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2
,
J
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201
6
,
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10
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~
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I
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N
:
2
0
8
9
-
4856
IJ
RA
Vo
l.
5
,
No
.
2
,
J
u
n
e
201
6
:
10
5
–
1
08
106
Fig
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es t
h
e
elec
tr
ic
al
g
en
er
ato
r
.
Af
ter
t
h
e
tu
r
b
in
e
h
as
e
x
tr
ac
te
d
m
o
s
t
o
f
t
h
e
h
ea
t
en
er
g
y
f
r
o
m
t
h
e
s
tea
m
,
th
e
v
ap
o
r
is
p
ass
ed
to
a
co
n
d
en
s
er
,
w
h
er
e
a
h
ea
t
ex
c
h
a
n
g
e
w
it
h
cir
cu
latin
g
co
o
lin
g
w
ater
r
etu
r
n
s
t
h
e
f
l
u
id
to
its
li
q
u
id
p
h
ase.
I
n
o
r
d
er
to
o
b
tain
m
o
r
e
w
o
r
k
f
r
o
m
th
e
s
tea
m
p
as
s
i
n
g
t
h
r
o
u
g
h
t
h
e
tu
r
b
i
n
e,
t
h
e
co
n
d
en
s
er
o
p
er
ates
at
v
ac
cu
m
co
n
d
itio
n
s
,
th
e
m
ag
n
it
u
d
e
o
f
w
h
ic
h
is
d
eter
m
in
ed
b
y
th
e
te
m
p
er
at
u
r
e
o
f
th
e
co
o
lin
g
w
ate
r
an
d
th
e
ef
f
icie
n
c
y
o
f
th
e
co
n
d
en
s
er
.
T
h
e
co
n
d
en
s
ate
is
r
e
m
o
v
ed
b
y
e
x
tr
ac
tio
n
p
u
m
p
s
a
n
d
ev
e
n
tu
al
l
y
r
et
u
r
n
e
d
to
th
e
b
o
iler
f
ee
d
s
y
s
t
e
m
v
ia
f
ee
d
h
ea
ter
s
.
B
ef
o
r
e
th
e
w
ater
i
s
p
u
t
i
n
to
th
e
b
o
iler
,
en
tr
ain
ed
o
r
d
is
s
o
lv
ed
g
ases
s
u
c
h
as
ca
r
b
o
n
-
d
io
x
id
e
w
ill
p
as
s
in
to
th
e
s
tea
m
a
n
d
tu
r
n
i
n
to
co
r
r
o
s
iv
e
ca
r
b
o
n
ic
ac
id
in
th
e
h
ea
t
ex
c
h
a
n
g
er
s
th
at
u
s
e
t
h
e
s
tea
m
.
T
h
is
co
r
r
o
d
es
th
e
h
ea
t
e
x
c
h
an
g
er
s
an
d
t
h
e
co
n
d
en
s
ate
r
et
u
r
n
p
ip
in
g
s
y
s
t
e
m
.
A
t
te
m
p
er
at
u
r
e
o
f
b
o
iler
w
ater
,
o
x
y
g
e
n
,
if
allo
w
ed
to
r
ea
ch
th
e
b
o
iler
,
c
an
s
er
io
u
s
l
y
co
r
r
o
d
e
th
e
b
o
ile
r
.
A
n
y
r
e
m
ai
n
d
er
th
at
leav
e
s
th
e
b
o
iler
w
it
h
th
e
s
tea
m
ca
n
co
r
r
o
d
e
th
e
h
ea
t
ex
ch
an
g
er
s
a
n
d
r
etu
r
n
li
n
es.
E
li
m
i
n
ati
n
g
th
e
s
e
en
tr
ain
ed
o
r
d
is
s
o
lv
ed
g
ase
s
b
ef
o
r
e
th
e
y
ca
n
en
ter
th
e
b
o
iler
is
ca
ll
ed
d
ea
er
atio
n
an
d
is
d
o
n
e
b
y
a
d
ea
er
atin
g
h
ea
ter
.
2.
P
ARAM
E
T
E
RS
T
O
B
E
CO
NT
RO
L
L
E
D
I
N
A
B
O
I
L
E
R
T
h
e
d
r
u
m
b
o
iler
s
y
s
te
m
is
t
h
e
s
tea
m
g
en
er
atio
n
u
n
it
w
it
h
i
n
m
o
s
t
f
o
s
s
il
f
u
elled
p
o
w
er
p
la
n
ts
.
