Rohde&Schwarz SMBV100B User manual

Type
User manual
EUTRA/LTE/IoT
R&S®SMBVB-K55/-K84/-K85/-K112/-
K113/-K115/-K119/-K143/-K146/-K175
User Manual
1178819402
Version 11
(;Üßì2)
This document describes the following software options:
R&S®SMBVB-K55, LTE Rel. 8 (1423.7830.xx)
R&S®SMBVB-K84, LTE Rel. 9 (1423.7901.xx)
R&S®SMBVB-K85, LTE Rel. 10 (1423.7918.xx)
R&S®SMBVB-K112, LTE Rel. 11 (1423.8037.xx)
R&S®SMBVB-K113, LTE Rel. 12 (1423.8043.xx)
R&S®SMBVB-K115, Cellular IoT Rel. 13 (1424.8108.xx)
R&S®SMBVB-K119, LTE Rel. 13/14/15 (1423.8066.xx)
R&S®SMBVB-K143, Cellular IoT Rel. 14 (1423.8637.xx)
R&S®SMBVB-K146, Cellular IoT Rel. 15/16/17 (1423.8808.xx)
R&S®SMBVB-K175, U-plane data generation (1423.8989.xx)
This manual describes firmware version FW 5.30.047.xx and later of the R&S®SMBV100B.
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1178.8194.02 | Version 11 | EUTRA/LTE/IoT
The following abbreviations are used throughout this manual: R&S®SMBV100B is abbreviated as R&S SMBVB, R&S®WinIQSIM2TM
is abbreviated as R&S WinIQSIM2
ContentsEUTRA/LTE/IoT
3User Manual 1178.8194.02 ─ 11
Contents
1 Welcome to the EUTRA/LTE/IoT options............................................11
1.1 Key features.................................................................................................................11
1.2 Accessing the EUTRA/LTE dialog............................................................................. 13
1.3 What's new...................................................................................................................13
1.4 Documentation overview............................................................................................13
1.4.1 Getting started manual..................................................................................................14
1.4.2 User manuals and help................................................................................................. 14
1.4.3 Service manual............................................................................................................. 14
1.4.4 Instrument security procedures.....................................................................................14
1.4.5 Printed safety instructions............................................................................................. 14
1.4.6 Data sheets and brochures........................................................................................... 15
1.4.7 Release notes and open source acknowledgment (OSA)............................................ 15
1.4.8 Application notes, application cards, white papers, etc.................................................15
1.4.9 Videos........................................................................................................................... 15
1.5 Scope........................................................................................................................... 16
1.6 Notes on screenshots.................................................................................................16
2 About the EUTRA/LTE options........................................................... 17
2.1 Required options.........................................................................................................17
2.2 Introduction to the EUTRA/LTE technology............................................................. 18
2.2.1 LTE downlink transmission scheme.............................................................................. 18
2.2.2 LTE uplink transmission scheme...................................................................................32
2.2.3 LTE MIMO concepts......................................................................................................40
2.2.4 LTE MBMS concepts.....................................................................................................44
2.2.5 LTE Release 10 (LTE-Advanced) introduction.............................................................. 44
2.2.6 LTE Release 11 introduction......................................................................................... 49
2.2.7 LTE Release 12 introduction......................................................................................... 52
2.2.8 LTE Release 13/14 introduction.................................................................................... 53
3 Find out the implemented 3GPP specification..................................60
4 EUTRA/LTE configuration and settings............................................. 61
4.1 General settings.......................................................................................................... 61
ContentsEUTRA/LTE/IoT
4User Manual 1178.8194.02 ─ 11
4.2 General DL settings / general TDD DL settings....................................................... 68
4.2.1 PDSCH scheduling settings.......................................................................................... 69
4.2.2 DL carrier aggregation configuration.............................................................................70
4.2.3 MBSFN settings............................................................................................................ 78
4.2.4 Physical settings........................................................................................................... 92
4.2.5 Cell-specific settings..................................................................................................... 96
4.2.6 TDD frame structure settings...................................................................................... 100
4.2.7 Downlink signals settings............................................................................................ 101
4.2.8 Antenna ports settings................................................................................................ 125
4.3 DL frame configuration settings..............................................................................127
4.3.1 General frame configuration settings.......................................................................... 127
4.3.2 Dummy data configuration settings.............................................................................129
4.3.3 User configuration settings..........................................................................................130
4.3.4 Auto sequence configuration.......................................................................................138
4.3.5 EPDCCH configuration settings.................................................................................. 147
4.3.6 Scrambling configuration settings............................................................................... 152
4.3.7 SPS configuration settings.......................................................................................... 153
4.3.8 LAA settings................................................................................................................ 158
4.3.9 Subframe configuration settings..................................................................................163
4.3.10 DL resource allocation table........................................................................................164
4.3.11 PCFICH settings......................................................................................................... 171
4.3.12 PHICH settings............................................................................................................173
