Inherits NumericalTools.RungeKutta.
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| Dop853 (Ivp.DiffEqFunction fun, double t0, double[] y0, double t_bound, double max_step=double.MaxValue, double rtol=1e-3, double atol=1e-6, bool vectorized=false, double first_step=double.NaN, params object[] args) |
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| RungeKutta (Ivp.DiffEqFunction fun, double t0, double[] y0, double t_bound, double max_step=double.MaxValue, double rtol=1e-3, double atol=1e-6, bool vectorized=false, double first_step=double.NaN, params object[] args) |
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| OdeSolver (Ivp.DiffEqFunction fun, double t0, double[] y0, double t_bound, bool vectorized, bool support_complex, params object[] args) |
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void | SetTbound (double t_bound) |
| NBP addition to allow t_bound to increased when running in realtime integration mode. More...
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string | Step () |
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DenseOutput | Dense_output () |
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override double | EstimateErrorNorm (ref double[,] K, double h, ref double[] scale) |
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override DenseOutput | DenseOutputImpl () |
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void | PostConstructor (Ivp.DiffEqFunction fun, double t0, double t_bound, double first_step=double.NaN) |
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virtual double [] | EstimateError (ref double[,] K, double h) |
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| override (bool, string) StepImpl() |
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override DenseOutput | DenseOutputImpl () |
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double | Step_size () |
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string | TOO_SMALL_STEP = "Required step size is less than spacing between numbers." |
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double | t_old = double.NaN |
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double | t |
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double | direction |
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int | nfev |
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int | njev |
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int | nlu |
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string | status |
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double [] | y |
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object [] | args |
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static double | SAFETY = 0.9 |
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static double | MIN_FACTOR = 0.2 |
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static int | MAX_FACTOR = 10 |
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static double [] | y_new |
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double [] | C |
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double [,] | A |
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double [] | B |
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double [] | E |
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double [,] | P |
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int | order |
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int | error_estimator_order |
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int | n_stages |
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double [] | f |
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double [] | y_old |
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double [,] | K |
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double | h_previous |
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double | t_bound |
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bool | vectorized = false |
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Ivp.DiffEqFunction | fun |
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Ivp.DiffEqFunction | fun_single |
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Ivp.DiffEqFunction | fun_vectorized |
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int | n |
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virtual | bool |
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The documentation for this class was generated from the following file:
- DE Solver/Assets/NumericalTools/SciPyBased/Scripts/Solvers/Ivp/Dop853.cs