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LMS/IST RS TWR
Standard-Advanced
An essential problem
in durability
testing exists in
the accurate
reproduction of test
track loading
histories on
durability test
rigs. The RS TWR
(Time Waveform
Replication)
software was
developed by two of
the partners from
The Durability
Alliance IST and
LMS, with the
specific objective
to accelerate this
process while
safeguarding maximum
accuracy.
Reproducing field
test conditions on
durability test rigs
is very challenging
due to the
high-amplitude
related non-linear
behaviour of
components and
subassemblies under
test. RS TWR
accurately defines a
system model which
is used to
experimentally
define the
rig-specific control
signals through an
iterative and
flexible process.
Its dedicated
graphical user
interface guides the
user through the
different phases of
the drive file
development process.
In a first phase
system
identification a
system model is
created which models
the test rig and
test structure. In a
second phase
target simulation
the drive files
required to
reproduce given road
surfaces are
determined.
Through the tight
integration of RS
TWR with the IST RS
LabSite durability
software, the
comparison of target
and measured road
profiles and the
updating of rig
control signals can
be executed fully
automatically. Once
the prescribed
correlation levels
are reached, this
iterative process is
automatically
stopped.
Template-based
interactions between
IST TWR and ISTs
digital Labtronic
8800 controller help
engineers to set up
test rigs quickly,
enabling operators
to efficiently
generate test rig
drive files and
execute durability
test campaigns.
Features &
Benefits
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Integrated with
IST RS LabSite
durability test
software and IST
Labtronic 8800
digital
controller
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Process solution
for drive file
development
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Powerful control
algorithms
including
non-square
control
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Accurate models
based on MIMO
identification
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Fully automatic
iteration
process
including
convergence and
divergence
checks
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Extensive
simulation
quality
evaluation tools
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Integrated data
management
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Templates for
definition and
storage of all
setup parameters
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Reduces the time
required to gain
control of test
rigs
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Improves the
accuracy of the
simulation
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Runs the test
rig without
operator
interaction,
while
guaranteeing a
safe operation
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Durability or
NVH specific
views allow to
get more out of
test rig results
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Efficient data
handling
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Applicable to a
wide variety of
test rigs
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