chore: remove nbsp
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1 changed files with 5 additions and 5 deletions
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@ -45,7 +45,7 @@ type 'a dense =
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function obtained by the concatenation of the interval domains of
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each [α value] in the sequence.
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For instance, [[Some { h=3.0; f=f1 }; None; Some { h=2.0; f=f2 }]]
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For instance, [[Some { h=3.0; f=f1 }; None; Some { h=2.0; f=f2 }]]
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represents the function
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[{ h=5.0; f=fun t -> if t <= 3.0 then f1 t else f2 (t - 3.0) }]. *)
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type 'a signal =
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@ -54,7 +54,7 @@ type 'a signal =
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(** Initial value problem (IVP)
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Its solution is a function [f : [0, h] -> 'y] such that:
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Its solution is a function [f : [0, h] -> 'y] such that:
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- [f 0.0 = y0]
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- [(df/dt) t = fder t (f t)] *)
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type ('y, 'yder) ivp =
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@ -66,11 +66,11 @@ type ('y, 'yder) ivp =
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(** ODE solver
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Given a requested horizon [t], the solver returns an approximation
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of the solution to the IVP on [[0, t']] (where [t' ≤ t]).
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of the solution to the IVP on [[0, t']] (where [t' ≤ t]).
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Successive steps compute successive parts of the solution.
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Its (re)initialization parameter is the IVP to solve. That is, the
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solver must be initialized with an IVP before use. *)
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solver must be initialized with an IVP before use. *)
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type ('y, 'yder) csolver =
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(time, 'y dense, ('y, 'yder) ivp) dnode
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(* ↑ ↑ ↑ *)
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@ -160,7 +160,7 @@ type ('i, 'o, 'r, 'y, 'yder, 'zin, 'zout) hnode =
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(* We consider the simulation of a hybrid node with a solver as a
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particular case of a discrete node. That is, the simulation has an
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internal state, step function and reset function. At each step of
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the simulation, we operate according to one of two modes: discrete
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the simulation, we operate according to one of two modes: discrete
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and continuous.
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In discrete mode, we perform a discrete step using the model's
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