Adams-Bashforth-Moulton

Adams-Bashforth-Moulton integration (8th order)
1,3K Downloads
Aktualisiert 25. Dez 2018

Lizenz anzeigen

Linear multi-step methods are used for the numerical solution of ordinary differential equations. Conceptually, a numerical method starts from an initial point and then takes a short step forward in time to find the next solution point. The process continues with subsequent steps to map out the solution. Single-step methods (such as Euler's method) refer to only one previous point and its derivative to determine the current value. Methods such as Runge–Kutta take some intermediate steps (for example, a half-step) to obtain a higher order method, but then discard all previous information before taking a second step. Multi-step methods attempt to gain efficiency by keeping and using the information from previous steps rather than discarding it. Consequently, multi-step methods refer to several previous points and derivative values. In the case of linear multi-step methods, a linear combination of the previous points and derivative values is used.
Here, integration of the normalized two-body problem from t0 = 0 to t = 86400(s) for an eccentricity of e = 0.1 is implemented.

Zitieren als

Meysam Mahooti (2024). Adams-Bashforth-Moulton (https://www.mathworks.com/matlabcentral/fileexchange/55433-adams-bashforth-moulton), MATLAB Central File Exchange. Abgerufen .

Kompatibilität der MATLAB-Version
Erstellt mit R2018a
Kompatibel mit allen Versionen
Plattform-Kompatibilität
Windows macOS Linux
Kategorien
Mehr zu Partial Differential Equation Toolbox finden Sie in Help Center und MATLAB Answers

Community Treasure Hunt

Find the treasures in MATLAB Central and discover how the community can help you!

Start Hunting!

Adams Bashforth Moulton 8th order

Version Veröffentlicht Versionshinweise
1.1

Revised on 2018-12-25.

1.0.0.0

Accuracy assessment is added to ABM8_test.m