4.3.13 (E)PDCCH settings..................................................................................................... 176
4.3.14 (E)PDCCH format variable..........................................................................................180
4.3.15 DCI format configuration............................................................................................. 189
4.4 Enhanced PBCH, PDSCH and PMCH settings....................................................... 202
4.4.1 Precoding settings.......................................................................................................203
4.4.2 CSI-RS settings...........................................................................................................208
4.4.3 Scrambling settings.....................................................................................................209
4.4.4 Channel coding settings..............................................................................................210
4.5 DL antenna port mapping settings..........................................................................212
4.6 General UL settings.................................................................................................. 218
4.6.1 UL carrier aggregation configuration...........................................................................219
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4.6.2 Physical settings......................................................................................................... 225
4.6.3 Cell-specific settings................................................................................................... 229
4.6.4 TDD frame structure settings...................................................................................... 232
4.6.5 Signals settings........................................................................................................... 233
4.6.6 PRACH settings.......................................................................................................... 237
4.6.7 PUSCH structure.........................................................................................................239
4.6.8 PUCCH structure........................................................................................................ 240
4.7 UL frame configuration settings..............................................................................243
4.7.1 General scheduling configuration settings.................................................................. 243
4.7.2 Subframe configuration............................................................................................... 246
4.7.3 UL allocation table.......................................................................................................248
4.8 User equipment configuration................................................................................. 253
4.8.1 Common settings........................................................................................................ 254
4.8.2 Physical uplink control channel (PUCCH)...................................................................256
4.8.3 FRC configuration....................................................................................................... 257
4.8.4 Physical uplink shared channel (PUSCH)...................................................................261
4.8.5 Demodulation reference signal (DMRS)..................................................................... 266
4.8.6 Sounding reference signal (SRS)................................................................................268
4.8.7 Sidelink settings.......................................................................................................... 278
4.8.8 Antenna port mapping.................................................................................................304
4.8.9 PRACH power ramping...............................................................................................307
4.8.10 PRACH configuration.................................................................................................. 308
4.9 Enhanced PUSCH settings.......................................................................................311
4.9.1 Common PUSCH settings...........................................................................................311
4.9.2 Demodulation reference signal (DMRS)..................................................................... 314
4.9.3 Channel coding / multiplexing..................................................................................... 315
4.10 Enhanced PUCCH settings...................................................................................... 321
4.10.1 Common settings........................................................................................................ 321
4.10.2 Channel coding / multiplexing..................................................................................... 323
4.10.3 Demodulation reference signal (DMRS)..................................................................... 327
5 Generating eMTC/NB-IoT signals..................................................... 329
5.1 About eMTC............................................................................................................... 330
5.1.1 Physical layer.............................................................................................................. 332
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6User Manual 1178.8194.02 ─ 11
5.1.2 PBCH.......................................................................................................................... 333
5.1.3 PDSCH........................................................................................................................333
5.1.4 MPDCCH.................................................................................................................... 337
5.1.5 PUSCH........................................................................................................................341
5.1.6 PUCCH....................................................................................................................... 344
5.1.7 PRACH........................................................................................................................346
5.2 About NB-IoT............................................................................................................. 347
5.2.1 Physical layer.............................................................................................................. 348
5.2.2 NPSS and NSSS.........................................................................................................351
5.2.3 NRS.............................................................................................................................352
5.2.4 NPBCH........................................................................................................................353
5.2.5 NPDCCH.....................................................................................................................354
5.2.6 NPDSCH..................................................................................................................... 358
5.2.7 NDRS.......................................................................................................................... 360
5.2.8 NPUSCH..................................................................................................................... 361
