g-li 200 rf parts and antenna-20080718-a-2.0

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved

    www.huawei.com

    Internal

    Radio Frequency Part and

    Antenna

    ISSUE 2.0

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 1

    RF components are widely used in

    wireless system, and effect performanceof network

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 2

    Upon completion this course, you will be able to:

    Understand the structure and features of

    combination unit

    Master the key specifications of antenna

    Be able to choose the suitable type of RF

    component

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 3

    Chapter 1 RF Part in BTS

    Chapter 2 Antenna

    Chapter 3 Feeder and TTA

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 4

    RF Device of BTS

    Antenna

    TTA

    Antennastand

    Jumper betweenantenna and TTA

    Jumper betweenTTA and feeder

    Feeder

    Lighteningarrester

    Jumper betweenlightening arresterand cabinet

    BTS312

    cabinet

    SWITCH BOX

    FAN BOX

    AIR BOX

    P

    S

    U

    P

    S

    U

    P

    S

    U

    P

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    U

    P

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    U

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    M

    U

    T

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    T

    E

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    T

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    T

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    U

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    T

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    T

    R

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    T

    R

    X

    T

    R

    X

    C

    D

    U

    C

    D

    U

    TDU

    FAN BOX

    AIR BOX

    P

    S

    U

    P

    S

    U

    P

    S

    U

    P

    S

    U

    P

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    M

    U

    T

    R

    X

    T

    R

    X

    T

    R

    X

    T

    R

    X

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 5

    Introduction

    RF device in BTS includes two parts

    Indoor: combiner and splitter unit

    For example: CDU module, SCU module and EDU module

    Outdoor: antenna, feeder, TTA (tower top amplifier), jumper and

    lightning arrester

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    Function of Combiner and Divider

    Use one antenna to support multiple TX/RX

    signals, decreases the amount of antenna and

    feeder

    Complete duplexer of TX/RX and combine TX

    signal filter, amplify and split the RX signal

    Provide power for TTA

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 7

    CDU (Combining and Divider Unit)

    Tx1

    Tx2

    Tx_Comb

    Tx_Dup

    combiner duplexer

    divider

    divider

    amplifier

    filter

    Rx1Rx2

    Rx3Rx4

    Rx5

    Rx6

    Rx7

    Rx8

    HL_out

    HL_in

    RxD_out

    RxD

    Tx/Rx_ANT

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 8

    SCU (Simple Combiner Unit)

    TX1

    TX2

    TX3

    TX4

    TX -Comb

    combiner

    combiner

    combiner

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 9

    EDU (Enhance Duplexer Unit)

    Tx1 duplexer

    divider

    amplifier

    Rx1

    Rx2

    Tx/Rx_ANT1

    divider

    amplifier

    Rx1

    Rx2

    duplexerTx/Rx_ANT2Tx2

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 10

    Functional structure of the DDPU

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 11

    Functional structure of the DFCU

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 12

    Functional structure of the DFCB

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 13

    Comparison among Different Combining Units

    Equipment Unit Combine mode Typical loss

    of TX (dB)

    Price comparison

    (per TRX)

    CDU Combine two TX, one step 3dBcombiner

    4.5 Middle

    SCU Combine four TX, one step 3dB

    combiner

    6.8 Low

    SCU+CDU Combine four TX, one step 3dB

    combiner

    8 Low

    EDU No combiner, double duplexer 1 Middle

    Double CDU (without combiner) No combiner, duplexer 1 High

    Double CDU (with combiner) Combine two TX, duplexer 4.5 Middle

    DDPU Double duplexer 1 Middle

    DDPU+DCOM Combine four TX, double duplexer 4.5 Low

    DDPU+2DCOM Combine eight TX, double duplexer 7.6~8 Low

    DFCU Combine four TX, double duplexer 3.3~3.5 High

    DFCU+DFCB Combine six-twelve TX, double duplexer 3.3~3.5 High

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    New Type CDU&ESCU

    ECDU

    The structure is the same as CDU's, but increase MAX. input

    power. It can bear up to100W input RF power

    ESCU

    The structure is the same as SCU's, but increase MAX. input

    power. It can bear up to100W input RF power

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 15

    Chapter 1 RF Part in BTS

    Chapter 2 Antenna

    Chapter 3 Feeder and TTA

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 16

    What is Antenna?