W
ater
is
f
ed
in
to
th
e
d
r
u
m
.
T
h
is
w
at
er
is
co
n
s
tan
tl
y
cir
cu
lated
in
to
th
e
d
o
w
n
co
m
er
s
,
w
h
ich
ar
e
lar
g
e
d
ia
m
eter
tu
b
e,
an
d
b
ac
k
u
p
th
e
r
is
er
s
t
h
r
o
u
g
h
th
e
f
u
r
n
ac
e
w
h
e
r
e
t
h
e
y
ar
e
s
u
p
p
lied
w
i
th
h
ea
t
an
d
ar
e
b
o
iled
.
T
h
e
r
is
er
s
ar
e
lar
g
e
n
u
m
b
er
o
f
s
m
a
ll
d
ia
m
et
er
tu
b
es
to
m
a
x
i
m
ize
h
ea
t
ex
c
h
an
g
e.
T
h
e
m
i
x
t
u
r
e
o
f
w
ater
an
d
s
tea
m
f
r
o
m
th
e
r
is
er
s
r
e
-
e
n
ter
s
t
h
e
d
r
u
m
.
Her
e
th
e
y
ar
e
s
ep
ar
ated
an
d
th
e
s
tea
m
is
r
elea
s
ed
to
s
p
in
th
e
t
u
r
b
in
e
a
n
d
t
h
er
eb
y
g
en
er
ate
t
h
e
elec
tr
icit
y
.
T
h
er
e
ar
e
a
n
u
m
b
er
o
f
p
ar
a
m
e
ter
s
th
at
ar
e
to
b
e
co
n
tr
o
lled
in
th
er
m
al
p
o
w
er
p
lan
t.
T
h
e
y
ar
e
m
en
tio
n
ed
b
elo
w
.
1.
Stea
m
te
m
p
er
atu
r
e
o
f
t
h
e
b
o
iler
2.
Ma
in
te
n
an
ce
o
f
p
r
ess
u
r
e
d
u
r
i
n
g
th
e
p
r
o
ce
s
s
3.
Ma
in
te
n
an
ce
o
f
d
r
u
m
le
v
el
i
n
th
e
b
o
iler
d
r
u
m
4.
Fu
el
q
u
al
it
y
T
h
er
e
ar
e
v
ar
io
u
s
co
n
tr
o
l
m
e
t
h
o
d
s
to
m
ai
n
tai
n
t
h
ese
p
ar
a
m
e
ter
s
in
t
h
e
p
o
w
er
p
lan
t.
T
h
e
m
eth
o
d
s
u
s
ed
ar
e
o
ld
er
m
eth
o
d
s
an
d
th
e
y
d
o
lag
i
n
ac
cu
r
ac
y
.
He
n
ce
to
p
r
o
v
id
e
ac
cu
r
ac
y
i
n
o
u
tp
u
ts
v
a
r
io
u
s
o
t
h
er
m
o
d
er
n
tech
n
iq
u
es
w
er
e
i
n
v
e
n
ted
.
I
n
t
h
is
p
ap
er
th
e
co
n
tr
o
l o
f
s
tea
m
te
m
p
er
atu
r
e
is
alo
n
e
ill
u
s
tr
ate
d
.
3.
T
RAD
I
T
I
O
NAL M
E
T
HOD
C
o
n
ti
n
u
o
u
s
p
r
o
ce
s
s
es
i
n
p
o
w
er
p
lan
t
an
d
p
o
w
er
s
tatio
n
[
Fig
(
2
)
]
ar
e
c
o
m
p
lex
s
y
s
te
m
s
ch
ar
ac
ter
ized
b
y
n
o
n
li
n
ea
r
it
y
,
u
n
ce
r
tain
t
y
a
n
d
lo
ad
d
is
tu
r
b
an
ce
.
