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Neural networks is a field of research which has enjoyed rapid
expansion in both the academic and industrial research communities.
This volume contains papers presented at the Third Annual SNN
Symposium on Neural Networks to be held in Nijmegen, The
Netherlands, 14 - 15 September 1995. The papers are divided into
two sections: the first gives an overview of new developments in
neurobiology, the cognitive sciences, robotics, vision and data
modelling. The second presents working neural network solutions to
real industrial problems, including process control, finance and
marketing. The resulting volume gives a comprehensive view of the
state of the art in 1995 and will provide essential reading for
postgraduate students and academic/industrial researchers.
This book contains the proceedings of the International Confer ence
on Artificial Neural Networks which was held between September 13
and 16 in Amsterdam. It is the third in a series which started two
years ago in Helsinki and which last year took place in Brighton.
Thanks to the European Neural Network Society, ICANN has emerged as
the leading conference on neural networks in Europe. Neural
networks is a field of research which has enjoyed a rapid expansion
and great popularity in both the academic and industrial research
communities. The field is motivated by the commonly held belief
that applications in the fields of artificial intelligence and
robotics will benefit from a good understanding of the neural
information processing properties that underlie human intelligence.
Essential aspects of neural information processing are highly
parallel execution of com putation, integration of memory and
process, and robustness against fluctuations. It is believed that
intelligent skills, such as perception, motion and cognition, can
be easier realized in neuro-computers than in a conventional
computing paradigm. This requires active research in neurobiology
to extract com putational principles from experimental
neurobiological find ings, in physics and mathematics to study the
relation between architecture and function in neural networks, and
in cognitive science to study higher brain functions, such as
language and reasoning. Neural networks technology has already lead
to practical methods that solve real problems in a wide area of
industrial applications. The clusters on robotics and applications
contain sessions on various sub-topics in these fields."
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