GSM Channel Concept

Md Mustafizur Rahman
Md Mustafizur RahmanRF Engineer en Telenor (Grameenphone Ltd.)
GSM Channel Concept
Md Mustafizur Rahman
RNPO Engineer
Grameenphone Ltd.
AIR INTERFACE
Frequency Allocation
Radio Channel
DOWNLINK
935 - 960 MHz
1805-1880 MHz
UPLINK
890-915 MHz
1710-1785 MHz
Air Interface
Cell Site
Mobile
GSM Channel Concept
GSM Channel Concept
GSM Channel Concept
GSM: TRX/TDMA Frame
25 MHZ: 890 to 915 MHz (UL)
935 to 960 MHz (DL)
Channel 1
200kHz
Channel 2
200kHz
Channel 124
200kHz
Time
Slot 0
Time
Slot 1
Time
Slot 7
TDMA Frame (4.616 ms)
57 bits
(interleaved sub block)
from a 20ms Voice frame
26 bit TSC
for error prediction
57 bits
(interleaved sub block )
from another 20ms Voice
frame
3 tail
bits
3 tail
bits
1 bit
flag
1 bit
flag
148+8.25=156.25 bits
8.25
guard
bits
Frequency band
Channels
TRX/TS
TS/bit stream
1800MHz Band : 1710-1785MHz(UL)
1805-1880MHz(DL)
Total no. of Channel is 374.
1TS=0.577ms
1bit=3.69ms
GSM Channel Concept
GSM Channel Concept
9
Superframe and Hyperframe
GSM Channel Concept
11
3 Broadcast
Channels
1) FCCH
2) SCH
3) BCCH
3 Common Control
Channels
1) PCH
2) RACH
3) AGCH
3 Dedicated Control
Channels
1) SDCCH
2) SACCH
3) FACCH
TCH
CBCH
LOGICAL CHANNELS
GSM Channel Concept
Full rate => Used for speech at 13 Kbits/s
or sending data at 9.6 Kbits/s
Half rate => Used for speech at 6.5 Kbits/s
or sending data at 4.8 Kbits/s
Enhanced Full rate => Used for speech at 13 Kbits/s
or sending data at 9.6 Kbits/s but
with almost Land line quality
TCH = TRAFFIC CHANNEL
GSM Channel Concept
GSM Channel Concept
GSM Channel Concept
FCCH = FREQUENCY CORRECTION CHANNEL (Downlink only)
•To tell the Mobile that this is the BCCH carrier
•To able the Mobile to synchronize to the frequency
•bursts only containing zeroes are transmitted.
SCH = SYNCHRONISATION CHANNEL (Downlink only)
•Used for sending BSIC (Base station Identity Code)
•Give TDMA frame number to the Mobile
BCCH = BROADCAST CONTROL CHANNEL (Downlink only)
•Used for sending information to the mobile like-
•CGI (Cell Global identity)
•LAI (Location Area Identity)
•BCCH carriers of the neighboring cells
•maximum output power allowed in the cell
•Other broadcast messages like barred cell
BROADCAST CHANNELS
PCH = PAGING CHANNEL
=> Used for paging the Mobile. (Downlink only)
Reason could be an incoming call or an incoming Short Message.
RACH = RANDOM ACCESS CHANNEL
=> Used for responding to the paging (terminating), Location updating
or to make call access (originating) by asking for a signaling channel.
(Uplink only)
AGCH = ACCESS GRANT CHANNEL
=> Used to allocate SDCCH to the mobile.
(Downlink only)
COMMON CONTROL CHANNELS
SDCCH = STAND ALONE DEDICATED CONTROL CHANNEL
=> Used for allocating voice channel (TCH) to the mobile (call setup) and
Location updating.
=> Send Short Text message to Idle Mobile
(Uplink & Downlink)
SACCH = SLOW ASSOCIATED CONTROL CHANNEL
=> Used for sending information to the mobile like
CGI (Cell Global identity), LAI (Location Area Identity),
BCCH of all the neighbors and TA (Timing Advance)
=> Send Short Text message to Busy Mobile
(Downlink
=> Used for sending signal strength & bit error rate measurement of the
serving cell and signal strength of the BCCHs of the neighboring cells.
(Uplink)
FACCH = FAST ASSOCIATED CONTROL CHANNEL
=> Used for handover. (Uplink & Downlink)
DEDICATED CONTROL CHANNELS
=> SMS messages are short TEXT messages up to 160 characters in length that you
can send or receive. The messages are not sent straight to the other mobile but is
sent to message centre operated by the Network provider.
=> If the mobile was switched off or is at outside of the coverage area,