5.2.9 NPRACH..................................................................................................................... 364
5.3 eMTC/NB-IoT-specific configuration and settings................................................. 367
5.3.1 NB-IoT carrier allocation............................................................................................. 368
5.3.2 NPBCH, NPDCCH and NPDSCH settings..................................................................375
5.3.3 FRC settings............................................................................................................... 406
5.3.4 NDMRS settings..........................................................................................................409
5.3.5 NPUSCH settings........................................................................................................411
5.3.6 NPRACH settings........................................................................................................423
5.3.7 eMTC DL allocations settings..................................................................................... 429
5.3.8 eMTC PUSCH settings............................................................................................... 459
5.3.9 eMTC PUCCH settings............................................................................................... 471
5.3.10 eMTC PRACH settings............................................................................................... 478
6 Observing current allocations on the time plan..............................484
6.1 OFDMA time plan...................................................................................................... 484
6.2 SC-FDMA time plan...................................................................................................486
6.3 TDD time plan............................................................................................................ 487
6.4 eMTC/NB-IoT indication in the DL time plan...........................................................488
6.5 eMTC/NB-IoT indication in the UL time plan...........................................................491
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6.6 TDD time plan............................................................................................................ 492
7 Performing BS tests according to TS 36.141.................................. 495
7.1 Introduction to conformance testing...................................................................... 495
7.1.1 UE conformance testing..............................................................................................495
7.1.2 BS conformance testing.............................................................................................. 497
7.1.3 Repeater conformance testing.................................................................................... 497
7.2 Required options.......................................................................................................497
7.3 Supported test cases................................................................................................497
7.3.1 Generic structure of the description of the implemented test cases........................... 498
7.4 Standard test setups.................................................................................................499
7.4.1 Standard test setup - one path....................................................................................499
7.5 General considerations............................................................................................ 499
7.6 User interface............................................................................................................ 503
7.6.1 Test case settings........................................................................................................503
7.6.2 Instrument settings......................................................................................................505
7.6.3 Frequency allocation settings......................................................................................506
7.6.4 Wanted signal and cell-specific settings......................................................................507
7.6.5 Diagram.......................................................................................................................509
7.6.6 Apply settings..............................................................................................................509
7.7 Transmitter characteristics (TS 36.141, chapter 6)................................................ 509
7.7.1 Prior considerations.................................................................................................... 510
7.7.2 Introduction to the unwanted emissions tests............................................................. 510
7.7.3 General workflow for carrying out a transmitter test....................................................512
7.7.4 Interfering signal settings............................................................................................ 514
7.7.5 Test case 6.7: transmitter intermodulation.................................................................. 516
7.8 Receiver characteristics (TS 36.141, chapter 7).....................................................517
7.8.1 Prior considerations.................................................................................................... 518
7.8.2 General workflow for carrying out a receiver test........................................................519
7.8.3 Interfering signal settings............................................................................................ 520
7.8.4 Test case 7.2: reference sensitivity level.....................................................................523
7.8.5 Test case 7.3: dynamic range..................................................................................... 524
7.8.6 Test case 7.4: in-channel selectivity (ICS).................................................................. 526
8 Generating user plane data...............................................................529
ContentsEUTRA/LTE/IoT
8User Manual 1178.8194.02 ─ 11
8.1 Required options.......................................................................................................529
8.2 File format and folder structure...............................................................................529
9 Signal control and signal characteristics........................................531
9.1 Time domain windowing settings............................................................................531
9.2 Filter/clipping/ARB settings..................................................................................... 532
9.2.1 Filter settings...............................................................................................................532
9.2.2 Clipping settings..........................................................................................................538
9.2.3 ARB settings............................................................................................................... 539
9.3 Adjusting the signal power...................................................................................... 540
9.3.1 General power-related settings overview....................................................................540
