Solving Directly Higher Order Ordinary Differential Equations by Using Variable Order Block Backward Differentiation Formulae
Variable order block backward differentiation formulae (VOHOBBDF) method is employed for treating numerically higher order Ordinary Differential Equations (ODEs). In this respect, the purpose of this research is to treat initial value problem (IVP) of higher order stiff ODEs directly. BBDF method is...
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doaj-ef9d55d1868846a2b2d9b08ac63eb7c32020-11-24T21:56:15ZengMDPI AGSymmetry2073-89942019-10-011110128910.3390/sym11101289sym11101289Solving Directly Higher Order Ordinary Differential Equations by Using Variable Order Block Backward Differentiation FormulaeAsma Izzati Asnor0Siti Ainor Mohd Yatim1Zarina Bibi Ibrahim2School of Distance Education, Universiti Sains Malaysia, USM, Penang 11800, MalaysiaSchool of Distance Education, Universiti Sains Malaysia, USM, Penang 11800, MalaysiaDepartment of Mathematics, Faculty of Science, Universiti Putra Malaysia, Serdang 43400, Selangor, MalaysiaVariable order block backward differentiation formulae (VOHOBBDF) method is employed for treating numerically higher order Ordinary Differential Equations (ODEs). In this respect, the purpose of this research is to treat initial value problem (IVP) of higher order stiff ODEs directly. BBDF method is symmetrical to BDF method but it has the advantage of producing more than one solutions simultaneously. Order three, four, and five of VOHOBBDF are developed and implemented as a single code by applying adaptive order approach to enhance the computational efficiency. This approach enables the selection of the least computed LTE among the three orders of VOHOBBDF and switch the code to the method that produces the least LTE for the next step. A few numerical experiments on the focused problem were performed to investigate the numerical efficiency of implementing VOHOBBDF methods in a single code. The analysis of the experimental results reveals the numerical efficiency of this approach as it yielded better performances with less computational effort when compared with built-in stiff Matlab codes. The superior performances demonstrated by the application of adaptive orders selection in a single code thus indicate its reliability as a direct solver for higher order stiff ODEs.https://www.mdpi.com/2073-8994/11/10/1289block backward differentiation formulastiff ordinary differential equationsthird order ordinary differential equationsvariable order |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Asma Izzati Asnor Siti Ainor Mohd Yatim Zarina Bibi Ibrahim |
spellingShingle |
Asma Izzati Asnor Siti Ainor Mohd Yatim Zarina Bibi Ibrahim Solving Directly Higher Order Ordinary Differential Equations by Using Variable Order Block Backward Differentiation Formulae Symmetry block backward differentiation formula stiff ordinary differential equations third order ordinary differential equations variable order |
author_facet |
Asma Izzati Asnor Siti Ainor Mohd Yatim Zarina Bibi Ibrahim |
author_sort |
Asma Izzati Asnor |
title |
Solving Directly Higher Order Ordinary Differential Equations by Using Variable Order Block Backward Differentiation Formulae |
title_short |
Solving Directly Higher Order Ordinary Differential Equations by Using Variable Order Block Backward Differentiation Formulae |
title_full |
Solving Directly Higher Order Ordinary Differential Equations by Using Variable Order Block Backward Differentiation Formulae |
title_fullStr |
Solving Directly Higher Order Ordinary Differential Equations by Using Variable Order Block Backward Differentiation Formulae |
title_full_unstemmed |
Solving Directly Higher Order Ordinary Differential Equations by Using Variable Order Block Backward Differentiation Formulae |
title_sort |
solving directly higher order ordinary differential equations by using variable order block backward differentiation formulae |
publisher |
MDPI AG |
series |
Symmetry |
issn |
2073-8994 |
publishDate |
2019-10-01 |
description |
Variable order block backward differentiation formulae (VOHOBBDF) method is employed for treating numerically higher order Ordinary Differential Equations (ODEs). In this respect, the purpose of this research is to treat initial value problem (IVP) of higher order stiff ODEs directly. BBDF method is symmetrical to BDF method but it has the advantage of producing more than one solutions simultaneously. Order three, four, and five of VOHOBBDF are developed and implemented as a single code by applying adaptive order approach to enhance the computational efficiency. This approach enables the selection of the least computed LTE among the three orders of VOHOBBDF and switch the code to the method that produces the least LTE for the next step. A few numerical experiments on the focused problem were performed to investigate the numerical efficiency of implementing VOHOBBDF methods in a single code. The analysis of the experimental results reveals the numerical efficiency of this approach as it yielded better performances with less computational effort when compared with built-in stiff Matlab codes. The superior performances demonstrated by the application of adaptive orders selection in a single code thus indicate its reliability as a direct solver for higher order stiff ODEs. |
topic |
block backward differentiation formula stiff ordinary differential equations third order ordinary differential equations variable order |
url |
https://www.mdpi.com/2073-8994/11/10/1289 |
work_keys_str_mv |
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