T
h
e
s
u
p
e
r
h
ea
ter
is
a
m
ai
n
p
ar
t
i
n
t
h
e
p
r
o
ce
s
s
o
f
g
e
n
er
atio
n
o
f
s
tea
m
i
n
t
h
e
b
o
iler
an
d
t
u
r
b
in
e
s
y
s
te
m
,
w
h
er
e
s
tea
m
is
h
ea
ted
to
its
s
u
p
er
h
ea
t
te
m
p
er
a
tu
r
e
b
ef
o
r
e
en
ter
i
n
g
th
e
tu
r
b
i
n
e,
w
h
ic
h
i
n
tu
r
n
d
r
iv
es
t
h
e
g
e
n
er
ato
r
.
Du
e
to
th
e
d
ev
iatio
n
s
in
t
h
e
te
m
p
er
at
u
r
e
an
d
p
r
ess
u
r
e
in
t
h
e
b
o
iler
,
th
e
s
tea
m
g
e
n
er
ated
i
s
ex
tr
e
m
el
y
n
o
n
li
n
ea
r
.
T
h
er
ef
o
r
e,
co
n
tr
o
llin
g
s
u
p
er
h
ea
ted
s
t
ea
m
te
m
p
er
atu
r
e
is
n
o
t o
n
l
y
tec
h
n
icall
y
ch
a
llen
g
i
n
g
b
u
t a
ls
o
ec
o
n
o
m
icall
y
i
m
p
o
r
tan
t.
Evaluation Warning : The document was created with Spire.PDF for Python.
IJ
RA
I
SS
N:
2089
-
4856
E
mb
ed
d
ed
F
u
z
z
y
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iler
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tr
o
l
(
C
el
in
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107
T
h
e
s
tea
m
g
e
n
er
ated
f
r
o
m
th
e
b
o
iler
d
r
u
m
p
ass
es
t
h
r
o
u
g
h
t
h
e
lo
w
te
m
p
er
at
u
r
e
s
u
p
er
h
ea
te
r
b
ef
o
r
e
it
en
ter
s
t
h
e
r
ad
ian
t
t
y
p
e
p
laten
s
u
p
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h
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ter
.
W
ater
is
s
p
r
ay
ed
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e
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m
to
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tr
o
l
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p
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h
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ted
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m
p
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n
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lo
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a
n
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ig
h
te
m
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er
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u
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e
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u
p
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h
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ter
s
.
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r
o
p
er
co
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tr
o
l
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f
th
e
s
u
p
er
h
ea
ted
s
tea
m
te
m
p
er
atu
r
e
is
e
x
tr
e
m
el
y
i
m
p
o
r
tan
t to
e
n
s
u
r
e
th
e
o
v
er
all
e
f
f
i
cien
c
y
a
n
d
s
a
f
et
y
o
f
t
h
e
p
o
w
e
r
p
lan
t.
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f
t
h
e
s
tea
m
te
m
p
er
atu
r
e
is
to
o
h
ig
h
,
it
ca
n
d
am
a
g
e
th
e
s
u
p
er
h
ea
ter
an
d
th
e
h
i
g
h
p
r
ess
u
r
e
tu
r
b
in
e,
o
r
if
it
w
ill
b
e
to
o
l
o
w
,
it
w
il
l
lo
w
er
th
e
e
f
f
icien
c
y
o
f
th
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o
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lan
t.
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n
ce
it
is
also
v
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i
m
p
o
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tan
t
to
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ed
u
ce
th
e
te
m
p
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a
tio
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s
i
n
s
id
e
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u
p
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ter
,
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it
ca
n
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elp
m
i
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m
ize
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h
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ical
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e
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s
t
h
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ca
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s
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m
icr
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cr
ac
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s
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th
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w
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r
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h
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ce
f
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li
f
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o
f
t
h
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u
n
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a
n
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ain
ten
a
n
ce
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h
e
ex
is
ti
n
g
GP
C
is
d
ev
elo
p
ed
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y
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ed
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ci
n
g
th
ese
f
lu
c
tu
at
io
n
s
,
b
ec
au
s
e
o
f
w
h
ic
h
it is
co
n
s
id
er
ed
as a
s
u
c
ce
s
s
f
u
l c
o
n
tr
o
ller
.
Fig
u
r
e
2
.
Sch
e
m
atic
Dia
g
r
a
m
o
f
th
e
P
o
w
er
P
lan
t
4.
