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>fann_create_array</H1
><DIV
CLASS="refnamediv"
><A
NAME="AEN286"
></A
><H2
>Name</H2
>fann_create_array -- Create a new artificial neural network, and return a pointer to it.</DIV
><DIV
CLASS="refsect1"
><A
NAME="AEN289"
></A
><H2
>Description</H2
><code
class="methodsynopsis"
> <span
class="type"
>struct fann * </span
>fann_create_array(<span
class="methodparam"
><span
class="type"
>float </span
><span
class="parameter"
>connection_rate</span
></span
><span
class="methodparam"
>, <span
class="type"
>float </span
><span
class="parameter"
>learning_rate</span
></span
><span
class="methodparam"
>, <span
class="type"
>unsigned int </span
><span
class="parameter"
>num_layers</span
></span
><span
class="methodparam"
>, <span
class="type"
>unsigned int * </span
><span
class="parameter"
>neurons_per_layer</span
></span
>); </code
><P
> <CODE
CLASS="function"
>fann_create_array</CODE
> will create a new artificial neural network, and return a pointer to
it. It is the same as <CODE
CLASS="function"
>fann_create</CODE
>, only it accepts an array as its final parameter
instead of variable arguments.
</P
><P
> <DIV
CLASS="example"
><A
NAME="example.api.fann_create_array"
></A
><P
><B
>Example 5-1. <CODE
CLASS="function"
>fann_create_array</CODE
> example</B
></P
><PRE
CLASS="programlisting"
>
unsigned int neurons_per_layer[3] = {2, 3, 1};
// The following two calls have identical results
struct fann * ann = fann_create_array(1.0f, 0.7f, 3, neurons_per_layer);
struct fann * ann2 = fann_create(1.0f, 0.7f, 3, 2, 3, 1);
fann_destroy(ann);
fann_destroy(ann2);
</PRE
></DIV
>
</P
><P
>This function appears in FANN >= 1.0.5.</P
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