Sustainable Production and Consumption,
Год журнала:
2022,
Номер
31, С. 287 - 300
Опубликована: Фев. 25, 2022
Industrial
production
needs
to
be
fundamentally
transformed
if
the
UN
Sustainable
Development
Goals
shall
met.
Digital
technologies
can
potentially
drive
such
a
sustainable
transformation,
but
two
main
objectives
of
environmental
sustainability
must
considered
for
achieving
this
target:
decarbonisation
and
dematerialisation.
We
empirically
investigate
potentials
these
by
employing
survey-based
approach,
investigating
companies'
developments
in
China,
Brazil,
Germany,
variety
industrial
sectors,
companies
different
sizes.
These
cases
provide
insight
on
multi-country
perspective
into
digitalisation
countries
with
pre-conditions
digital
which
is
novelty
research
field.
show
that
even
though
most
practitioners
expect
an
improvement
their
respective
company
due
application
Industry
4.0
technologies,
factual
improvements
resource
efficiency
energy
consumption
are
not
expected
develop
similarly
optimistic
fashion.
findings
challenge
assumed
effects
discussed
vast
majority
prior
literature
expresses
high
hopes
positive
impacts
.
This
interpreted
as
indication
will
automatically
lead
instead
transformation
towards
more
economy
accompanied
supporting
measures.
On
side
we
find
higher
current
level
companies,
greater
ability
match
supply
actual
demand
likelihood
participating
Demand
Response
schemes.
important
prerequisite
stabilisation
efficient
use
future
renewable
systems.
Our
study
provides
insights
policy
makers
also
fellow
researchers
regarding
trends
implementation
how
far
they
support
sustainability.
conclude
concept
should
always
critically
evaluated
against
background
SDGs
supplemented
combination
regulation
incentives
through
governing
bodies,
includes
setting
binding
targets
saving
material
reducing
non-recyclable
waste.
Cognitive Robotics,
Год журнала:
2021,
Номер
1, С. 58 - 75
Опубликована: Янв. 1, 2021
There
is
the
increased
application
of
new
technologies
in
manufacturing,
service,
and
communications.
Industry
4.0
fourth
industrial
revolution,
which
supports
organisational
efficiency.
Robotics
an
important
technology
4.0,
provides
extensive
capabilities
field
manufacturing.
This
has
enhanced
automation
systems
does
repetitive
jobs
precisely
at
a
lower
cost.
progressively
leading
to
manufacturing
quality
products
while
maintaining
value
existing
collaborators
schemes.
The
primary
outcome
intelligent
factories
developed
with
aid
advanced
robotics,
massive
data,
cloud
computing,
solid
safety,
sensors,
Internet
things,
other
technological
developments
be
highly
powerful,
safe,
cost-effective.
Thus,
businesses
will
refine
their
for
mass
adaptation
by
improving
workplace's
safety
reliability
on
actual
work
saving
costs.
paper
discusses
significant
potential
allied
areas.
eighteen
major
applications
4.0.
Robots
are
ideal
collecting
mysterious
data
as
they
operate
closer
component
than
most
factory
machines.
helpful
perform
complex
hazardous
job,
automation,
sustain
high
temperature,
working
entire
time
long
duration
assembly
lines.
Many
robots
operating
use
artificial
intelligence
high-level
tasks.
Now
can
also
decide
learn
from
experience
various
ongoing
situations.
Sustainable Production and Consumption,
Год журнала:
2022,
Номер
33, С. 716 - 737
Опубликована: Авг. 5, 2022
Scholars
believe
that
the
newly
introduced
Industry
5.0
has
potential
to
move
beyond
profit-centered
productivity
of
4.0
and
promote
sustainable
development
goals
such
as
human-centricity,
socio-environmental
sustainability,
resilience.
However,
little
been
done
understand
how
this
ill-defined
phenomenon
may
deliver
its
indented
sustainability
values
despite
these
speculative
promises.
To
address
knowledge
gap,
present
study
developed
a
strategy
roadmap
explains
mechanism
by
which
delivers
intended
functions.
The
first
reference
model
describes
technical
functional
properties
phenomenon.
further
conducted
content-centric
synthesis
literature
identified
functions
5.0.
Next,
interpretive
structural
modeling
(ISM)
technique
was
employed
identify
sequential
relationships
among
construct
5.0-enabled
development.
ISM
involved
collecting
opinions
11
experts
through
expert
panel
meetings.
Results
revealed
16
Circular
intelligent
products,
employee
assistance,
automation,
open
innovation,
renewable
integration,
supply
chain
adaptability
are
examples
identified.
These
highly
interrelated
should
be
in
specific
order
so
synergies
complementarities
them
would
maximize
value
gains.
5.0-driven
is
expected
provide
better
understanding
ways
can
contribute
development,
explaining
managed
their
contribution
values.
also
highlights
important
avenues
for
future
research,
emphasizing
enablers
Government
or
Corporate
Governance
Business Strategy and the Environment,
Год журнала:
2021,
Номер
30(8), С. 4237 - 4257
Опубликована: Авг. 3, 2021
Abstract
Despite
the
recent
interest
in
Industry
4.0
applications
for
sustainability,
little
is
known
on
processes
through
which
digital
transformation
and
technologies
enable
sustainable
innovation
manufacturing.
The
present
study
addresses
this
knowledge
gap
by
developing
a
strategic
roadmap
that
explains
how
businesses
can
leverage
to
introduce
sustainability
into
innovative
practices.
