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Multiband Sierpinskl fractal patch antenna

Abstract

The multiband behavior of the Sierpinski patch antenna is described, and a new technique to improve the multiband behavior from the point of view of the radiation patterns is introduced. The technique suppresses the effects of the high order modes and a patch antenna with similar radiation patterns can be designed. Once the high order mode has been suppressed for the second band, the next step is to try eliminate it for the third and fourth band breaking the appropriate junctions.

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Multiband Sierpinskl fractal patch antenna

Author: Borja Borau, Carmen,Romeu Robert, Jordi
Publisher: Institute of Electrical and Electronics Engineers (IEEE)
Year: 2000
DOI: 10.1109/APS.2000.874572
Source: https://upcommons.upc.edu/bitstream/2117/103973/1/00874572.pdf
Mul iband Sie pinski F ac al Pa ch An enna
C.
Bo~ja*,
J.
Romeu:
Elec omagne ics
&
Pho onics Enginee ing G oup, Dep . o
Signal Theo y and Communica ions, Uni e si a Poli knica de Ca alunya (UPC), c/
G an Capi a
sln,
Modul
D3
Campus No d UPC,
08034
Ba celona, Spain;
e-mail:
[email p o ec ed]; h p://www- sc.upc.es.
Abs ac
The mul iband beha io o he Sie pinski pa ch an enna is desc ibed in his
pape , and a new echnique o imp o e he mul iband beha io om he pin
o
iew o
he adia ion pa e ns is in cduced in
his
pape .
In oduc ion
The
use
o ac al geome ies is a new solu ion o design mul iband
an ennas. The mul iband beha io o he
Sie pinski
monopole has been p esen ed and
discussed, such monopole displayed a simila beha io o e i e bands om bo h
he
inpu e u n
loss
and he adia ion pa e ns pin o iew [l-21. The Sie pinski pa ch
an enna has been analyzed using an
I e a i e Neh o k
Model
[3]
and he inpu
impedance p esen ed a log-pe iodic dis ibu ion o
he
esonan equencies wi h a log-
pe iod ha is simila o he scale ac o be ween he iangles. The nex logical s ep is o
explo e he mul iband beha io o
he
Sie pinski pa ch an enna om he poin o iew
o
he adia ion pa e ns.
The adi ional Sie pinski pa ch an enna
The
geome y o he adi ional
Sie pinski pa ch an enna is displayed
in
Fig.l.a, he gaske is cons uc ed h ough ou
i e a ions,
so
ou -scaled e sions o he Sie pinski Gaske a e ound
on
he an enna
(ci cle egions in Fig.l.a), whe e he smalles is a single iangle. The e is a ac o
o
wo be ween scales, which
means
ha
he
Sie pinski Gaske heigh s
a e
88.9,44.5, 22.3
and 11.1
mm.
This pa icula shape has been chosen due o i s simila i y o he iangula pa ch
an enna [4]. The iangula like shape appea s a ou di e en scales, hen one could
expec ha a pa ch an enna wi h
his
ac al geome y would beha e simila ly o a
iangula pa ch an enna bu a ou di e en bands.
F om he poin o iew o he inpu impedance, he adi ional pa ch an enna p esen s a
mul iband beha io . The inpu esis ance and eac ance o he adi ional Sie pinski
pa ch displayed
in
Fig.1.a is plo ed in Fig.2. The pa ch is nume ically analyzed using a
MOM
code,
he
g ound plane is conside ed Mi e and
he
pa ch is
eed
by a coaxial
p obe. The inpu impedance p esen s ou esonan equencies (1.17, 2.57, 5.42 and
11.17
GHz)
co esponding o he ou subgaske s ha compose he Sie pinski pa ch, he
ou bands a e log-pe iodically spaced by a ac o o 6.2, which is exac ly
he
cha ac e is ic scale ac o ha ela es
he
se e al gaske sizes
wi hin
he ac al
shape.
0-7803-6369-8/00/$10.00
02000
IEEE
1708
__---_
3,'
sie pbk
"x
Pe u bed
Sie pinski
'>
'
Ai
:
.....
...
coaxialp obe
.il -------
Ai
:
.g
acoaxipbe
Tcod
pbe
(b)
Fig.1.
Geome y and con igu a ion
o
he
adi ional and
o
he
pe u bed
Sie pinski pa ch
an ennas.
The
sepa a ion be ween
he
g ound plane and
he
pa ch su ace is
h,=3
nun.
500
0
I2
3
4
5
6
7
8
9
1011
-500
ww
Fig.2.
Inpu esis ance and eac ance
o
he
adi ional Sie pinski and
o
he
pe u bed
Sie pinski pa ch an ennas.
The
p oblem is ha om he second band o he o h one, he high
o de
modes deg ade
he adia ion pa e ns, which ha e a null a
he
b oadside di ec ion.
The
deg ada ion
o
he adia ion pa e n is due o he ac ha
he
high o de modes
o
he Sie pinski pa ch
ha e a esonan equency simila o he esonan equencies associa ed o he
h ee
smalles subgaske s wi h heigh s
44.5,
22.3
and
11.1
nun.
The