    Radiate and receive radio wave ,convert high frequency current

    to electromagnetic wave when transmitting, and convert

    electromagnetic wave to high frequency current when receiving

    Blahblahblah bl ah

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 17

    Function

    Convert high frequency current to electromagnetic wave when

    transmitting

    Convert electromagnetic wave to high frequency current when

    receiving

    Antenna can not amplifythe transmission power, just concentrate

    RF power to one direction

    Horizontal section Vertical section

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 18

    Classification

    Classify by working band: UHF, VHF, microwave, etc.

    Classify by radiate pattern: omni, directional

    Classify by outline: line, pane, parabola feed

    Classify by polarization: vertical and horizontal

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 19

    omni directiondirectional Antenna

    Radiate Pattern

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 20

    Outline

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 21

    vertical polarization

    Omni antenna

    dual polarization

    directional antenna

    Polarization

    vertical polarization

    directional antenna

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 22

    Radiate Pattern

    Omni antenna

    lobe

    Direction

    antenna lobe

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 23

    Radiate pattern

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    Dipole and Isotropic

    Dipole

    1/4 wave length

    1/4 wave length

    1/2wave length

    Isotropic

    Ideal radiator with same ability on all direction!

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 25

    Gain

    The radiation ability of certain antenna overtop dipole or isotropic

    Indicates the antenna feature of electromagnetic radiation in specific

    directions

    Unit: dBi/dBd

    theory source

    l/2 antenna

    Direction antenna

    dBd

    dBi

    dBi =dBd+2.15

    dB/dBm?

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    HUAWEI TECHNOLOGIES CO., LTD. All rights reserved Page 26

    Forward to Back Ratio

    The ratio of main lobe signal strength to back lobe

    This value is within 1845dB. In urban, it is suggested to use

    the antenna with high F/B ratio

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    Beam Angle

    HPBW: Half Power Beam Width

    Lobe angle between two points, the power of which reduce to

    the half of that of the maximum radiate direction

    Vertical HPBW and Horizontal HPBW

    60 (eg) Peak

    - 3dB

    - 3dB

    15 (eg) Peak

    Peak - 3dB

    Peak - 3dB

    Horizontal sectionVertical section

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    Down tilt

    To control coverage

    To decrease inter modulation

    Realization: electron and mechanism

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    mechanism

    electron

    Down tilt

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    Effect of Electron Down tilt

    No Down tilt Electron Down tilt

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    Effect of Mechanism Down tilt

    No Down tilt Mechanism Down tilt

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    Effect of different methods

    10(E) 10(M)6(E)+ 4(M)

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    Polarization

    The direction of electro - vector radiated by antenna. The

    vertical polarization wave is vertical with the plane of ground,

    and the horizontal polarization waves parallel with the plane of

    ground

    Single antenna has only one polarization direction.

    Dual polarized antenna contains two single - polarized antenna

    in one entity. Dual polarization antenna usually adopts +45/ -45

    degree orthogonal polarization.

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    Polarization

    VERTICAL HORIAONTAL

    + 45 - 45

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    Dual Polarization

    V/H +/- 45

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    Port Isolation

    The isolation among ports should be more than 30 dB. for multi-ports

    antenna, Such as dual polarization antenna

    1000mW(1W) 1mW

    10log(1000mW/1mW) = 30dB

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    Null Filled

    It shall apply null filled technology when zero depth is less

    than main beam for 26dB.

    High gain antenna especially adopt null filled technology to

    effectively improve the nearby coverage

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    Main to lower side

    Main to upper side

    Upper Side Lobe Suppression

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    Coupling Between Antennas

    main lobe

    5 .. 10

    Horizontal separation

    Sufficient decoupling distance: 5-10

    Antenna patterns become superimposed if

    distance is too close

    Vertical separation

    Decoupling distance:1can provide better RX

    /TX decoupling

    Minimum coupling loss

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    Installation Examples

    Recommended decoupling

    TX - TX: ~30dB

    TX - RX: ~40dB

    Horizontal decoupling distance

    depends on

    Antenna gain

    Horizontal rad. pattern

    Omni-directional antenna

    Use vertical separation for RX and

    TX

    Use vertical separation (fork) for

    RX and diversity RXVertical decoupling is much more effective

    0,2m

    Omni-directional.: 5 .. 20m

    directional : 1 ... 3m

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    Antenna Installation

    Coupling loss (dB):

    Lv=28+40log(k/) (vertical installation)

    Lv=22+20log(d/)-(G1+G2)-(S1+S2) (horizontal installation)