For
purpose,
conducts
systematic
review
of
extant
literature
identify
functions
applies
interpretive
structural
modeling
devise
promised
roadmap.
results
offer
interesting
insights
innovation.
developed
reveals
enables
11
functions.
underlying
principles
allow
improve
interfunctional
collaboration
better
integrate
with
internal
external
stakeholders.
further
improves
base
advanced
manufacturing
competency
promotes
organizational
capabilities
valuable
such
as
green
absorptive
capacity,
partnership,
orientation.
Through
these
functions,
subsequently
enhances
process
capacity
ability
develop
or
reintroduce
eco‐friendly
products
economically
competitively.
Overall,
complex
precedence
relationships
among
4.0,
offering
important
implications
seek
manage
development.
Journal of Industrial and Production Engineering,
Год журнала:
2023,
Номер
40(6), С. 432 - 447
Опубликована: Май 27, 2023
This
study
addresses
the
emerging
concept
of
Industry
5.0,
which
aims
to
tackle
societal
concerns
associated
with
ongoing
digital
industrial
transformation.
However,
there
is
still
a
lack
consensus
on
definition
and
scope
as
well
limited
understanding
its
technological
components,
design
principles,
intended
values.
To
bridge
these
knowledge
gaps,
conducts
content-centric
review
relevant
literature
synthesizes
evidence
develop
an
architectural
for
5.0.
The
findings
reveal
that
5.0
represents
future
transformation,
offering
potential
solutions
socio-economic
environmental
issues
were
inadequately
addressed
or
exacerbated
by
4.0.
provides
managers,
industrialists,
policymakers
comprehensive
overview
including
constituents,
smart
emphasizing
importance
stakeholder
involvement
integration
effective
governance
transformation
within
this
framework.
Corporate Social Responsibility and Environmental Management,
Год журнала:
2022,
Номер
30(3), С. 1473 - 1494
Опубликована: Дек. 8, 2022
Abstract
Although
Industry
4.0
was
believed
to
promote
sustainable
development,
it
has
ignored
or
misunderstood
many
prevailing
sustainability
concerns,
which
led
the
emergence
of
5.0
agenda.
While
desirable
values
are
widely
acknowledged,
knowledge
how
this
agenda
can
deliver
transformation
is
lacking.
The
present
study
addresses
gap,
explaining
should
be
managed
facilitate
development.
Therefore,
strives
model
underlying
mechanism
for
enabling
such
transformation.
conducted
a
content‐centric
review
literature
and
identified
11
actions
approaches
that
serve
as
enablers
further
interpretive
structural
modeling
structured
an
steps
needed
5.0.
Finally,
developed
strategy
roadmap
Results
emphasized
stakeholder
salience,
highlighting
role
integration
collaboration
in
Proactive
governmental
support
most
driving
enabler
5.0,
whereas
eco‐innovation
value
network
reformation
among
complex
hard‐to‐develop
enablers.
offer
several
implications
policymakers
practitioners,
functionality
each
approach
necessary
determines
sequential
relationships
these
strategies
identifies
their
optimal
development
sequence
synergistically.
identify
codependences
transition
highlight
interactions
complementarities.
Sensors,
Год журнала:
2022,
Номер
22(17), С. 6619 - 6619
Опубликована: Сен. 1, 2022
The
United
Nations’
sustainable
development
goals
have
emphasized
implementing
sustainability
to
ensure
environmental
security
for
the
future.
Affordable
energy,
clean
and
innovation
in
infrastructure
are
relevant
that
applied
energy
sector.
At
present,
digital
technologies
a
significant
capability
realize
target
of
energy.
With
this
motivation,
study
aims
discuss
significance
different
such
as
Internet
Things
(IoT),
artificial
intelligence
(AI),
edge
computing,
blockchain,
big
data
their
implementation
stages
generation,
distribution,
transmission,
smart
grid,
trading.
also
discusses
architecture
has
been
implemented
by
previous
studies
grid
computing.
Additionally,
we
addressed
IoT-based
microgrids,
IoT
services
electrical
equipment,
blockchain-based
Finally,
article
challenges
recommendations
effective
sector
meeting
sustainability.
Big
analytics,
twins
modeling,
virtual
power
plants
with
Metaverse,
green
major
vital
discussed
future
enhancement.
Energies,
Год журнала:
2023,
Номер
16(19), С. 6903 - 6903
Опубликована: Сен. 30, 2023
In
this
paper,
we
exploit
state-of-the-art
energy
management
in
sustainable
smart
cities
employing
the
Internet
of
Energy
(IoE).
The
primary
goal
study
is
to
leverage
cutting-edge
techniques
through
IoE
bring
about
significant
improvements
clean
processes
while
targeting
environmental
benefits,
efficiency
enhancements,
sustainability,
and
cost
reduction.
work,
present
a
comprehensive
exploration
strategies
within
context
IoE-enabled
cities.
Firstly,
provide
detailed
classification
diverse
approaches
pertinent
IoE-based
This
covers
spectrum
methodologies,
including
scheduling
optimization,
design
low-power
device
transceivers,
cognitive
frameworks,
integration
cloud
computing
technology.
Furthermore,
highlight
pivotal
role
grids
as
fundamental
elements
establishment
Within
context,
offer
overview
essential
components
that
underlie
grids,
with
notable
focus
on
intricate
realm
micro/nanogrids.
Moreover,
our
research
delves
comprehensively
into
harvesting
We
analyze
crucial
facets
like
receiver
design,
optimization
methods,
variety
sources,
efficient
approaches,
effective
routing
mechanisms.
Additionally,
delve
multifaceted
nature
across
various
domains.
Our
investigation
reaches
its
culmination
creation
novel
conceptual
framework
identification
enabling
technologies
centered
management.
Lastly,
contribute
field
by
outlining
current
challenges
mapping
potential
directions
relevant
cities,
capitalizing
capabilities
IoT.