cu en densi y
dis ibu ions o he ou esonan equencies a e displayed in Fig.3. I is in e es ing o
no ice ha a each band he cu en concen a es o e a p ope ly scaled subs uc u e on
he pa ch (ci cula egions in Fig.l), his egion becomes smalle when he equency is
inc eased. Howe e , o he second, hi d and ou h equency bands ela ed o he
Sie pinski iangles wi h heigh s
44.5,
22.3
and
11.1
mm
espec i ely,
he
high
o &
modes
associa ed o he Sie pinski gaske s o uppe i e a ions can be obse ed in he
cu en densi y dis ibu ions.
The
high
o de
modes
a e esponsible ha he cu en
densi y is dis ibu ed o e a egion ha
is
bigge han
he
egion co esponding a each
1709
subgaske . Fo ins ance, a
he
second band he cu en is high a he op junc ions
(do ed
line) while he subgaske associa ed a
his
band is only
44.5
mm
all.
Fig.3.
Cu en densi y dis ibu ions
o
he
adi ional Sie pinski pa ch.
The pe u bed Sie pinski pa ch an enna
In o de o educe he p esence o he
high o de modes a he second band, he geome y o he Sie pinski pa ch an enna is
modi ied
like
in Fig.1.b. The op junc ions
a e
b oken because he densi y cu en a he
second
band is ay high a hese
poin s
(Fig.3). and
his
b eaking o ce a minimum
densi y cu en in hese posi ions.
To
analyze he in luence o he b eaking in he inpu and adia ion pa ame e s he
pe u bed pa ch is analyzed using a
MOM
code. The con igu a ion and heigh
o
he
pa ch is displayed in Fig.
1
.b, and is simila o he adi ional Sie pinski pa ch.
The
inpu esis ance and eac ance a e plo ed in Fig.2. The main di e ences a e ha
a
new band appea s a 1.84 GHz
( his
esonan equency is
1.91
imes
bigge
han
he
ns one) and he ns esonance equency (0.96 GHz) is
1.2
imes
smalle han he
equency
o
he adi ional Sie pinski pa ch
(1.17
GHz).
The new band could be ela ed
o he esonan o he Sie pinski Gaske whose heigh is
44.5
mm,
since he scale ac o
be ween
he
wo equencies
is
e y close o 2, ha is he scale ac o be ween he
heigh s
o
he wo esonan iangles. The esonan equency a 2.62 GHz mus be
connec ed o he high o de mode o he alles Sie pinski iangle.
To
p ope ly dis inguish he
eal
in luence
o
he b oken junc ions on he pa ch adia ion
pa ans, he
main
cu s
($=O"
and
$=9O")
a e plo ed
in
Fig.4 o
he
h ee esonan
equencies whose alues e e 0.96, 1.84 and 2.62 GHz. The plo s ep esen he o al
pa e n wi h a 30
dB
dynamic ange. The pa e ns o he ns and second esonan
equency a e simila be ween hem and bo h a e b oadside. I is in e es ing o no ice
ha
he
pa e n a
2.6
GHz
has
a null a b oadside due o he p esence
o
he
high
o de
mode o he 88.9
mm
all Sie pinski Gaske .
1710
Fig.4.
To al
adimn pa e n
o
he
main
cu s
(+ P
and
$=90")
o
he
pe u bed
Sie pinki
pa ch an enna.
The
b eaking o he op junc ions lends o a pa ch an enna ha p esen s a b oadside
pa e n a wo bands, since
he
in luence
o
he
high
o de
modes a
he
second band a e
supp essed. F om he poin o iew o
he
adia ion pa e ns, he mul iband beha io
o
he Sie pinski pa ch an enna can be imp o ed b eaking he app op ia e junc ions.
Conclusions
A new echnique o imp o e he mul iband beha io om he poin
o
iew
o
adia ion pa e ns o he Sie pinski pa ch
has
been in oduced. The echnique
supp esses he e ec s o he
high
o de
modes and a pa ch an enna wi h simila adia ion
pa e ns can be designed. Once he
high
o de
mode has been supp essed o he second
band, he nex s ep
is
o
y
elimina e i
o
he hi d and o h band b eaking he
app op ia e junc ions.
Acknowledgmen s
Pa
o
his
esea ch has been inanced by he Eu opean
Commission
h ough
g an FEDER 2FD97-0135.
Re e ences
[l]
C.
Puen e, J. Romeu, R. Ba olome, and R.
Pous.
"Pe u ba ion o he Sie pinski
An enna o Alloca e Ope a ing Bands",
IEE Elec onics Le e s,
ol. 32, no. 24, pp.
2186-2187, No embe 1996.
[2] C. Puen e,
J.
Row,
R. Pous,
A.
Ca dama. "On he Beha io
o
he Sie pinski
Mul iband An enna",
IEEE T ansac ions on An ennas and P opaga ion,
ol. 46, no.
4, pp.517--524, Ap il 1998.
[3] C. Bo ja,
C.
Puen e, A. Medina. "I e a i e ne wo k model o p edic he beha iou
o a Sie pinski ac al ne wo k",
ZEEE
Elec onic Le e s,
ol. 34, no.
15,
pp. 1443--
1445,1998.
[4] Kai-Fong
Lee,
Kwai-Man-Luk, and Jashwan S.Dahele. "Cha ac e is ics o he
Equila e al T iangula Pa ch An enna",
IEEE T ansac ions
on
An ennas and
P opaga ion,
ol. 36, no. 11, pp.1510--1518, No embe 1988.
1711