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Increasing of RFID system read range

Abstract

This paper describes some computations needed to increase RFID system read range twice without any changes in RFID reader. The increasing of read range is done only by proper selection of RFID marker parameters – coil diameter and number of turns. Another way – generating stronger magnetic field from reader – can not be used because requirements of some limitations given by valid standards must be taken into account.

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Increasing of RFID system read range

Author: Vestenický, P.
Publisher: Žilinská univerzita v Žiline. Elektrotechnická fakulta
Year: 2006
Source: https://dspace.vsb.cz/bitstreams/d64f7780-465f-4116-bbc4-16b97c5836e7/download
Inc easing o RFID sys em ead ange
171
INCREASING OF RFID SYSTEM READ RANGE
P. Ves enický
Depa men o Con ol and In o ma ion Sys ems, Facul y o Elec ical Enginee ing,
Uni e si y o Žilina, Uni e zi ná 1, 010 26 Žilina, Slo akia
e-mail: pe e . es enicky@ el.u c.sk
Summa y
This pape desc ibes some compu a ions needed o inc ease RFID sys em ead ange wice wi hou any changes
in RFID eade . The inc easing o ead ange is done only by p ope selec ion o RFID ma ke pa ame e s – coil diame e and
numbe o u ns. Ano he way – gene a ing s onge magne ic ield om eade – can no be used because equi emen s o
some limi a ions gi en by alid s anda ds mus be aken in o accoun .
1. INTRODUCTION
Two yea s ago he pape s [1] and [2], which
desc ibe solu ion o some echnical p oblems o
digi al RFID ma ke and eade (loca o )
de elopmen we e published. Pa ame e s o
de eloped loca o a e ully compa able wi h simila
equipmen s p oduced in USA and Ge many. Ma ke
can be loca ed om dis ance o 2 m and
iden i ica ion code om RFID chip in ma ke can be
ead om dis ance o 1.5 m.
This pape analyzes possibili ies how o
inc ease he ead and localiza ion anges wice ( om
1.5 m o 3 m) because some enginee ing ne wo ks
(mos ly wa e and sewe age pipes) ma ked by RFID
ma ke s a e bu ied mo e han 3 m unde g ound
su ace. A he same ime alid s anda ds which
limi magne ic ield in ensi y gene a ed by loca o
mus be obse ed so ha he equipmen could be
ope a ed unde Gene al License VPR-06/2005
issued by Telecommunica ion O ice o Slo ak
Republic.
2. LIMITS FOR THE RADIATED
MAGNETIC FIELD
Fo RFID applica ions in used equency band
om 80 o 150 kHz nex s anda ds and egula ions
a e accep ed:
• Gene al License VPR-06/2005 issued by
Telecommunica ion O ice o Slo ak
Republic
• Recommenda ion ERC/REC 70-03, annex
9, issued by ERC (Eu opean
Radiocommunica ions Commi ee)
• Decision ERC/DEC/(01)13 issued by ERC
• S anda d ETSI EN 300 330-1 issued by
ETSI [3].
Tab. 1. Magne ic ield limi s a 10 m dis ance
F equency
[kHz] HMAX
[dBµA/m]
HMAX
[µA/m]
83.0 42.0 125.9
101.4 42.0 125.9
121.6 58.8 871.0
134.0 58.4 831.8
145.7 37.7 76.7
The limi s o adia ed magne ic ield measu ed
a 10 m dis ance om loca o an enna and o
di e en wo king equencies a e shown in Tab. 1.
These limi s conside an enna adius
LT
=0.1 m.
3. MAGNETIC FIELD GENERATED BY
LOCATOR
T ansmi e an enna o loca o gene a es
magne ic ield wi h in ensi y
322
)(2
)( x
SIN
xH
LT
LTLLT
L
+
=
π
[A/m] (1)
whe e indi idual symbols deno e:
- ansmi e coil numbe o u ns N
LT
=50
- diame e o ansmi e coil
LT
=0.1 m
- a ea o ansmi e coil S
LT
=0.0314 m
2
- ansmi e coil cu en I
L
=0,5 A
- dis ance om ansmi e coil x
These pa ame e s we e chosen so ha limi s
gi en in Tab. 1 a e ul illed, i. e. H
L
(x)=42 dBµA/m
o x=10 m o all wo king equencies (no e: o
equency 145.7 kHz he limi is lowe ed o 37.7
dBµA/m). Dependence o in ensi y H
L
(x) on
dis ance x is shown in nex g aph (Fig. 1) and i
gi en limi s mus be ul illed, he in ensi y canno be
in luenced by any means.
Fig. 1. Magne ic ield in ensi y gene a ed by loca o .
Ad ances in Elec ical and Elec onic Enginee ing
172
4. VOLTAGE INDUCED INTO MARKER
The magne ic ield wi h in ensi y gi en by (1)
induces in o ma ke ol age
)()( xHSNQxU
LMMMM
µω
=
[V] (2)
whe e
- ma ke coil numbe o u ns N
M
=35
- ma ke a ea S
M
=0.0314 m
2
- quali y ac o o LC ci cui Q
M
=70
- pe meabili y µ=4π.10
-6
H/m
- ci cula equency ω=637 k ad/s
Nex g aph shows dependency o ol age U
M
(x) on
dis ance x. A 1.5 m he ol age is 2.26 V and his
alue is su icien o supplying he RFID chip bu in
dis ance x=3 m he ol age is insu icien (only 0.28
V). Ra io o hese wo alues is
(
)
( )
96,7
3
5,1 =
M
M
U
U
Fig. 2. Vol age induced in o ma ke
and he e o e o co ec supplying o RFID chip a 3
m dis ance he induced ol age mus be 8 imes
inc eased. Analysis o o mula (2) shows ha i can
be done only by inc easing o numbe o u ns N
M
and/o a ea S
M
. The quali y ac o canno be
inc eased o he sake o uned LC ci cui pa asi ic
ea u es and o equi ed equency bandwid h, µ and
ω a e cons an and H
L
(x) is limi ed by s anda d [3].
5. CHANGE OF COUPLING FACTOR
BETWEEN MARKER AND LOCATOR
COILS AND ITS INFLUENCE ON
INDUCTIVITY
The coupling ac o depends on geome ical
a angemen o bo h coils (Fig. 4) and is gi en by
o mula (3) [4, 5], whe e
M
is ma ke coil adius and
θ is angle be ween coils.
Acco ding o (3) he coupling ac o a dis ance
x=1.5 m is k(1,5)=2,94.10
-4
and o x=3 m he alue
o k(3)=3,70.10
-5
, i. e. i is 8 imes smalle (Fig. 3).
I we wan o keep he coupling ac o a longe
dis ance he ma ke adius
M
in (3) mus be 4 imes
inc eased.
2
3
22
22
).(.
cos..
)(
x
xk
LTMLT
MLT
+
=
θ
[-] (3)
Fig. 3. Coupling ac o
θ

