In
daily
life,
electrical
power
is
very
important
source
to
maintain
our
works.
The
all
working
branch
uses
technological
devices,
and
the
nearly
devices
use
electricity
as
a
supply.
This
situation
has
been
increased
energy
demand
during
passing
time.
mostly
produced
by
using
limited
hydroelectrical
generators,
fossil
fuel-based
independent
renewable
systems.
Our
aim
design
system
that
PV,
TEG
control
method
fuzzy
logic
control.
one
of
artificial
intelligent
systems
it
relatively
new
method.
designed
for
supply
AC
loads.
full
bridge
inverter
used
three
different
result
shown
(total
circuits)
efficiency
98.8%.
Beni-Suef University Journal of Basic and Applied Sciences,
Год журнала:
2023,
Номер
12(1)
Опубликована: Июль 17, 2023
Abstract
Background
In
recent
years,
solar
photovoltaic
technology
has
experienced
significant
advances
in
both
materials
and
systems,
leading
to
improvements
efficiency,
cost,
energy
storage
capacity.
These
have
made
a
more
viable
option
for
renewable
generation
storage.
However,
intermittent
is
major
limitation
of
energy,
systems
are
the
preferred
solution
these
challenges
where
electric
power
applicable.
Hence,
type
system
depends
on
used
electrical
generation.
Furthermore,
growing
need
sources
necessity
long-term
solutions
fueled
research
into
novel
systems.
Researchers
concentrated
increasing
efficiency
cells
by
creating
that
can
collect
convert
sunlight
power.
Main
body
abstract
This
study
provides
an
overview
development
devices.
The
use
sources,
such
as
power,
becoming
increasingly
important
address
demand
mitigate
impact
climate
change.
with
superior
properties,
higher
lower
improved
durability,
significantly
enhance
performance
panels
enable
creation
new,
efficient
review
discusses
progress
field
opportunities
associated
also
explored,
including
scalability,
stability,
economic
feasibility.
Conclusion
devices
holds
great
potential
revolutionize
energy.
With
ongoing
technological
advancements,
scientists
engineers
been
able
design
properties
durability.
be
existing
adoption
could
implications
transition
toward
sustainable
environmentally
friendly
system.
there
still
addressed,
environmental
effects,
feasibility,
before
widely
implemented.
Nonetheless,
this
promising
continued
reports
crucial
achieving
future.
lead
system,
but
further
needed
overcome
current
limitations
large-scale
implementation.
Chemical Society Reviews,
Год журнала:
2024,
Номер
53(18), С. 9254 - 9305
Опубликована: Янв. 1, 2024
With
the
increasing
demand
for
energy
and
climate
challenges
caused
by
consumption
of
traditional
fuels,
there
is
an
urgent
need
to
accelerate
adoption
green
sustainable
conversion
storage
technologies.
The
integration
flexible
thermoelectrics
with
other
various
technologies
plays
a
crucial
role,
enabling
multiple
forms
such
as
temperature
differentials,
solar
energy,
mechanical
force,
humidity
into
electricity.
development
these
lays
foundation
power
solutions
promotes
research
progress
in
conversion.
Given
complexity
rapid
this
field,
review
provides
detailed
overview
multifunctional
integrated
based
on
thermoelectric
focus
improving
material
performance,
optimizing
design
device
structures,
achieving
flexibility
expand
their
application
scenarios,
particularly
multi-functionalization
wearable
Additionally,
we
discuss
current
bottlenecks
future
directions
facilitate
continuous
advancement
field.
Energy Reports,
Год журнала:
2022,
Номер
8, С. 1361 - 1370
Опубликована: Авг. 18, 2022
The
development
of
different
renewable
energy
techniques
has
shown
their
ability
in
limiting
the
environmental
crisis
and
meeting
future
needs.
In
recent
years
many
efforts
have
been
made
order
to
produce
hybrid
systems
that
work
on
integrating
with
thermoelectric
generators
(TEGs)
increase
efficiency.
This
review
attempts
discuss
summarize
configurations
hybridizing
TEGs
sources
(solar,
fuel
cell,
biomass)
underlying
concepts
approaches
used
reach
these
hybridizations.
will
give
necessary
information
about
this
type
hybridization
encourage
for
research
due
its
promising
results.
International Journal of Smart grid,
Год журнала:
2023,
Номер
V6i3
Опубликована: Янв. 1, 2023
In
the
last
years,
there
are
several
studies
and
researches
in
literature
about
hybrid
Maximum
Power
Point
Tracking
(MPPT)
Methods
have
been
performed
to
obtain
efficient
systems.
Hybrid
systems
uses
renewable
energy
sources
features
of
these
be
known
apply
suitably.
this
article,
mentioned
sources,
MPPT
methods
explained
review
results
given
with
tables
also,
compared.
Renewable Energy,
Год журнала:
2023,
Номер
206, С. 324 - 335
Опубликована: Фев. 10, 2023
While
the
popularity
and
feasibility
of
solar
power
have
increased
toward
achieving
a
low-carbon
climate-resilient
society,
it
is
uncertain
how
changes
in
climate
attributes
will
affect
future
potential
output.
This
study
presents
comparative
assessment
terms
technology
for
harnessing
energy
from
insolation
(PVP
vs
CSP),
projections
(CMIP5
CMIP6),
emission
scenarios.
Both
CMIP5
CMIP6
multi-model
capture
major
characteristics
global
distribution
seen
PVP
CSP
calculated
using
reanalysis
data
during
historical
period.
However,
despite
general
similarity
to
CMIP5-based
results,
models
slightly
outperform
their
counterparts
regarding
quantitative
metrics
enhance
robustness
change
signal
estimated
by
statistical
significance
inter-model
consistency.
The
patterns
are
sensitive
scenarios
that
can
control
degree
warming.
Under
fossil-fueled
development
scenarios,
greater
increase
temperatures
may
lead
high
vulnerability
supply
reducing
output
both
CSP.
timely
relevant
emphasizing
benefits
mitigation,
which
support
sustainable
energy.
Global Energy Interconnection,
Год журнала:
2023,
Номер
6(5), С. 567 - 591
Опубликована: Окт. 1, 2023
The
development
of
alternative
renewable
energy
technologies
is
crucial
for
alleviating
climate
change
and
promoting
transformation.
Of
the
currently
available
technologies,
solar
has
promising
application
prospects
owing
to
its
merits
being
clean,
safe,
sustainable.
Solar
converted
into
electricity
through
photovoltaic
(PV)
cells;
however,
overall
conversion
efficiency
PV
modules
relatively
low,
most
captured
dissipated
in
form
heat.
This
not
only
reduces
power
generation
cells
but
may
also
have
a
negative
impact
on
electrical
parameters
service
life
cells.
To
overcome
shortcomings,
an
efficient
approach
involves
combining
cell
with
thermoelectric
generator
(TEG)
hybrid
PV-TEG
systems,
which
simultaneously
improve
system
by
reducing
operating
temperature
increasing
output
utilizing
waste
heat
generated
from
generate
via
TEGs.
Based
thorough
examination
literature,
this
study
comprehensively
reviews
14
maximum
point
tracking
(MPPT)
algorithms
applied
systems
classifies
them
five
major
categories
further
discussion,
namely
conventional,
mathematics-based,
metaheuristic,
artificial
intelligence,
other
algorithms.
review
aims
inspire
advanced
ideas
research
MPPT
systems.