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3GPPFDD_TestModel3



Description: Signal source to simulate test model 3
Library: 3GPPFDD, Base Station
Class: SDF3GPPFDD_TestModel3
Derived From: 3GPPFDD_TestModelBase

Parameters

Name

Description

Default

Unit

Type

Range

SpecVersion

version of specifications: Version_03_00, Version_12_00, Version_03_02

Version_12_00

 

enum

 

ScrambleCode

index of scramble code

0

 

int

[0:512] for downlink;
[0, 16777215] for uplink

ScrambleOffset

scramble code offset

0

 

int

[0:15]

ScrambleType

scramble code type: normal, right, left

normal

 

enum

 

SCCPCH_SltFmt

SCCPCH slot format: SF0, SF1, SF2, SF3

SF0

 

enum

 

OutputMode

output from 1st frame or 2nd frame: Ramp, Stable

Ramp

 

enum

 

Seed

PN seed offset of DPCH

0

 

int

[0, ∞)

DPCHSet

number of DPCHs in test model 3 for base station: DPCH16, DPCH32

DPCH16

 

enum

 

Pin Outputs

Pin

Name

Description

Signal Type

1

out

output data

complex

Notes/Equations
  1. This model is the base station test model 3 as defined in [4].
  2. Each firing, a slot of complex chips is output that consists of 2560 spread and scrambled complex data bits.
  3. Test model 2 consists of PCCPCH, SCH, CPICH, PICH, SCCPCH (SCCPCH is for Version_03_02 only), and DPCH channels. Channelization codes, time offset, and power levels of each channel are defined in [4].
  4. ScrambleCode i, ScrambleOffset k , and ScrambleType parameters determine the scrambling code n as follows:

    n = (16 ×  i ) + k + m

    • If ScrambleType is normal , m = 0
    • If ScrambleType is right , m = 16384
    • If ScrambleType is left , m = 8192
  5. The DPDCH bits of the DPCHs are filled with PN9 sequences. To ensure non-correlation of the PN9 sequences, each DPDCH uses a unique code Sc as the seed for the PN9 sequence at the start of each frame. The code is determined by the channelization code Cch of the DPCH and a seed offset So as:

    Sc = Cch+ So

    The seed offset is set by the Seed parameter to ensure non-correlation of the PN9 sequences when more than one test model is used.
  6. When OutputMode=Ramp, the signal starts from the first frame and channels are added with their time offset; when OutputMode=Stable, the signal is transmitted after all channels are added (the signal starts from the second frame).

References
  1. 3GPP Technical Specification TS 25.211 V3.10.0, Physical channels and mapping of transport channels onto physical channels (FDD), March 2003, Release 1999.

    http://www.3gpp.org/ftp/Specs/2002-03/R1999/25_series/25211-3a0.zip

  2. 3GPP Technical Specification TS 25.213 V3.7.0, Spreading and modulation (FDD), March 2003, Release 1999.

    http://www.3gpp.org/ftp/Specs/2002-03/R1999/25_series/25213-370.zip

  3. 3GPP Technical Specification TS 25.101 V3.10.0, UE Radio transmission and reception (FDD), March 2003, Release 1999.

    http://www.3gpp.org/ftp/Specs/2002-03/R1999/25_series/25101-3a0.zip

  4. 3GPP Technical Specification TS 25.141 V3.9.0, Base station conformance testing (FDD), March 2003, Release 1999.

    http://www.3gpp.org/ftp/Specs/2002-03/R1999/25_series/25141-390.zip

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