the message is stored in the Message Service Center. The message
will be offered to the subscriber when the mobile is switched on again
or has reentered the coverage area again.
=> If the mobile is in the Idle mode the short message will be send through
the SDCCH. If the mobile is Busy the short message will send through
the SACCH.
CBCH = CELL BROADCAST CHANNEL
=> Used for sending short messages to all the mobiles within a geographic area.
Typical example is Traffic congestion in a major road or a major accident
in an area. Up to 93 characters can be sent.
=> If the mobile is in the Idle mode then the short message will be send through
the CBCH. If the mobile is Busy, it will not be sent.
NOT TO BE CONFUSED WITH SMS !!!!!!!!
(SHORT MESSAGE SERVICE)
21
Channel combinations
The following combinations of logical channel types are allowed for the
radio timeslots and specified by GSM (Rec. 05.02):
a) TCH/F + FACCH/F + SACCH/TF
b) TCH/H + FACCH/H + SACCH/TH
c) SDCCH/8 + SACCH/C8
d) FCCH + SCH + BCCH + CCCH (TS 0)-Uncombined
e) FCCH + SCH + BCCH + CCCH + SDCCH/4 + SACCH/C4 (TS 0)-combined
f) BCCH + CCCH
g) SDCCH/8 + SACCH/8 + CBCH
h) FCCH + SCH + BCCH + CCCH + SDCCH/4 + SACCH/C4 + CBCH (TS 0)
***A "+" indicates that the channels are used simultaneously.
22
a) TCH/F + FACCH/F + SACCH/TF
T-TCH/FACCH
A-SACCH
GSM Channel Concept
24
b) TCH/H + FACCH/H + SACCH/TH
25
c) SDCCH/8 + SACCH/C8
Note that the uplink and downlink patterns are time shifted, so that SDCCH subchannel 0 is sent
in frames 0-3 on downlink and in frames 15-18 on uplink. The reason for this is to achieve more
efficient communication, by giving the MS time to calculate its answers to the requests received
on downlink SDCCH.
26
d) FCCH + SCH + BCCH + CCCH (TS 0)-Uncombined
F (FCCH) Frequency Correction Channel, S (SCH) Synchronization Channel,
B (BCCH - Norm) Broadcast Control Channel, C (CCCH) Common Control CHannel: Paging CHannel(PCH) or
Access Grant CHannel (AGCH), I Idle
GSM Channel Concept
GSM Channel Concept
F D T T T T T T
S D T T T T T T
B D T T T T T T
B D T T T T T T
B D T T T T T T
B D T T T T T T
C D T T T T T T
C D T T T T T T
C D T T T T T T
C D T T T T T T
F D T T T T T T
S D T T T T T T
C D A T A T A T
C D T T T T T T
C D T T T T T T
C D T T T T T T
TS0 TS1 TS2 TS3 TS4 TS5 TS6 TS7
4.615 ms
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
1 Frame
(Downlink - BTS transmit)
1 carrier = 200 kHz
F = FCCH
S = SCH
B = BCCH
C = PCH or
AGCH
D = SDCCH
A = SACCH
T = TCH
R D T T T T T T
R D T T T T T T
R D T T T T T T
R D T T T T T T
R D T T T T T T
R D T T T T T T
R D T T T T T T
R D T T T T T T
R D T T T T T T
R D T T T T T T
R D T T T T T T
R D T T T T T T
R D A I A I A I
R D T T T T T T
R D T T T T T T
R D T T T T T T
TS0 TS1 TS2 TS3 TS4 TS5 TS6 TS7
4.615 ms
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
.
1 Frame
(Uplink - Mobile transmit)
1 carrier = 200 kHz
R = RACH
A = SACCH
T = TCH
TS 0 TS 1 TS 2 TS 3 TS 4 TS 5 TS 6 TS 7
200 kHz
4.615 ms
0.577 ms
FCCH,
SCH,
BCCH
PCH,
RACH,
AGCH
SDCCH,
SACCH
CBCH
TCH,
SACCH
FACCH
TCH,
SACCH
FACCH
TCH,
SACCH
FACCH
TCH,
SACCH
FACCH
TCH,
SACCH
FACCH
TCH,
SACCH
FACCH
1 TDMA FRAME
3 TIMESLOT
3 * 0.577ms = 1.73ms
Downlink
Uplink
TCH UP-DOWNLINK OFFSET
3 TIMESLOT
3 * 0.577ms = 1.73ms
3 TIMESLOT
3 * 0.577ms = 1.73ms
0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7
0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 75 6 7
….
…..
…...
…..
This means that the mobile does not transmit and receive at the same time.
Also note that :
in TS 0 : All the Logical Channels will repeat itself after 51 frames
in TS 1 : All the Logical Channels will repeat itself after 102 frames