9.3.2 Downlink power-related settings overview.................................................................. 540
9.3.3 Uplink power-related settings overview.......................................................................541
9.3.4 Power settings.............................................................................................................542
9.4 Trigger settings......................................................................................................... 545
9.5 Marker settings..........................................................................................................551
9.6 Clock settings............................................................................................................553
9.7 Global connectors settings......................................................................................554
10 Remote-control commands...............................................................555
10.1 Primary commands...................................................................................................557
10.2 Filter/clipping/power................................................................................................. 562
10.2.1 Filter settings...............................................................................................................562
10.2.2 Clipping settings..........................................................................................................566
10.2.3 Time domain windowing settings................................................................................ 567
10.2.4 Power settings.............................................................................................................567
10.3 Clock.......................................................................................................................... 570
10.4 Timing configuration.................................................................................................570
10.5 Trigger........................................................................................................................ 571
10.6 Marker........................................................................................................................ 577
10.7 General TDD commands.......................................................................................... 580
10.8 General downlink commands.................................................................................. 581
10.9 General uplink commands....................................................................................... 593
10.10 DL frame configuration.............................................................................................606
10.11 DL MBFSN..................................................................................................................614
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9User Manual 1178.8194.02 ─ 11
10.12 DL carrier aggregation..............................................................................................626
10.13 CSI-RS........................................................................................................................ 631
10.14 LAA and DRS.............................................................................................................638
10.15 Enhanced PBCH, PDSCH, PMCH.............................................................................649
10.16 Enhanced PCFICH, PHICH and PDCCH configuration.......................................... 657
10.17 Auto sequence.......................................................................................................... 690
10.18 UL frame configuration.............................................................................................702
10.19 UL carrier aggregation..............................................................................................708
10.20 UL enhanced..............................................................................................................711
10.21 User configuration.................................................................................................... 728
10.22 EPDCCH..................................................................................................................... 739
10.23 Dummy data configuration.......................................................................................743
10.24 SPS configuration..................................................................................................... 745
10.25 User equipment......................................................................................................... 746
10.26 Sidelink configuration.............................................................................................. 771
10.27 eMTC/NB-IoT commands..........................................................................................800
10.27.1 General IoT downlink.................................................................................................. 824
10.27.2 DL IoT frame configuration..........................................................................................844
10.27.3 General IoT uplink.......................................................................................................894
10.27.4 IoT UE configuration................................................................................................... 902
10.28 Test case wizard remote-control commands..........................................................933
Annex.................................................................................................. 944
A Conflict handling................................................................................944
A.1 Downlink.................................................................................................................... 944
A.2 Uplink......................................................................................................................... 945
A.3 DCI conflict handling................................................................................................ 946
B Subframes handling...........................................................................949
B.1 Copy/paste subframe................................................................................................949
B.2 Number of configurable subframes........................................................................ 949
B.3 Four configurable frames in uplink and downlink direction.................................950
B.3.1 Uplink direction............................................................................................................950
B.3.2 Downlink direction....................................................................................................... 952
ContentsEUTRA/LTE/IoT
10User Manual 1178.8194.02 ─ 11
Glossary: 3GPP specifications, references.....................................954
List of commands.............................................................................. 956
Index....................................................................................................980
Welcome to the EUTRA/LTE/IoT optionsEUTRA/LTE/IoT
11User Manual 1178.8194.02 ─ 11
1 Welcome to the EUTRA/LTE/IoT options
The R&S SMBV100B-K55/-K84/-K85/-K112/-K113/-K115/-K119/-K143/-K146/-K175 are
firmware applications that add functionality to generate signals in accordance with the
3GPP standard EUTRA/LTE.
