Al-Tememe transform in solving developed missile automatic control problem

  • Authors

    • Emad Kuffi Al-Mansour University Collage, Communication Engineering Department, Iraq, Baghdad
    • Elaf Sabah Abbas Al-Mansour University Collage, Communication Engineering Department, Iraq, Baghdad
    • Salman Obeid Mebayet Al-Mansour University Collage, Communication Engineering Department, Iraq, Baghdad
    2019-06-30
    https://doi.org/10.14419/ijet.v7i4.28919
  • Al-Tememe Transform, Developed Missile Automatic Control Problem, Second Order Ordinary Differential Equations with Variable Coefficients, Torque, Angle of Error, Moment of Inertia, Angular Velocity.
  • Al-Tememe transform is a new transform that is recently emerged, as a result to its modernity, it has not exploited properly in many applications. Missile automatic control problem is an application of the second order ordinary differential equation with constant coefficients, for that reason many methods in solving second order ordinary differential equations had been used in solving that problem, however, Al-Tememe transform had never been used in solving the problem of missile automatic control. In this paper Al-Tememe transform has been used to solve the developed problem of missile automatic control, which is an application of the second order ordinary differential equations with variable coefficients.

     

  • References

    1. [1] Dennis G. Zill, “A First Cource in Diffrential Equations with Modeling Applicationsâ€,10th edition, Brooks/Cole: Boston, USA, 2011.

      [2] Belkacem Said-Houari, “Differential Equations: Methods and Applicationsâ€, Springer International Publishing: Switzerland, 2015.

      [3] William E. Boyce, Richard C. DiPrima , “Elementary Differential Equations and Boundary Value Problemsâ€, 10th edition, Wiley: USA, 2012.

      [4] L.S. Sawant, “Applications of Laplace Transform in Engineering Fieldsâ€, International Research Journal of Engineering and Technology, Volume 5 Issue 5, 2018, Pages 3100-3105.

      [5] Steven J. Desjardins, R´emi Vaillancourt, “Ordinary Differential Equations Laplace Transforms and Numerical Methods for Engineersâ€, S. J. Desjardins and R. Vaillancourt: Ottawa, 2011.

      [6] Elaf Sabah Abbas, Emad Kuffi, Sarah Faleh Maktoof Al Khozai, Solving an improved heat transmission measuring equation using partial differential equations with variable coefficients, International Journal of Engineering & Technology, Volume 7, Issue 4, 2018, pages 5258-5260

      [7] Ali Hassan Mohammed, Mohammed Monther Neamah Kudaer, “Finding the complete solution of special types of the second order partial differential equations with variable coefficientsâ€, Journal of Kerbala University, Volume 12, Issue 4, 2014, Pages 61-69.

      [8] Ali Hassan Mohammed, Ayman Mohammed Hassan, “Using AL-Tememe Transform to Solve System of Linear Second Order Ordinary Differential Equations with Variable Coefficientsâ€, Journal of Kerbala University, Volume 15, Issue 2, 2014, Pages 30-35.

      [9] Ali Hassan Mohammed, Alaa Saleh Hadi, Hassan Nadem Rasoul, “Integration of the Al-Tememe Transformation To find the Inverse of Transformation and Solving Some LODEs With (I.C)â€. Journal of AL-Qadisiyah for computer science and mathematics, Volume 9, Issue 2, 2017; Pages 88-93.

      [10] A. S., Hadi, M A. H. Mohammed, Z. M. Hussain. On Al-Temem Transform and Solving Some Kind of Ordinary Differential Equations with Initial Conditions and Without it and Some Applications in Another Sciences. A thesis of MSc. submitted to council of University of Kufa, Faculty of Education for girls. 2015.

      [11] Zahir Muhsin Hussain, Ali Hassan Mohammed, “Using Al-Tememe Transform to Solve Linear Partial Differential Equations with Applicationsâ€, MSc thesis submitted to the faculty of education for girls- University of Kufa, (2016).

      [12] John H. Blakelock, “Automatic Control of Aircraft and Missilesâ€, 2nd edition, Wiley: Canada, 1991.

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  • How to Cite

    Kuffi, E., Sabah Abbas, E., & Obeid Mebayet, S. (2019). Al-Tememe transform in solving developed missile automatic control problem. International Journal of Engineering & Technology, 7(4), 6565-6567. https://doi.org/10.14419/ijet.v7i4.28919