Energy Engineering,
Journal Year:
2024,
Volume and Issue:
121(11), P. 3417 - 3435
Published: Jan. 1, 2024
A
robust
scheduling
optimization
method
for
wind-fire
storage
system
distribution
based
on
the
mixed
carbon
trading
mechanism
is
proposed
to
improve
rationality
of
emission
quota
allocation
while
reducing
instability
large-scale
wind
power
access
systems.A
hybrid
that
combines
shortterm
and
long-term
constructed,
a
fuzzy
set
Wasserstein
measurement
address
uncertainty
access.Moreover,
windfire
systems
formed.Results
multi
scenario
comparative
analysis
practical
cases
show
can
deal
with
effectively
reduce
operating
costs
emissions.
Applied Energy,
Journal Year:
2024,
Volume and Issue:
363, P. 123061 - 123061
Published: March 26, 2024
Utilizing
surplus
renewable
energy
to
produce
and
store
green
hydrogen
can
help
meet
demands
during
periods
of
low
production,
thus
contributing
greatly
decarbonize
emission-intensive
sectors,
such
as
the
residential
building
sector.
In
this
context,
manuscript
reports
design,
construction
operation
a
hybrid
PV‑hydrogen
demonstrative
pilot
(PVHyP)
for
100%
electrical
self-sufficiency
social
housing
in
town
Novales
(Spain).
The
work
addresses
i)
collection
real
consumption
data
from
dwelling,
ii)
design
considering
characteristics
market
availability
devices,
iii)
final
balance
plant
implementation,
iv)
management
strategy
followed.
implemented
control
system
allows
facility
be
tracked
operated
remotely.
Besides,
flagship
implementation
SUDOE
region
(Spain,
Portugal
southwest
France)
has
achieved
independence
grid
under
diverse
climate
conditions,
eliminating
2260
kg
CO2
emissions
associated
electricity
consumption,
saving
almost
15,200
kWh
primary
two
years
monitoring.
Thus,
around
1170
€
where
avoided
bills
(100%
savings),
resulting
on
multiple
benefits
dwellers
risk
poverty.
International Journal of Electrical Power & Energy Systems,
Journal Year:
2024,
Volume and Issue:
156, P. 109776 - 109776
Published: Jan. 8, 2024
To
solve
the
problem
of
coupled
and
coordinated
dispatch
multi-energy
between
campus
integrated
energy
system
operator
users.
A
bi-level
Stackelberg
low-carbon
economic
model
with
horizontal
vertical
demand
response
dynamic
supply
pricing
(DSDMEP)
is
proposed.
Firstly,
DSDMEP
established
to
effectively
coordinate
interests
upper
CIESO
lower
Secondly,
combined
heat
power
containing
gas
carbon
capture
reward
penalty
stepped
trading
mechanism
(SCTM)
are
introduced
on
side
minimize
emissions.
Then,
HVIDR
users
increase
coupling
adjustable
price
characteristics
demand.
Finally,
results
show
that
proposed
compared
other
scenarios
has
its
emissions
reduced
by
21.72%,
benefits
increased
27.86%,
cost
6.9%.
This
paper
also
provides
a
multi-angle
sensitivity
analysis
impact
different
parameters
SCTM
operation
(CIES),
as
well
peak
valley
electricity
difference.