In the following, the terms LTE and EUTRA are used interchangeably.
1.1 Key features
Preamble
All supported LTE features are in line with 3GPP Release 14; the following official
3GPP specifications are implemented:
3GPP TS 36.211, version 15.6.0
3GPP TS 36.212, version 15.6.1
3GPP TS 36.213, version 15.6.0
The R&S SMBV100B-K55/-K84/-K85/-K112/-K113/-K119 key features
The R&S SMBV100B simulates EUTRA/LTE at the physical channel level. The follow-
ing list gives an overview of the functions provided for generating an EUTRA/LTE sig-
nal:
Supports FDD and TDD
Intuitive user interface with graphical display of time plan
Full support of P-SYNC, S-SYNC and DL reference signal derived from cell ID
PBCH, PDSCH, (E)PDCCH, PCFICH, PHICH supported
Downlink 256QAM for PDSCH and PMCH
PDCCH with full DCI configuration (all DCI formats supported), incl. DCI format 1C
for eIMTA-RNTI
Channel coding and scrambling for PDSCH and PBCH (including MIB)
Automatic PDSCH scheduling from DCI
Automatic scheduling of downlink transmissions according to long HARQ patterns
Full downlink MIMO and transmit diversity support
Uplink MIMO support
Supports PUSCH with channel coding and scrambling
Configuration of all PRACH and PUCCH formats
Fixed reference channels (FRC) in line with 3GPP TS 36.141
Downlink test models (E-TMs) in line with 3GPP TS 36.141, incl. E-TMs for
256QAM
Test case wizard
Key features
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12User Manual 1178.8194.02 ─ 11
Simulation of single-layer, dual-layer and up to eight-layer beamforming scenarios
(transmission modes 7, 8 and 9) on antenna ports 5 and 7 to 14
Support of MBMS single frequency network (MBSFN) subframes on antenna port 4
Generation of positioning reference signals (PRS) on antenna port 6
Generation of LTE-Advanced downlink and uplink carrier aggregation scenarios (up
to 5 carriers) with support for cross-carrier scheduling; incl. uplink carrier aggrega-
tion with mixed duplexing
LTE-Advanced enhanced SC-FDMA with PUSCH/PUCCH synchronous transmis-
sion and clustered PUSCH
Support of CSI reference signals
Support of DL LAA bursts configuration
Support of QAM256 in uplink
The R&S SMBV100B-K115 key features
The R&S SMBV100B simulates eMTC and NB-IoT at the physical channel level. The
following is an overview of provided functions:
Supports uplink eMTC and NB-IoT configuration, and downlink NB-IoT configura-
tion for CAT-M1 and CAT-NB1 devices
Supports IoT standalone configuration and mixed configuration with LTE
Supports NB-IoT in-band and guard band operating modes
Intuitive user interface with graphical display of time plan
Support of coverage enhancement CE modes A and B and CE levels 0, 1 and 2
Support of the new NB channels and synchronization signals (NPSS, NSSS and
DL reference signal derived from NCell ID)
MPBCH, PDSCH, PBCH supported
DCI-based configuration of NPDCCH and NPDSCH
Channel coding and scrambling for NPDCCH, NPDSCH and NPBCH (including
SIB type 1)
Supports NPUSCH with channel coding and scrambling
NPRACH configuration
Support of all specified modulation schemes
The R&S SMBV100B-K143 key features
3GPP LTE Rel. 14 (eMTC and NB-IoT)
Introduces eMTC widebands and new types CAT-M2 and CAT-NB2 devices.
