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7/27/2019 13_Principles of HSDPA http://slidepdf.com/reader/full/13principles-of-hsdpa 1/22 1 www.huawei.com Copyright © 2006 Huawei Technologies Co., Ltd. All rights reserved. Principles of HSDPA ISSUE 1.0 Page1 Copyright © 2006 Huawei Technologies Co., Ltd. All rights reserved. Objectives l Upon completion of this course, you will be able to: p Review WCDMA and HSDPA evolution and standards p Review R99 packet data service method p Describe HSDPA physical channels p HSDPA Network and UE protocol stack architecture

13_Principles of HSDPA

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www.huawei.com

Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Principles of HSDPA

ISSUE 1.0

Page1Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Objectivesl Upon completion of this course, you will be able to:

p Review WCDMA and HSDPA evolution and standards

p Review R99 packet data service method

p Describe HSDPA physical channels

p HSDPA Network and UE protocol stack architecture

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Page2Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Contents

1.1. HSDPA Concept s HSDPA Concept s 

2. HSDPA Key Techniques

3. HSDPA Physical Layer Channels

4. HSDPA Layer2 Protocol

Page3Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

WCDMA Evolution

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Page4Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Release 99 Packet Data

l How is Packet Data handled in Release 99 (FDD) ?

p DCH ( Dedicated Channel )

n Spreading codes assigned per user

n Closed loop power control

n Soft handover

p FACH ( Common Channel )

n Common Spreading code

n No closed loop power control

n No soft handover

Page5Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Release 99 Downlink Limitationl Dedicated Channel Features ( DCH )

p Maximum implemented downlink of 384kbps

p OVSF code limitation for high data rate users

p Rate switching according to burst throughput is slow

p Outer loop power control responds slowly to channel

l Common Channel Features ( FACH )

p Good for burst data application

p Only low data rates supported

p Fixed transmit power

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Page6Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

High Speed Downlink Packet Access (HSDPA)

l  The differences between HSDPA and R99

p Set of high data rate channel

p Channels are shared by multiple users

p Each user may be assigned all or part of the resource every 2 ms

Node B

HS-PDSCH

Page7Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

High Speed Downlink Packet Access (HSDPA)

l How will HSDPA figure out the limitations of R99

p Adaptive modulation and coding

n Fast feedback of Channel condition

n QPSK and16QAM

n Channel coding rate from 1/3 to 1

p Multi-code operation

n Multiple codes allocated per user

n Fixed spreading factor

p NodeB fast Scheduling

n Physical Layer HARQ ( Hybrid Automatic Repeat reQuest)

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Page8Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

High Speed Downlink Packet Access (HSDPA)

l Comparison Summary

Page9Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Contents1. HSDPA Concepts

2.2. HSDPA Key Techniques HSDPA Key Techniques 

3. HSDPA Physical Layer Channels

4. HSDPA Layer2 Protocol

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Page10Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

HSDPA Key Techniques

AMC (Adaptive Modulation & Coding)

Data rate adapted to radio condition on 2ms

Fast Scheduling based onCQI and fairness

Scheduling of user on 2ms

HARQ(Hybrid ARQ)with

Soft combing

Reduce round trip time

16QAM

16QAM in complement to QPSKfor higher peak bit rates

SF16, 2ms and CDM/TDM

Dynamic shared in Time and code domain

3 New Physical Channels

Block 1 Block 2Block 1

Block 1?

Block 1Block 1?

+

Page11Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Adaptive Modulation and Coding ( AMC )l AMC ( Adaptive Modulation and Coding ) based on CQI ( Channel

Quality Indicator )

p Adjust data rate to compensation channel condition

n Good channel condition – higher data rate

n Bad channel condition – lower data rate

p Adjust channel coding rate to compensation channel condition

n Good channel condition – channel coding rate is higher e.g. 3/4

n Bad channel condition –channel coding rate is higher e.g. 1/3

p Adjust the modulation scheme to compensation channel condition

n Good channel condition – high order modulation scheme e.g. 16QAM

n Bad channel condition – low order modulation scheme e.g. QPSK 

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Page12Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Adaptive Modulation and Coding ( AMC )

l AMC ( Adaptive Modulation and Coding ) based on CQI

( Channel Quality Indicator )

p CQI ( channel quality indicator )