    : wave length

    K: distance at vertical

    D: distance at horizontal

    G1G2: gain

    S1S2: Relative gain at line connected twoantenna

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    Distributed Antenna System

    BTSBTSPower

    splitterPowersplitter

    Power

    splitter

    coupling

    coupling

    coupling

    coupling

    Small

    antenna

    Small

    antenna

    Small

    antenna

    Small

    antenna

    Small

    antenna

    Small

    antenna

    Small

    antenna

    coupling

    Dual direction

    amplifier

    Dual direction amplifier

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    Symmetry and Asymmetry Network with Coaxial Feed

    Tx /Rx

    3

    3

    3

    3

    3

    3

    3

    3

    3

    3

    3

    Tx /Rx

    1.36

    0.510

    100.5

    Dual direction amplifier

    Dual direction

    amplifier

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    Optical Fiber Distributed Antenna

    The optical fiber repeater is mainly adopted in the case

    of wide coverage and long distance transmission

    signal

    Optical transceiver

    Optical transceiver

    transceiver

    transceiver

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    Leaky Feeder

    Coaxial cable with perforated leads

    It is mainly adopted for tunnel, metro and with high cost of

    equipment and installing

    Tx/Rx

    Matching load

    Matching load

    Dual direction amplifier

    Dual direction amplifier

    Power splitter

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    Leaky Feeder

    Coaxial cable with perforated leads

    Produce constant field-strength along cable runs

    Work at wide-band

    Radiating loss become higher with high frequency

    Very large bending radius

    Formerly often used for tunnel coverage

    Expensive

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    Comparison with Distributed Antenna

    Distributed System Type Advantage Disadvantage Applicability

    Coaxial Feed Flexible

    Low cost

    Reliable

    High loss High building,

    Business center

    Leaky feeder Flexible High cost Metro, Tunnel

    Optical Low loss

    Easy installation

    High cost

    Not flexible

    Need power supply

    Far area coverage

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    Chapter 1 RF Part in BTS

    Chapter 2 Antenna

    Chapter 3 Feeder and TTA

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    Tower Top Amplifier

    Amplify uplink weak signal, then:

    Balance uplink and downlink

    Compensate loss of feeder

    Simplex TTA duplex TTA triplex TTA

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    Triplex Tower Top Amplifier

    Low noise amplifier

    TX filter

    bypassBias TeeBTS

    triplexTTA

    antenna

    DC

    RX filterRX filter

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    Data Configuration of CDU Turn on power of TTA in CDU before installation

    TTA switch is in rear panel of CDU

    Configuration alarm threshold of TTA current before installation

    TTA current switch is in rear panel of CDU

    Configuration attenuation factor of receive signal on console

    attenuation factor of receive signal =TTA gainfeeder loss

    Simplex TTA gain:14dB, triplex TTA gain:12dB

    Don t use TTA if not necessary

    For the convenience of installation

    To get better lighting -proof effect

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    Power Switch and Current Limit

    Rear panel of KMW CDU

    TTAM TTAD

    OFF OFF

    TTAM TTAD

    1

    2

    3TTAM TTAD

    OFF OFF

    123

    TTAM: power switch of main TTA switch

    TTAD: power switch of diversity TTA

    select currentlimitTTAM TTAD

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    Power Switch and Current Limit

    01

    2 3

    012

    3

    Note:

    MAINmain TTA switch

    DIVERSEdiversity TTA switch

    Rear panel of COM DEV CDU

    01 2

    3

    012

    3

    01 2

    3

    012

    3

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    Feeder

    Feeder s election

    Type : 1/27/85/4

    Select 5/4 in the case of feeder length is more than 80 m

    and otherwise select 7/8 in 900MHz

    Select 5/4 in the case of feeder length is more than 50 m

    and otherwise select 7/8 in 1800MHz

    Feeder curvature should not be so big, outer conductor

    should be connected to earth

    LG0.251.156.74.47HFC22D -A(7/8 )

    6090.31.156.465.874.03SYFY -50-22(7/8 )

    ACOME0.221.156.64.3M1474A(7/8 )

    ANDREW0.381.154.774.313.172.98LDF6 -50(5/4 )ANDREW0.251.156.465.874.34.03LDF5 -50A(7/8 )

    2,0001,7001,000890manufacturerBend

    Radius (m)VSWRLOSS dB/100m (MHz)TYPE

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    In this course, we have learned:

    Combiner structure and loss

    Antenna type and feature

    TTA

    Summary

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    www.huawei.com

    Thank You