
In this paper, we compare the solution of the van der Pol equation obtained by using the truncated Taylor series method and the modified Adomian decomposition method with the solution obtained by the Poincare-Lindstedt (P-L) method. The approximating 4-component modified Adomian decomposition method behaves more like an approximate P-L analytic method than the tenth-order Taylor series. Also, with the addition of just one term, the approximating 5-component modified Adomian decomposition method produces a more convergent solution to that of P-L analytic method than the twenty second-order Taylor series approximation as the independent variable t representing time progressively increases. A general comparison of the two solutions revealed that the absolute errors generated by the approximating polynomial from the Taylor series are greater than the ones generated from the modified Adomian decomposition method. It was further revealed that very few components of the modified Adomian decomposition could yield a series of about 3 times the order of the one obtained by using the Taylor series method. Hence, we recommend the inclusion of the modified Adomian Decomposition Method in modern mathematical tools.
Published
How to Cite
Issue
Section
How to Cite
Similar Articles
- M. A. Lala, S. Kawu, O. A. Adesina, J. A. Sonibare, Assessment of Heavy Metal Pollution Status in Surface Soil of a Nigerian University , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 3, August 2022
- L. Guru Prasad, R. Ravikumar, R. Ganapathi Raman, R. Rajesh Kannad, Investigations on the structural, vibrational, optical and photocatalytic behavior of CuO, MnO and CuMnO nanomaterials , Journal of the Nigerian Society of Physical Sciences: Volume 6, Issue 3, August 2024
- Paul Tawo Bukie, Idongesit E. Eteng, Eyo E. Essien, Development of internet of things-based petroleum pipeline topology leak monitoring and detection system using sensors , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 4, November 2025
- James Andrawus, Kayode Isaac Omotoso, Agada Apeh Andrew, Felix Yakubu Eguda, Sunday Babuba, Kabiru Garba Ibrahim, Mathematical model analysis on the significance of surveillance and awareness on the transmission dynamics of diphtheria , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 4, November 2025
- Mahesh Kumar Singh, Pushpa Choudhary, Arun Kumar Singh, Pushpendra Singh, LWRNPIP: Design of a light weight restrictive non-fungible token based on practically unclonable functions via image signature patterns , Journal of the Nigerian Society of Physical Sciences: Volume 7, Issue 4, November 2025
- C. A. Onate, I. B. Okon, E. S. Eyube, E. Omugbe, A. D. Ahmed, Computation of vibrational partition function: a comparative analysis between Poisson summation and classical limit , Journal of the Nigerian Society of Physical Sciences: Volume 8, Issue 1, February 2026
- C. A. Onate, M. C. Onyeaju, Entropic system in the relativistic Klein-Gordon Particle , Journal of the Nigerian Society of Physical Sciences: Volume 3, Issue 3, August 2021
- B. O. Adebesin, J. O. Adeniyi, I. A. Adimula, S. J. Adebiyi, S. O. Ikubanni, B. J. Adekoya, Current Understanding of the Equatorial E x B Drift velocities in the African Sector: A Short Review , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 1, February 2022
- Augustine Igwebuike Anya, Uko Ofe, Aftab Khan, Mathematical Modeling of Waves in a Porous Micropolar Fibrereinforced Structure and Liquid Interface , Journal of the Nigerian Society of Physical Sciences: Volume 4, Issue 3, August 2022
- Suha Ibrahim Salih Al-Ali, Zaidun Naji Abudi, Mohammed Nsaif Abbas, Modelling and Simulation for the use of Natural Waste to Purified Contaminated Heavy Metals , Journal of the Nigerian Society of Physical Sciences: Volume 5, Issue 1, February 2023
You may also start an advanced similarity search for this article.