n UE measures the channel quality and reports to NodeB every 2ms or

more cycle

n NodeB selects modulation scheme ,data block size based on CQI

Bad channel condition

→ More power Node B NodeB

Power Control Rate Adaptation

Good channel condition

Bad channel condition

Good channel condition

→ less power 

→ low data rate

→ high data rate

Page13Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

CQI mapping table for UE category 10

Out of rangeOut of rangeN/AN/A00

001616--QAMQAM151525558255583030

001616--QAMQAM151524222242222929

001616--QAMQAM151523370233702828

……………………………………………………

001616--QAMQAM55466446641818

001616--QAMQAM55418941891717

001616--QAMQAM55356535651616

00QPSK QPSK 55331933191515

00QPSK QPSK 44258325831414

00QPSK QPSK 44227922791313

……………………………………………………

00QPSK QPSK 1117317322

00QPSK QPSK 1113713711

Reference pow er Reference pow er 

adjustment adjustment ∆ ∆ Modulat ion Modulat ion 

Number of Number of 

HS HS - - PDSCH PDSCH 

Transport Transport 

Block Size Block Size CQI valu e CQI valu e 

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Page14Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

HSDPA UE Categories

28800363015Category 12

14400363025Category 11

17280027952115Category 10

17280020251115Category 9

13440014411110Category 8

11520014411110Category 7

67200729815Category 6

57600729815Category 5

38400729825Category 4

28800729825Category 3

28800729835Category 2

19200729835Category 1

Total Number of Soft

Channel Bits

Maximum Number of Bits of an

HS-DSCH Transport Block

Received Within an HS-DSCH

TTI

Minimum Inter-

TTI Interval

Maximum

Number of HS-

DSCH Codes

Received

UE Category

Page15Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Hybrid Automatic Repeat reQuest( HARQ )l Conventional ARQ

p In a conventional ARQ scheme, received data blocks that can not be

correctly decoded are discarded and retransmitted data blocks are

separately decoded

l Hybrid ARQ

p In case of Hybrid ARQ with soft combining, received data blocks that can

not be correctly decoded are not discarded. Instead the corresponding

received signal is buffered and soft combined with later received

retransmission of information bits. Decoding is then applied to thecombined signal.

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Hybrid Automatic Repeat reQuest( HARQ )

l Example for HARQ

l  The use of HARQ with soft combining increases the effective receivedEb/Io for each retransmission and thus increases the probabilityfor

correct decoding of retransmissions, compare to conventional ARQ

Page17Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Hybrid Automatic Repeat reQuest( HARQ )l  There are many different schemes for HARQ with soft

combining.

l  These scheme differ in the structure of retransmissions and in

the way by which the soft combining is carried out at the

receiver

p In case of Chase combining ( CC ) each retransmission is an

identical copy of the original transmission

p In case of Incremental Redundancy ( IR ) each retransmission mayadd new redundancy

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Hybrid Automatic Repeat reQuest( HARQ )

l Example for Chase Combining ( CC ) Scheme

Page19Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Hybrid Automatic Repeat reQuest( HARQ )l Example for Incremental Redundancy ( IR ) Scheme

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Page22Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

l In HSDPA, a new DL transport channel is introduced call HS-

DSCH. The idea is that a part of the total downlink code

resource is dynamically shared between a set of HSDPA users

Shared Channel Transmission

Page23Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Shared Channel Transmissionl  The codes are assigned to HSDPA user only when they are

actually to be used for transmission, which leads to efficient

code and power utilization

 All

channelization

codes available

for HSDPA

Time

Channelization

code

UE1 data UE2 data UE3 data

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Page24Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Higher-Order Modulation

Page25Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

HSDPA New Physical Channels

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Page26Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Contents

1. HSDPA Concepts

2. HSDPA Key Techniques

3.3. HSDPA Physical Layer Channels HSDPA Physical Layer Channels 

4. HSDPA Layer2 Protocol

Page27Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

R99 Physical Channels

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Page28Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

HSDPA Physical Layer Channels

l New HSDPA Channels

p High Speed Downlink shared Channel ( HS-DSCH )

n Downlink Transport Channel

p High Speed Shared Control Channel ( HS-SCCH )

n Downlink Control Channel

p High Speed Physical Downlink Shared Channel ( HS-PDSCH )

n Downlink Physical Channel

p High Speed Dedicated Physical Control Channel ( HS-DPCCH )

n Uplink Control Channel

Page29Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

HSDPA Physical Channels

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HS-PDSCH sub-frame Structure

l HS-PDSCH sub-frame structure

p 3 time slots constituted one TTI (2ms)

p Fixed spreading factor ( SF=16 )

p May use QPSK or 16QAM modulation scheme

p All HS-PDSCH used to carry user’s data

p UE can be assigned multiple OVSF code ( SF=16 ) based on UE Categories

Slot #0 Slot#1 Slot #2

Tslot = 2560 chips, M*10*2k  bits (k=4)