in TS 2 to 7 : All the Logical Channels will repeat itself after 26 frames
MOBILE STATIONS ISDN NUMBER (MSISDN)
=> Is the mobile number used in a GSM PLMN (Public Land Mobile Network)
MSISDN = Country Code + National Destination Code + Subscriber number
e.x. 63 + 0918 + 8889999
Maximum length is 15 digits.
INTERNATIONAL MOBILE SUBSCRIBER IDENTITY (IMSI)
=> Is the subscriber number used over radio path for all signaling in the GSM PLMN.
This number is stored in SIM (Subscriber Identity Module), HLR (Home Location Register,
and VLR (Visitor Location Register).
IMSI = MCC + MNC + MSIN
= Mobile Country Code + Mobile Network Code + Mobile Identification Number
[ 3 digit ] [ 2 digit ] [ 11 digit ]
e.x. 502 + 19 + 2345451
TEMPORARY MOBILE SUBSCRIBER IDENTITY (TMSI)
=> Is used for the subscriber's confidentiality. Since the TMSI has only local significance
(within MSC/VLR) the structure of the TMSI can be chosen by the Vendor.
But the size must be 1/2 of the size of IMSI. Each time a mobile request for location
updating or call setup, MSC/VLR allocates to the IMSI a new TMSI, so the TMSI
is used on the signaling path, protecting the IMSI identity. Plus since the TMSI is half
the size of IMSI, we can page twice the amount compared to IMSI.
LOCATION AREA IDENTITY (LAI)
=> Is used to uniquely identify each location area in the GSM PLMN. When the system
receives an incoming call it knows in which location area it should page the mobile
and does not page the entire network.
LAI = MCC + MNC + LAC
Mobile Country Code + Mobile Network Code + Location Area Code
[ 3 digit ] [ 2 digit ] [ 1 to 65 536 ]
e.x. = 502 + 20 + 60001
CELL GLOBAL IDENTITY (CGI)
=> Is used for cell identification within the GSM network.
LAI = MCC + MNC + LAC + CI
Mobile Country Code + Mobile Network Code + Location Area Code + Cell Identity
[ 3 digit ] [ 2 digit ] [ 1 to 65 536 ] [ 1 to 65 536 ]
e.x. = 502 + 20 + 60001 + 50001
BASE STATION IDENTITY CODE (BSIC)
=> Is used to distinguish co channel Frequency used in the neighboring cell.
BSIC = NCC + BCC
Network Color Code + Base Station Color Code
[ 1 to 7 ] [ 1 to 7 ]
SUBSCRIBER IDENTITY MODULE (SIM)
SIM is used to provide storage on subscriber related information as following :
• IMSI (International Mobile Subscriber Identity).
• Temporary network data like TMSI, LAI, Location update status.
• Subscriber Authentication Key (Ki) and Ciphering Key (Kc) which are used for security purposes.
• BCCH information : List of carrier frequencies to be used for cell selection.
• Forbidden PLMN.
• Language preference.
• PIN number (Personal Identification Number) and PIN error counter.
• PUK number (Personal Unlock Key) and PUK error counter.
PIN management
The PIN number consist of 4 to 8 digit and it is loaded by the service activator an subscription time. Afterwards
the PIN number can be changed as many times an user wishes including the length of the PIN number.
The user can disable the PIN function but again can be inhibited at subscription time by a authorized
person. If an incorrect PIN is entered, an indication is given to the user. After 3 consecutive entries
the SIM is blocked, even if if the SIM is removed or the mobile is switch off and on.
If the SIM card is blocked the user cannot access the network. The unblocking of the SIM card can only be
done by keying in the PUK (Personal Unlock Key). PUK is 8 digit and is given to the user at subscription
time. If an incorrect PUK is entered more than 10 times then the PUK will not work anymore and the
SIM card will continue to be blocked until taken to the mobile vendor service center.
GSM Channel Concept
1 de 35

