Araştırma Makalesi

STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations

Cilt: 11 Sayı: 3 1 Eylül 2021
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STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations

Öz

Lotka-Volterra equations are commonly used in prey-predator population studies. Simulation programs are commonly used to produce solutions of Lotka-Volterra equations and to examine their initial value dependendence. In literature, chaotic waveform generators, ECG and EEG generators have been made and used for research and education. To the best of our knowledge, such an electrical circuit to produce the Lotka-Volterra waveforms does not exist. Such a circuit can be made using either analog or digital circuit components. However, such a device may be used for education in classroom and also to prove concepts by population researchers. In this study, implementation and experimental verification of the microcontroller-based circuit which solves LotkaVolterra equations in real time and produces its waveforms are presented. Euler method is used to solve the equation system in discrete time. Presented design has been implemented using an STM32F429 Discovery Board, two DACs and four opamps. The microcontroller sends the signals to the outputs of the circuit using digital-to-analog converters and opamps. The waveforms acquired experimentally from the implemented circuit outputs matches well with those obtained from numerical simulations.

Anahtar Kelimeler

Kaynakça

  1. Boshan, C, Jiejie, C, 2012. Bifurcation and chaotic behavior of a discrete singular biological economic system. Applied Mathematics and Computation 219, 5: 2371-2386.
  2. Chen Q, Wang J, Yang S, Qin Y., Deng B., and Wei X, 2017. A real-time FPGA implementation of a biologically inspired central pattern generator network, Neurocomputing, 244, 63–80.
  3. Elabbasy E M, Elsadany A A, and Zhang Y, 2014. Bifurcation analysis and chaos in a discrete reduced lorenz system. Applied Mathematics and Computation 228(2014), 184–194.
  4. Ghaziani R K, Goverts K, Sonck C, 2012. Resonance and bifurcation a discrete time predator-prey system with Holling functional response. Nonlinear Analysis Real World Applications 13 (2012), 1451–1465.
  5. Gleria IM, Figueiredo A, Rocha Filho, T M, 2001. Stability Properties of a General Class of Nonlinear Dynamical Systems. J.Phys A: Math. Gen. 34 3561-3575.
  6. Goel NS, Maitra SC, and Montroll EW, 1971. On the Voltera and other nonlinear models of interacting populations. Rev. Modern Phys. 43, 231-276.
  7. Gomar S, and Ahmadi A, 2014. Digital Multiplierless Implementation of Biological Adaptive-Exponential Neuron Model, IEEE Trans. Circuits Syst. I Regul. Pap., 61(4), 1206–1219.
  8. He X, Liao M. & Xu C, 2011. Stability and Hopf Bifurcation analysis for a Lotka- Volterra predator-prey models with two delays, Int. J. Appl. Math. Comput., 21(1), 97- 107.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

1 Eylül 2021

Gönderilme Tarihi

3 Ekim 2020

Kabul Tarihi

10 Nisan 2021

Yayımlandığı Sayı

Yıl 2021 Cilt: 11 Sayı: 3

Kaynak Göster

APA
Karakulak, E., Korkmaz Tan, R., & Mutlu, R. (2021). STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations. Journal of the Institute of Science and Technology, 11(3), 1887-1895. https://doi.org/10.21597/jist.804591
AMA
1.Karakulak E, Korkmaz Tan R, Mutlu R. STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations. Iğdır Üniv. Fen Bil Enst. Der. 2021;11(3):1887-1895. doi:10.21597/jist.804591
Chicago
Karakulak, Ertuğrul, Rabia Korkmaz Tan, ve Reşat Mutlu. 2021. “STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations”. Journal of the Institute of Science and Technology 11 (3): 1887-95. https://doi.org/10.21597/jist.804591.
EndNote
Karakulak E, Korkmaz Tan R, Mutlu R (01 Eylül 2021) STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations. Journal of the Institute of Science and Technology 11 3 1887–1895.
IEEE
[1]E. Karakulak, R. Korkmaz Tan, ve R. Mutlu, “STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations”, Iğdır Üniv. Fen Bil Enst. Der., c. 11, sy 3, ss. 1887–1895, Eyl. 2021, doi: 10.21597/jist.804591.
ISNAD
Karakulak, Ertuğrul - Korkmaz Tan, Rabia - Mutlu, Reşat. “STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations”. Journal of the Institute of Science and Technology 11/3 (01 Eylül 2021): 1887-1895. https://doi.org/10.21597/jist.804591.
JAMA
1.Karakulak E, Korkmaz Tan R, Mutlu R. STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations. Iğdır Üniv. Fen Bil Enst. Der. 2021;11:1887–1895.
MLA
Karakulak, Ertuğrul, vd. “STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations”. Journal of the Institute of Science and Technology, c. 11, sy 3, Eylül 2021, ss. 1887-95, doi:10.21597/jist.804591.
Vancouver
1.Ertuğrul Karakulak, Rabia Korkmaz Tan, Reşat Mutlu. STM32F429 Discovery Board-Based Emulator for Lotka-Volterra Equations. Iğdır Üniv. Fen Bil Enst. Der. 01 Eylül 2021;11(3):1887-95. doi:10.21597/jist.804591

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