F
U
Z
Z
Y
L
O
G
I
C
G
E
N
E
RALI
Z
E
D
E
M
B
E
DDED
SYST
E
M
F
O
R
S
UP
E
R
H
E
A
T
E
R
T
E
M
P
E
RATU
RE
CO
N
T
R
O
L
Fu
zz
y
lo
g
ic
o
p
er
ato
r
s
p
r
o
v
id
e
a
f
o
r
m
al
m
et
h
o
d
o
f
m
a
n
ip
u
l
atin
g
v
ar
iab
le
s
th
a
t
ar
e
li
n
g
u
i
s
tic
.
I
t
is
a
v
er
y
p
r
o
d
u
cti
v
e
p
r
o
ce
d
u
r
e
to
u
s
e
f
u
zz
y
lo
g
ic
a
s
j
u
s
t
a
n
o
th
e
r
p
r
o
g
r
am
m
i
n
g
p
ar
ad
ig
m
.
Fu
z
z
y
lo
g
ic
cr
itics
ar
e
co
r
r
ec
t in
s
tatin
g
t
h
at
th
e
y
ca
n
d
o
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th
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er
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i
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g
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a
t f
u
zz
y
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g
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ca
n
d
o
.
A
t
s
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m
e
p
o
in
t
al
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o
f
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s
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ill
s
a
y
t
h
at
it
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o
t
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an
d
a
t
s
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m
e
p
o
in
t
w
e
w
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r
ee
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at
it
is
h
o
t.
T
h
e
d
if
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ce
b
et
w
ee
n
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n
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o
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o
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n
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o
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t
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Vo
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5
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2
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201
6
:
10
5
–
1
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108
T
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it
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ter
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co
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th
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f
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RE
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h
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m
a
in
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to
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Re
f
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c
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s
a
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in
V
a
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sty
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.
P
lea
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u
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a
c
o
n
siste
n
t
f
o
rm
a
t
f
o
r
re
f
e
r
e
n
c
e
s
–
se
e
e
x
a
m
p
les
b
e
lo
w
(9
p
t)
:
[1
]
T
a
k
a
g
i
a
n
d
M
.
S
u
g
e
n
o
,
“
F
u
z
z
y
id
e
n
ti
f
ica
ti
o
n
o
f
sy
st
e
m
s
a
n
d
it
s
a
p
p
li
c
a
ti
o
n
s
to
m
o
d
e
li
n
g
a
n
d
c
o
n
tr
o
l”,
IEE
E
T
r
a
n
s.
S
y
st.,
M
a
n
,
Cy
b
e
rn
.
,
v
o
l.
S
M
C
–
1
5
,
n
o
.
1
,
p
p
.
1
1
6
–
1
3
2
,
Ja
n
.
/
F
e
b
.
1
9
8
5
.
[2
]
Zh
e
n
X
ian
g
,
Jin
f
a
n
g
Zh
a
n
g
,
“
Bo
i
ler
ste
a
m
te
m
p
e
r
a
tu
re
c
o
n
tro
l
b
a
se
d
o
n
l
in
e
a
r
a
c
ti
v
e
d
istu
rb
a
n
c
e
re
jec
ti
o
n
c
o
n
tro
l”
,
IEE
E
Exp
l
o
re
,
Co
n
tro
l
a
n
d
De
c
isi
o
n
C
o
n
fer
e
n
c
e
(
CCDC
)
,
p
p
.
1
8
9
3
-
1
8
9
7
,
2
3
-
2
5
M
a
y
2
0
1
1
.
[3
]
A
n
k
it
h
Ra
jas
h
e
k
a
r
M
u
ll
a
n
g
i,
S
a
n
jay
A
M
e
n
o
n
,
L
a
k
sh
m
ish
re
e
S
S
,
“
T
e
m
p
e
ra
tu
re
c
o
n
tro
l
o
f
b
o
i
ler
–
im
p
ro
v
in
g
e
ff
ici
e
n
c
y
a
n
d
li
f
e
ti
m
e
”
h
tt
p
:/
/w
ww
.
a
c
a
d
e
m
ia.ed
u
/5
4
7
6
1
2
7
/BOIL
ER_
S
T
EA
M
_
TE
M
P
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T
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CON
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RO
L
_
a
c
s_
p
a
p
e
r
[4
]
Ra
h
u
l
M
a
lh
o
tra
a
n
d
Ra
ji
n
d
e
r
S
o
d
h
i,
“
B
o
il
e
r
F
lo
w
Co
n
tr
o
l
Us
in
g
P
ID
a
n
d
F
u
z
z
y
L
o
g
ic
Co
n
tro
ll
e
r”
,
IJ
CS
ET
,
Ju
ly
2
0
1
1
,
Vo
l
1
,
Iss
u
e
6
,
3
1
5
-
3
1
9
.