Recomendados

Gsm channels concept por
Gsm channels conceptGsm channels concept
Gsm channels conceptTelebeansolutions
14.3K vistas18 diapositivas
GSM capacity planning por
GSM capacity planningGSM capacity planning
GSM capacity planningDeepak Joshi
19.5K vistas50 diapositivas
2 g training optimization por
2 g training optimization2 g training optimization
2 g training optimizationAhmed Gad
21.7K vistas141 diapositivas
GSM CALL FLOW por
GSM CALL FLOWGSM CALL FLOW
GSM CALL FLOWSugamTripathi1
538 vistas17 diapositivas
GSM Channel concept and SDCCH por
GSM Channel concept and SDCCHGSM Channel concept and SDCCH
GSM Channel concept and SDCCHDeepak Joshi
47K vistas53 diapositivas
Part 3 optimization 3G por
Part 3 optimization 3GPart 3 optimization 3G
Part 3 optimization 3GHenry Chikwendu
20.2K vistas119 diapositivas

Más contenido relacionado

La actualidad más candente

Complete umts call flow por
Complete umts call flowComplete umts call flow
Complete umts call flowsivakumar D
18.2K vistas4 diapositivas
3 g call flow por
3 g call flow3 g call flow
3 g call flowAshish Aggarwal
23.2K vistas8 diapositivas
zte umts-cs-call-drop-analysis-guide-zte por
zte umts-cs-call-drop-analysis-guide-ztezte umts-cs-call-drop-analysis-guide-zte
zte umts-cs-call-drop-analysis-guide-zte3ggprs
884 vistas30 diapositivas
Sdcch por
SdcchSdcch
SdcchDeepak Sharma
36.2K vistas53 diapositivas
Wcdma physical layer por
Wcdma physical layerWcdma physical layer
Wcdma physical layerrajibratan
10.8K vistas59 diapositivas
Basic gsm principles por
Basic gsm principlesBasic gsm principles
Basic gsm principlesSupper Mario
15.2K vistas52 diapositivas

La actualidad más candente(20)

Complete umts call flow por sivakumar D
Complete umts call flowComplete umts call flow
Complete umts call flow
sivakumar D18.2K vistas
zte umts-cs-call-drop-analysis-guide-zte por 3ggprs
zte umts-cs-call-drop-analysis-guide-ztezte umts-cs-call-drop-analysis-guide-zte
zte umts-cs-call-drop-analysis-guide-zte
3ggprs884 vistas
Wcdma physical layer por rajibratan
Wcdma physical layerWcdma physical layer
Wcdma physical layer
rajibratan10.8K vistas
Basic gsm principles por Supper Mario
Basic gsm principlesBasic gsm principles
Basic gsm principles
Supper Mario15.2K vistas
Nokia gsm-kpi-analysis-based-on-daily-monitoring-basis-presentation por mohammed khairy
Nokia gsm-kpi-analysis-based-on-daily-monitoring-basis-presentationNokia gsm-kpi-analysis-based-on-daily-monitoring-basis-presentation
Nokia gsm-kpi-analysis-based-on-daily-monitoring-basis-presentation
mohammed khairy1.5K vistas
Basic of gsm by pawan por Pawan Kumar
Basic of gsm by pawanBasic of gsm by pawan
Basic of gsm by pawan
Pawan Kumar588 vistas
Layer 3 messages por John Samir
Layer 3 messagesLayer 3 messages
Layer 3 messages
John Samir13.2K vistas

Similar a GSM Channel Concept

BASIC GSM por
BASIC GSMBASIC GSM
BASIC GSMTempus Telcosys
22.5K vistas29 diapositivas
Channel por
ChannelChannel
Channelvishnu lamba
237 vistas10 diapositivas
2 g por
2 g2 g
2 gKorirj
121 vistas136 diapositivas
Gsm (3) por
Gsm (3)Gsm (3)
Gsm (3)Mohammed Hassan
290 vistas52 diapositivas
Gsm basics por
Gsm basicsGsm basics
Gsm basicsGurudatt Balaji
720 vistas21 diapositivas
Definitions gsm por
Definitions gsmDefinitions gsm
Definitions gsmDesmond Chewe
102 vistas21 diapositivas

Similar a GSM Channel Concept(20)

2 g por Korirj
2 g2 g
2 g
Korirj121 vistas
Gsm By Aziz por Aziz Zoaib
Gsm By AzizGsm By Aziz
Gsm By Aziz
Aziz Zoaib861 vistas
39540950 gsm-ion-course-130814024028-phpapp01 por Ahlem DRIRA
39540950 gsm-ion-course-130814024028-phpapp0139540950 gsm-ion-course-130814024028-phpapp01
39540950 gsm-ion-course-130814024028-phpapp01
Ahlem DRIRA446 vistas
GSM - The Network Layer por Yubraj C.
GSM - The Network LayerGSM - The Network Layer
GSM - The Network Layer
Yubraj C.1.7K vistas
6 Weeks Industrial Training In Telecom In Chandigarh por Arcadian Learning
6 Weeks Industrial Training In Telecom In Chandigarh6 Weeks Industrial Training In Telecom In Chandigarh
6 Weeks Industrial Training In Telecom In Chandigarh
Arcadian Learning905 vistas
Sdcch 12704657711474-phpapp02 por Tapiwa Munetsi
Sdcch 12704657711474-phpapp02Sdcch 12704657711474-phpapp02
Sdcch 12704657711474-phpapp02
Tapiwa Munetsi116 vistas
GSM FRAME STRUCTURE.pptx por Rasufsd
GSM FRAME STRUCTURE.pptxGSM FRAME STRUCTURE.pptx
GSM FRAME STRUCTURE.pptx
Rasufsd4 vistas