Data

 Ndata1 bits

1 subframe: T f  = 2 ms

Page31Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

HS-SCCH sub-frame Structurel HS-SCCH sub- frame structure

p 3 time slots constitutes one TTI ( 2ms )

p HS-SCCH SF=128, QPSK only

p HS-SCCH carries the following control messages: Xue, Xccs, Xms, Xrv, Xtbs, Xhap

and Xnd

p UE demodulates HS-SCCH sub-frame and find out the received data addressed to

the UE with Xue. Then UE demodulates HS-PDSCH sub-frame with Xccs, Xms, Xrv,

Xhp, Xtbsand Xndare used for HARQ Process

p UE may need to simultaneous monitor up to four HS-SCCH

Slot #0  Slot#1  Slot #2 

T slot  = 2560 chips, 40  bits

Data 

 N data 1  bits 

1 subframe: T f  = 2 ms 

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HS-DPCCH sub-frame Structure

lHS-DPCCH sub-frame structure

p TTI=2ms ( 3 time slots ), SF=256, Fixed rate of 15kbps, carry 2 types of HSDPA uplink

physical layer control message, including ACK/NACK CQI

p ACK and NACK notifies NodeB that UE has received correct downlink data or not. The

field defines like this: 1-NACK, 0-ACK 

p CQI reflects physical channel quality indicator based on CPICH strength, and reported

by period range from 0 to 160ms ( 0 means no transmission ). Usually the period is 2ms

( one TTI )

p ACK/NACK and CQI having different function may be controlled independently by

different parameters. 

S u b f r a m e # 0 S u b f r a m e # i S u b f r a m e # 4

H A R Q - A C K C Q I

O n e r a d i o f r a m e T f   = 1 0 m s

O n e H S - D P C C H s u b f r a m e ( 2 m s )

2 ×  T s l o t   = 5 1 2 0 c h i p sT s l o t   = 2 5 6 0 c h i p s

Page33Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Associated physical channel - DPCHl Besides 3 physical channels on top. There is another physical channel

named DPCH, which is a dedicated channel . DPCH is also called associated

channel used for signalling transmission and power control

l DPCH does not carry service generally, sometimes carry real time (RT)

service such as AMR service 

 N o d e B

U E

H S - P D S C H H S - S C C H D P C H H S -D P C C H

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HSDPA Physical Channels Timing

l Start of HS-SCCH is aligned with the start of PCCPCH

l HS-PDSCH, subframe is transmitted two slots after the associated

HS-SCCH subframe

Page35Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Theoretical HSDPA Maximum Data Ratel  Theoretical HSDPA Maximum data rate is 14.4Mbps

l How do we get to 14.4Mbps ?

p Multi-code transmission

n NodeB must allocate all 15 OVSF codes ( SF =16 ) to one UE

p Consecutive assignments using multiple HARQ process

n NodeB must allocate all time slots to one UE

n UE must decode all transmission correctly on the first transmission

p Low channel coding gain

n

Effective code rate =1n Requires very good channel conditions to decode

p 16QAM

n Requires very good channel condition

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Page36Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Contents

1. HSDPA Concepts

2. HSDPA Key Techniques

3. HSDPA Physical Layer Channels

4.4. HSDPA Layer2 Proto col HSDPA Layer2 Prot ocol 

Page37Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

HSDPA Protocol Stack 

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UTRAN MAC Architecture

Page39Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

UTRAN MAC-hsArchitecture

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Page40Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

UE MAC-hsArchitecture

Page41Copyright© 2006 Huawei Technologies Co., Ltd. All rights reserved.

Implementation of MAC-hs

HS-DPCCH

demodulation and

decode

SRNC(MAC-d)

power monitor 

CQI adjustment

Scheduler 

Queues/flowcontrol

HARQ

TFRC

Power management

Coding

and

modulation

OM

parametersPower limitation

Power for HSDPA

CQI Value

Stat. Of ACK/NACK ACK/NACK

Waiting time

Queue filling infoQueue priority

CQI ValueCode

allocationCode available

Data flow

Control signal

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