[5
]
Na
m
ra
ta
De
y
,
Ria
M
a
n
d
a
l,
M
M
o
n
ica
S
u
b
a
sh
in
i
,
“
De
sig
n
a
n
d
Im
p
le
m
e
n
tatio
n
o
f
a
W
a
ter
Lev
e
l
Co
n
tro
ll
e
r
u
si
n
g
F
u
z
z
y
L
o
g
ic”
,
In
ter
n
a
ti
o
n
a
l
J
o
u
r
n
a
l
o
f
E
n
g
in
e
e
rin
g
a
n
d
T
e
c
h
n
o
lo
g
y
(
IJ
ET
)
,
Vo
l
5
,
Iss
u
e
3
,
2
2
7
7
-
2
2
8
5
,
Ju
n
-
Ju
l
2
0
1
3
.
[6
]
T
.
Ka
ru
p
p
iah
,
V
.
S
iv
a
sa
n
k
a
ra
n
,
Dr.
A
z
h
a
.
P
e
rias
a
m
y
,
Dr.
S
.
M
u
ru
g
a
n
a
n
d
,
“
Em
b
e
d
d
e
d
S
y
ste
m
B
a
se
d
In
d
u
strial
P
o
w
e
r
P
lan
t
Bo
il
e
r
A
u
to
m
a
ti
o
n
Us
in
g
G
S
M
T
e
c
h
n
o
lo
g
y
”
,
In
ter
n
a
ti
o
n
a
l
J
o
u
rn
a
l
o
f
Ad
v
a
n
c
e
d
Res
e
a
rc
h
in
Co
mp
u
ter
a
n
d
Co
mm
u
n
ica
t
io
n
En
g
i
n
e
e
rin
g
,
Vo
l.
2
,
Iss
u
e
8
,
3
3
2
1
-
3
3
2
5
,
A
u
g
u
st 2
0
1
3
.
[7
]
O
m
P
ra
k
a
sh
V
e
rm
a
,
Ga
u
ra
v
M
a
n
ik
,
“
Co
m
p
a
ra
ti
v
e
A
n
a
l
y
sis
o
f
Bo
i
ler
Dru
m
le
v
e
l
Co
n
tro
l
Us
in
g
A
d
v
a
n
c
e
d
Clas
sic
a
l
A
p
p
ro
a
c
h
e
s”
,
In
ter
n
a
ti
o
n
a
l
J
o
u
r
n
a
l
o
f
En
g
in
e
e
rin
g
S
c
ien
c
e
a
n
d
I
n
n
o
v
a
ti
v
e
T
e
c
h
n
o
lo
g
y
(
IJ
ES
IT
)
Vo
lu
m
e
2
,
Iss
u
e
5
,
125
-
1
3
6
,
S
e
p
tem
b
e
r
2
0
1
3
.
[8
]
Ra
v
in
d
ra
Ku
m
a
r
P
,
Ra
m
c
h
a
n
d
ra
Ra
ju
V
a
n
d
Ra
v
i
Ku
m
a
r
N,
“
Eff
e
c
t
o
f
P
a
ra
m
e
ters
in
On
c
e
-
Th
ro
u
g
h
Bo
i
ler
f
o
r
Co
n
tr
o
ll
i
n
g
Re
h
e
a
t
S
tea
m
Te
m
p
e
ra
tu
re
in
S
u
p
e
rc
rit
ica
l
P
o
w
e
r
P
l
a
n
ts”
,
Res
e
a
rc
h
J
o
u
r
n
a
l
o
f
En
g
i
n
e
e
rin
g
S
c
ien
c
e
s
,
V
o
l
.
2
,
Iss
u
e
1
,
2
7
-
3
4
,
Ja
n
u
a
ry
2
0
1
3
.
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