Último

Future of Indian ConsumerTech por
Future of Indian ConsumerTechFuture of Indian ConsumerTech
Future of Indian ConsumerTechKapil Khandelwal (KK)
24 vistas68 diapositivas
Five Things You SHOULD Know About Postman por
Five Things You SHOULD Know About PostmanFive Things You SHOULD Know About Postman
Five Things You SHOULD Know About PostmanPostman
38 vistas43 diapositivas
"Running students' code in isolation. The hard way", Yurii Holiuk por
"Running students' code in isolation. The hard way", Yurii Holiuk "Running students' code in isolation. The hard way", Yurii Holiuk
"Running students' code in isolation. The hard way", Yurii Holiuk Fwdays
24 vistas34 diapositivas
【USB韌體設計課程】精選講義節錄-USB的列舉過程_艾鍗學院 por
【USB韌體設計課程】精選講義節錄-USB的列舉過程_艾鍗學院【USB韌體設計課程】精選講義節錄-USB的列舉過程_艾鍗學院
【USB韌體設計課程】精選講義節錄-USB的列舉過程_艾鍗學院IttrainingIttraining
69 vistas8 diapositivas
Data Integrity for Banking and Financial Services por
Data Integrity for Banking and Financial ServicesData Integrity for Banking and Financial Services
Data Integrity for Banking and Financial ServicesPrecisely
29 vistas26 diapositivas
Vertical User Stories por
Vertical User StoriesVertical User Stories
Vertical User StoriesMoisés Armani Ramírez
17 vistas16 diapositivas

Último(20)

Five Things You SHOULD Know About Postman por Postman
Five Things You SHOULD Know About PostmanFive Things You SHOULD Know About Postman
Five Things You SHOULD Know About Postman
Postman38 vistas
"Running students' code in isolation. The hard way", Yurii Holiuk por Fwdays
"Running students' code in isolation. The hard way", Yurii Holiuk "Running students' code in isolation. The hard way", Yurii Holiuk
"Running students' code in isolation. The hard way", Yurii Holiuk
Fwdays24 vistas
【USB韌體設計課程】精選講義節錄-USB的列舉過程_艾鍗學院 por IttrainingIttraining
【USB韌體設計課程】精選講義節錄-USB的列舉過程_艾鍗學院【USB韌體設計課程】精選講義節錄-USB的列舉過程_艾鍗學院
【USB韌體設計課程】精選講義節錄-USB的列舉過程_艾鍗學院
Data Integrity for Banking and Financial Services por Precisely
Data Integrity for Banking and Financial ServicesData Integrity for Banking and Financial Services
Data Integrity for Banking and Financial Services
Precisely29 vistas
GDG Cloud Southlake 28 Brad Taylor and Shawn Augenstein Old Problems in the N... por James Anderson
GDG Cloud Southlake 28 Brad Taylor and Shawn Augenstein Old Problems in the N...GDG Cloud Southlake 28 Brad Taylor and Shawn Augenstein Old Problems in the N...
GDG Cloud Southlake 28 Brad Taylor and Shawn Augenstein Old Problems in the N...
James Anderson126 vistas
Case Study Copenhagen Energy and Business Central.pdf por Aitana
Case Study Copenhagen Energy and Business Central.pdfCase Study Copenhagen Energy and Business Central.pdf
Case Study Copenhagen Energy and Business Central.pdf
Aitana17 vistas
ESPC 2023 - Protect and Govern your Sensitive Data with Microsoft Purview in ... por Jasper Oosterveld
ESPC 2023 - Protect and Govern your Sensitive Data with Microsoft Purview in ...ESPC 2023 - Protect and Govern your Sensitive Data with Microsoft Purview in ...
ESPC 2023 - Protect and Govern your Sensitive Data with Microsoft Purview in ...
Jasper Oosterveld27 vistas
SAP Automation Using Bar Code and FIORI.pdf por Virendra Rai, PMP
SAP Automation Using Bar Code and FIORI.pdfSAP Automation Using Bar Code and FIORI.pdf
SAP Automation Using Bar Code and FIORI.pdf
Virendra Rai, PMP25 vistas
iSAQB Software Architecture Gathering 2023: How Process Orchestration Increas... por Bernd Ruecker
iSAQB Software Architecture Gathering 2023: How Process Orchestration Increas...iSAQB Software Architecture Gathering 2023: How Process Orchestration Increas...
iSAQB Software Architecture Gathering 2023: How Process Orchestration Increas...
Bernd Ruecker48 vistas
PharoJS - Zürich Smalltalk Group Meetup November 2023 por Noury Bouraqadi
PharoJS - Zürich Smalltalk Group Meetup November 2023PharoJS - Zürich Smalltalk Group Meetup November 2023
PharoJS - Zürich Smalltalk Group Meetup November 2023
Noury Bouraqadi139 vistas
Business Analyst Series 2023 - Week 3 Session 5 por DianaGray10
Business Analyst Series 2023 -  Week 3 Session 5Business Analyst Series 2023 -  Week 3 Session 5
Business Analyst Series 2023 - Week 3 Session 5
DianaGray10345 vistas
Special_edition_innovator_2023.pdf por WillDavies22
Special_edition_innovator_2023.pdfSpecial_edition_innovator_2023.pdf
Special_edition_innovator_2023.pdf
WillDavies2218 vistas
Future of AR - Facebook Presentation por Rob McCarty
Future of AR - Facebook PresentationFuture of AR - Facebook Presentation
Future of AR - Facebook Presentation
Rob McCarty22 vistas
Piloting & Scaling Successfully With Microsoft Viva por Richard Harbridge
Piloting & Scaling Successfully With Microsoft VivaPiloting & Scaling Successfully With Microsoft Viva
Piloting & Scaling Successfully With Microsoft Viva
Richard Harbridge13 vistas