The R&S SMBV100B-K146 key features
3GPP LTE Rel. 15/16/17 (NB-IoT)
Introduces NB-IoT TDD mode in UL, FDD NPRACH formats, early data transmis-
sion, NB-IoT wake up signal, scheduling request in uplink for NPUSCH F2, and
NPUSCH modulation up to 16QAM.
This user manual contains a description of the functionality that the application pro-
vides, including remote control operation.
Key features
Welcome to the EUTRA/LTE/IoT optionsEUTRA/LTE/IoT
13User Manual 1178.8194.02 ─ 11
All functions not discussed in this manual are the same as in the base unit and are
described in the R&S SMBV100B user manual. The latest version is available at:
www.rohde-schwarz.com/manual/SMBV100B
Installation
You can find detailed installation instructions in the delivery of the option or in the
R&S SMBV100B service manual.
1.2 Accessing the EUTRA/LTE dialog
To open the dialog with EUTRA/LTE settings
In the block diagram of the R&S SMBV100B, select "Baseband > EUTRA/LTE".
A dialog box opens that display the provided general settings.
The signal generation is not started immediately. To start signal generation with the
default settings, select "State > On".
1.3 What's new
This manual describes firmware version FW 5.30.047.xx and later of the
R&S®SMBV100B.
Compared to the previous version 5.10.035, the EUTRA/LTE/IoT firmware application
provides the following new features and changes:
Support of 16QAM with NPUSCH for NB-IoT, see "Modulation" on page 416
Time-based trigger added, see "Time Based Trigger" on page 547
ARB sequence length supported also in subframes, see "(Current) Sequence
Length" on page 539
1.4 Documentation overview
This section provides an overview of the R&S SMBV100B user documentation. Unless
specified otherwise, you find the documents at:
www.rohde-schwarz.com/manual/smbv100b
Documentation overview
Welcome to the EUTRA/LTE/IoT optionsEUTRA/LTE/IoT
14User Manual 1178.8194.02 ─ 11
1.4.1 Getting started manual
Introduces the R&S SMBV100B and describes how to set up and start working with the
product. Includes basic operations, typical measurement examples, and general infor-
mation, e.g. safety instructions, etc. A printed version is delivered with the instrument.
1.4.2 User manuals and help
Separate manuals for the base unit and the software options are provided for down-
load:
Base unit manual
Contains the description of all instrument modes and functions. It also provides an
introduction to remote control, a complete description of the remote control com-
mands with programming examples, and information on maintenance, instrument
interfaces and error messages. Includes the contents of the getting started manual.
Software option manual
Contains the description of the specific functions of an option. Basic information on
operating the R&S SMBV100B is not included.
The contents of the user manuals are available as help in the R&S SMBV100B. The
help offers quick, context-sensitive access to the complete information for the base unit
and the software options.
All user manuals are also available for download or for immediate display on the Inter-
net.
1.4.3 Service manual
Describes the performance test for checking compliance with rated specifications, firm-
ware update, troubleshooting, adjustments, installing options and maintenance.
The service manual is available for registered users on the global Rohde & Schwarz
information system (GLORIS):
https://gloris.rohde-schwarz.com
1.4.4 Instrument security procedures
Deals with security issues when working with the R&S SMBV100B in secure areas. It
is available for download on the internet.
1.4.5 Printed safety instructions
Provides safety information in many languages. The printed document is delivered with
the product.
Documentation overview
Welcome to the EUTRA/LTE/IoT optionsEUTRA/LTE/IoT
15User Manual 1178.8194.02 ─ 11
1.4.6 Data sheets and brochures
The data sheet contains the technical specifications of the R&S SMBV100B. It also
lists the options and their order numbers and optional accessories.
The brochure provides an overview of the instrument and deals with the specific char-
acteristics.
See www.rohde-schwarz.com/brochure-datasheet/smbv100b
1.4.7 Release notes and open source acknowledgment (OSA)
The release notes list new features, improvements and known issues of the current
firmware version, and describe the firmware installation.