M
LT
x
Fig. 4. Geome ical a angemen o coils.
The induc i i y o ci cula coil is (acco ding o
[4])








=
0
9,1
ln...
NL
M
MMM
µ
[H] (4)
whe e
0
is conduc o adius. I he coil adius
M
is 4
imes inc eased he induc i i y is inc eased by ac o
4.ln4 i. e. 5.55 imes. I he o iginal induc i i y has
o be kep , i mus be compensa ed by numbe o
u ns N
M
dec eased by ac o 5.55
1/1.9
i. e. 2.46
imes.
6. CONCLUSION
Fo doubling RFID ma ke ead ange om 1.5
m o 3 m hese changes a e needed:
• The ma ke diame e mus be 4 imes
inc eased ( om o iginal alue o 20 cm o
80 cm).
• Numbe o u ns mus be dec eased 2.46
imes ( om o iginal alue o 35 o 14
u ns).
Inc easing o RFID sys em ead ange
173
Then he induced ol age (2) a dis ance 3 m will be
1.82 V. This is su icien o co ec supplying o he
RFID chip. Nei he he coupling ac o (3) no
induc i i y (4) will no be essen ially changed.
Expe imen al es ing o big ma ke has no been
pe o med ye and will be done in u u e.
Ano he ques ion is p ac ical usabili y o so big
ma ke – manipula ion, mechanical esis ance,
equi emen o wide exca a ion e c. and p ice.
REFERENCES
[1] Ves enický, P.: Op imiza ion o Selec ed RFID
Sys em Pa ame e s. AEEE 3, 2004, No. 2,
pages 113-114. ISSN 1336 – 1376) 483.
[2] Ves enický, P.: Solu ion o Some Technical
P oblems in Ma ke and Ma ke Loca o
De elopmen . Communica ions 6, 2004, No. 4,
pages 103-106, ISSN 1335-4205
[3] Final d a ETSI EN 300 330-1 V1.5.1.
Elec omagne ic compa ibili y and Radio
spec um Ma e s (ERM); Sho Range De ices
(SRD); Radio equipmen in he equency ange
9 kHz o 25 MHz and induc i e loop sys ems in
he equency ange 9 kHz o 30 MHz; Pa 1:
Technical cha ac e is ics and es me hods
[4] Geh ing, U., Roz, Th.: RFID made easy. EM
Mic oelec onic-Ma in SA. Ma in, Swi ze land,
2000
[5] íž, R., Ško pil, V.: ADSL Coppe Loop
P equali ica ion. P oceedings o he
In e na ional Con e ence "Resea ch in
Telecommunica ion Technology 2000". VSB-
TU, Os a a, 2000. Pages 13 – 16. ISBN 80-
7078-817-8