GSM Channel Concept

  • 1. GSM Channel Concept Md Mustafizur Rahman RNPO Engineer Grameenphone Ltd.
  • 2. AIR INTERFACE Frequency Allocation Radio Channel DOWNLINK 935 - 960 MHz 1805-1880 MHz UPLINK 890-915 MHz 1710-1785 MHz Air Interface Cell Site Mobile
  • 6. GSM: TRX/TDMA Frame 25 MHZ: 890 to 915 MHz (UL) 935 to 960 MHz (DL) Channel 1 200kHz Channel 2 200kHz Channel 124 200kHz Time Slot 0 Time Slot 1 Time Slot 7 TDMA Frame (4.616 ms) 57 bits (interleaved sub block) from a 20ms Voice frame 26 bit TSC for error prediction 57 bits (interleaved sub block ) from another 20ms Voice frame 3 tail bits 3 tail bits 1 bit flag 1 bit flag 148+8.25=156.25 bits 8.25 guard bits Frequency band Channels TRX/TS TS/bit stream 1800MHz Band : 1710-1785MHz(UL) 1805-1880MHz(DL) Total no. of Channel is 374. 1TS=0.577ms 1bit=3.69ms
  • 11. 11 3 Broadcast Channels 1) FCCH 2) SCH 3) BCCH 3 Common Control Channels 1) PCH 2) RACH 3) AGCH 3 Dedicated Control Channels 1) SDCCH 2) SACCH 3) FACCH TCH CBCH LOGICAL CHANNELS
  • 13. Full rate => Used for speech at 13 Kbits/s or sending data at 9.6 Kbits/s Half rate => Used for speech at 6.5 Kbits/s or sending data at 4.8 Kbits/s Enhanced Full rate => Used for speech at 13 Kbits/s or sending data at 9.6 Kbits/s but with almost Land line quality TCH = TRAFFIC CHANNEL
  • 17. FCCH = FREQUENCY CORRECTION CHANNEL (Downlink only) •To tell the Mobile that this is the BCCH carrier •To able the Mobile to synchronize to the frequency •bursts only containing zeroes are transmitted. SCH = SYNCHRONISATION CHANNEL (Downlink only) •Used for sending BSIC (Base station Identity Code) •Give TDMA frame number to the Mobile BCCH = BROADCAST CONTROL CHANNEL (Downlink only) •Used for sending information to the mobile like- •CGI (Cell Global identity) •LAI (Location Area Identity) •BCCH carriers of the neighboring cells •maximum output power allowed in the cell •Other broadcast messages like barred cell BROADCAST CHANNELS
  • 18. PCH = PAGING CHANNEL => Used for paging the Mobile. (Downlink only) Reason could be an incoming call or an incoming Short Message. RACH = RANDOM ACCESS CHANNEL => Used for responding to the paging (terminating), Location updating or to make call access (originating) by asking for a signaling channel. (Uplink only) AGCH = ACCESS GRANT CHANNEL => Used to allocate SDCCH to the mobile. (Downlink only) COMMON CONTROL CHANNELS
  • 19. SDCCH = STAND ALONE DEDICATED CONTROL CHANNEL => Used for allocating voice channel (TCH) to the mobile (call setup) and Location updating. => Send Short Text message to Idle Mobile (Uplink & Downlink) SACCH = SLOW ASSOCIATED CONTROL CHANNEL => Used for sending information to the mobile like CGI (Cell Global identity), LAI (Location Area Identity), BCCH of all the neighbors and TA (Timing Advance) => Send Short Text message to Busy Mobile (Downlink => Used for sending signal strength & bit error rate measurement of the serving cell and signal strength of the BCCHs of the neighboring cells. (Uplink) FACCH = FAST ASSOCIATED CONTROL CHANNEL => Used for handover. (Uplink & Downlink) DEDICATED CONTROL CHANNELS
