Peer Reviewed Journal via three different mandatory reviewing processes, since 2006, and, from September 2020, a fourth mandatory peer-editing has been added.
This research paper basically explores
and compares the different modeling
and analysis techniques and than it
also explores the model order
reduction approach and significance.
The traditional modeling and
simulation techniques for dynamic
systems are generally adequate for
single-domain systems only, but the
Bond Graph technique provides new
strategies for reliable solutions of
multi-domain system. They are also
used for analyzing linear and non
linear dynamic production system,
artificial intelligence, image
processing, robotics and industrial
automation.
This paper describes a unique
technique of generating the Genetic
design from the tree structured
transfer function obtained from Bond
Graph. This research work combines
bond graphs for model representation
with Genetic programming for
exploring different ideas on design
space tree structured transfer function
result from replacing typical bond
graph element with their impedance
equivalent specifying impedance lows
for Bond Graph multiport. This tree
structured form thus obtained from
Bond Graph is applied for generating
the Genetic Tree. Application studies
will identify key issues and
importance for advancing this
approach towards becoming on
effective and efficient design tool for
synthesizing design for Electrical
system.
In the first phase, the system is
modeled using Bond Graph technique.
Its system response and transfer
function with conventional and Bond
Graph method is analyzed and then a
approach towards model order
reduction is observed. The suggested
algorithm and other known modern
model order reduction techniques are
applied to a 11th order high pass filter
[1], with different approach. The
model order reduction technique
developed in this paper has least
reduction errors and secondly the
final model retains structural
information. The system response and
the stability analysis of the system
transfer function taken by
conventional and by Bond Graph
method is compared and analyzed.
The approach towards the Genetic
Tree formation from the Bond Graph
is also developed. The model order
reduction using Genetic Tree is in
progress.