  • 20. => SMS messages are short TEXT messages up to 160 characters in length that you can send or receive. The messages are not sent straight to the other mobile but is sent to message centre operated by the Network provider. => If the mobile was switched off or is at outside of the coverage area, the message is stored in the Message Service Center. The message will be offered to the subscriber when the mobile is switched on again or has reentered the coverage area again. => If the mobile is in the Idle mode the short message will be send through the SDCCH. If the mobile is Busy the short message will send through the SACCH. CBCH = CELL BROADCAST CHANNEL => Used for sending short messages to all the mobiles within a geographic area. Typical example is Traffic congestion in a major road or a major accident in an area. Up to 93 characters can be sent. => If the mobile is in the Idle mode then the short message will be send through the CBCH. If the mobile is Busy, it will not be sent. NOT TO BE CONFUSED WITH SMS !!!!!!!! (SHORT MESSAGE SERVICE)
  • 21. 21 Channel combinations The following combinations of logical channel types are allowed for the radio timeslots and specified by GSM (Rec. 05.02): a) TCH/F + FACCH/F + SACCH/TF b) TCH/H + FACCH/H + SACCH/TH c) SDCCH/8 + SACCH/C8 d) FCCH + SCH + BCCH + CCCH (TS 0)-Uncombined e) FCCH + SCH + BCCH + CCCH + SDCCH/4 + SACCH/C4 (TS 0)-combined f) BCCH + CCCH g) SDCCH/8 + SACCH/8 + CBCH h) FCCH + SCH + BCCH + CCCH + SDCCH/4 + SACCH/C4 + CBCH (TS 0) ***A "+" indicates that the channels are used simultaneously.
  • 22. 22 a) TCH/F + FACCH/F + SACCH/TF T-TCH/FACCH A-SACCH
  • 24. 24 b) TCH/H + FACCH/H + SACCH/TH
  • 25. 25 c) SDCCH/8 + SACCH/C8 Note that the uplink and downlink patterns are time shifted, so that SDCCH subchannel 0 is sent in frames 0-3 on downlink and in frames 15-18 on uplink. The reason for this is to achieve more efficient communication, by giving the MS time to calculate its answers to the requests received on downlink SDCCH.
  • 26. 26 d) FCCH + SCH + BCCH + CCCH (TS 0)-Uncombined F (FCCH) Frequency Correction Channel, S (SCH) Synchronization Channel, B (BCCH - Norm) Broadcast Control Channel, C (CCCH) Common Control CHannel: Paging CHannel(PCH) or Access Grant CHannel (AGCH), I Idle
  • 29. F D T T T T T T S D T T T T T T B D T T T T T T B D T T T T T T B D T T T T T T B D T T T T T T C D T T T T T T C D T T T T T T C D T T T T T T C D T T T T T T F D T T T T T T S D T T T T T T C D A T A T A T C D T T T T T T C D T T T T T T C D T T T T T T TS0 TS1 TS2 TS3 TS4 TS5 TS6 TS7 4.615 ms . . . . . . . . . . . . . . . . . . . . . . . . 1 Frame (Downlink - BTS transmit) 1 carrier = 200 kHz F = FCCH S = SCH B = BCCH C = PCH or AGCH D = SDCCH A = SACCH T = TCH R D T T T T T T R D T T T T T T R D T T T T T T R D T T T T T T R D T T T T T T R D T T T T T T R D T T T T T T R D T T T T T T R D T T T T T T R D T T T T T T R D T T T T T T R D T T T T T T R D A I A I A I R D T T T T T T R D T T T T T T R D T T T T T T TS0 TS1 TS2 TS3 TS4 TS5 TS6 TS7 4.615 ms . . . . . . . . . . . . . . . . . . . . . . . . 1 Frame (Uplink - Mobile transmit) 1 carrier = 200 kHz R = RACH A = SACCH T = TCH
  • 30. TS 0 TS 1 TS 2 TS 3 TS 4 TS 5 TS 6 TS 7 200 kHz 4.615 ms 0.577 ms FCCH, SCH, BCCH PCH, RACH, AGCH SDCCH, SACCH CBCH TCH, SACCH FACCH TCH, SACCH FACCH TCH, SACCH FACCH TCH, SACCH FACCH TCH, SACCH FACCH TCH, SACCH FACCH 1 TDMA FRAME
  • 31. 3 TIMESLOT 3 * 0.577ms = 1.73ms Downlink Uplink TCH UP-DOWNLINK OFFSET 3 TIMESLOT 3 * 0.577ms = 1.73ms 3 TIMESLOT 3 * 0.577ms = 1.73ms 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 75 6 7 …. ….. …... ….. This means that the mobile does not transmit and receive at the same time. Also note that : in TS 0 : All the Logical Channels will repeat itself after 51 frames in TS 1 : All the Logical Channels will repeat itself after 102 frames in TS 2 to 7 : All the Logical Channels will repeat itself after 26 frames
  • 32. MOBILE STATIONS ISDN NUMBER (MSISDN) => Is the mobile number used in a GSM PLMN (Public Land Mobile Network) MSISDN = Country Code + National Destination Code + Subscriber number e.x. 63 + 0918 + 8889999 Maximum length is 15 digits. INTERNATIONAL MOBILE SUBSCRIBER IDENTITY (IMSI) => Is the subscriber number used over radio path for all signaling in the GSM PLMN. This number is stored in SIM (Subscriber Identity Module), HLR (Home Location Register, and VLR (Visitor Location Register). IMSI = MCC + MNC + MSIN = Mobile Country Code + Mobile Network Code + Mobile Identification Number [ 3 digit ] [ 2 digit ] [ 11 digit ] e.x. 502 + 19 + 2345451 TEMPORARY MOBILE SUBSCRIBER IDENTITY (TMSI) => Is used for the subscriber's confidentiality. Since the TMSI has only local significance (within MSC/VLR) the structure of the TMSI can be chosen by the Vendor. But the size must be 1/2 of the size of IMSI. Each time a mobile request for location updating or call setup, MSC/VLR allocates to the IMSI a new TMSI, so the TMSI is used on the signaling path, protecting the IMSI identity. Plus since the TMSI is half the size of IMSI, we can page twice the amount compared to IMSI.
  • 33. LOCATION AREA IDENTITY (LAI) => Is used to uniquely identify each location area in the GSM PLMN. When the system receives an incoming call it knows in which location area it should page the mobile and does not page the entire network. LAI = MCC + MNC + LAC Mobile Country Code + Mobile Network Code + Location Area Code [ 3 digit ] [ 2 digit ] [ 1 to 65 536 ] e.x. = 502 + 20 + 60001 CELL GLOBAL IDENTITY (CGI) => Is used for cell identification within the GSM network. LAI = MCC + MNC + LAC + CI Mobile Country Code + Mobile Network Code + Location Area Code + Cell Identity [ 3 digit ] [ 2 digit ] [ 1 to 65 536 ] [ 1 to 65 536 ] e.x. = 502 + 20 + 60001 + 50001 BASE STATION IDENTITY CODE (BSIC) => Is used to distinguish co channel Frequency used in the neighboring cell. BSIC = NCC + BCC Network Color Code + Base Station Color Code [ 1 to 7 ] [ 1 to 7 ]
  • 34. SUBSCRIBER IDENTITY MODULE (SIM) SIM is used to provide storage on subscriber related information as following : • IMSI (International Mobile Subscriber Identity). • Temporary network data like TMSI, LAI, Location update status. • Subscriber Authentication Key (Ki) and Ciphering Key (Kc) which are used for security purposes. • BCCH information : List of carrier frequencies to be used for cell selection. • Forbidden PLMN. • Language preference. • PIN number (Personal Identification Number) and PIN error counter. • PUK number (Personal Unlock Key) and PUK error counter. PIN management The PIN number consist of 4 to 8 digit and it is loaded by the service activator an subscription time. Afterwards the PIN number can be changed as many times an user wishes including the length of the PIN number. The user can disable the PIN function but again can be inhibited at subscription time by a authorized person. If an incorrect PIN is entered, an indication is given to the user. After 3 consecutive entries the SIM is blocked, even if if the SIM is removed or the mobile is switch off and on. If the SIM card is blocked the user cannot access the network. The unblocking of the SIM card can only be done by keying in the PUK (Personal Unlock Key). PUK is 8 digit and is given to the user at subscription time. If an incorrect PUK is entered more than 10 times then the PUK will not work anymore and the SIM card will continue to be blocked until taken to the mobile vendor service center.