The software makes use of several valuable open source software packages. An open-
source acknowledgment document provides verbatim license texts of the used open
source software.
See www.rohde-schwarz.com/firmware/smbv100b
1.4.8 Application notes, application cards, white papers, etc.
These documents deal with special applications or background information on particu-
lar topics.
See www.rohde-schwarz.com/application/smbv100b
1.4.9 Videos
Find various videos on Rohde & Schwarz products and test and measurement topics
on YouTube: https://www.youtube.com/@RohdeundSchwarz
On the menu bar, search for your product to find related videos.
Figure 1-1: Product search on YouTube
Documentation overview
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16User Manual 1178.8194.02 ─ 11
1.5 Scope
Tasks (in manual or remote operation) that are also performed in the base unit in the
same way are not described here.
In particular, it includes:
Managing settings and data lists, like saving and loading settings, creating and
accessing data lists, or accessing files in a particular directory.
Information on regular trigger, marker and clock signals and filter settings, if appro-
priate.
General instrument configuration, such as checking the system configuration, con-
figuring networks and remote operation
Using the common status registers
For a description of such tasks, see the R&S SMBV100B user manual.
1.6 Notes on screenshots
When describing the functions of the product, we use sample screenshots. These
screenshots are meant to illustrate as many as possible of the provided functions and
possible interdependencies between parameters. The shown values may not represent
realistic usage scenarios.
The screenshots usually show a fully equipped product, that is: with all options instal-
led. Thus, some functions shown in the screenshots may not be available in your par-
ticular product configuration.
Notes on screenshots
About the EUTRA/LTE optionsEUTRA/LTE/IoT
17User Manual 1178.8194.02 ─ 11
2 About the EUTRA/LTE options
For better understanding of the required configuration settings, this section lists:
Some background information on basic terms and principles used in the
EUTRA/LTE technology
Information on functions specific to the instrument
2.1 Required options
The basic equipment layout for generating LTE signals includes the:
Base unit
Baseband real-time extension (R&S SMBVB-K520)
Digital standard EUTRA/LTE release 8 (R&S SMBVB-K55)
The following options are required to support all LTE-related settings described in
this user manual:
Option LTE release 8 (R&S SMBVB-K55)
Option LTE release 9 (R&S SMBVB-K84)
Option LTE release 10 (R&S SMBVB-K85)
Option LTE release 11 (R&S SMBVB-K112)
Option LTE release 12 (R&S SMBVB-K113)
Option LTE release 13/14/15 (R&S SMBVB-K119)
O-RAN: U-plane generation (R&S SMBVB-K175)
Option cellular IoT release 13 (R&S SMBVB-K115)
Option cellular IoT release 14 (R&S SMBVB-K143)
Option cellular IoT release 15/16/17 (R&S SMBVB-K146)
Further options are required to perform all test cases implemented in the "Test Case
Wizard", see Chapter 7.2, "Required options", on page 497.
You can generate signals via play-back of waveform files at the signal generator. To
create the waveform file using R&S WinIQSIM2, you do not need a specific option.
To play back the waveform file at the signal generator, you have two options:
Install the R&S WinIQSIM2 option of the digital standard, e.g. R&S SMBVB-K255
for playing LTE waveforms
If supported, install the real-time option of the digital standard, e.g. R&S SMBVB-
K55 for playing LTE waveforms
For more information, see data sheet.
Required options
About the EUTRA/LTE optionsEUTRA/LTE/IoT
18User Manual 1178.8194.02 ─ 11
2.2 Introduction to the EUTRA/LTE technology
This section provides an introduction to the EUTRA/LTE technology.
2.2.1 LTE downlink transmission scheme
The downlink transmission scheme for E-UTRA FDD and TDD modes is based on con-
ventional OFDM. In an OFDM system, the available spectrum is divided into multiple
subcarriers, which are orthogonal to each other. Each of the subcarriers is independ-
ently modulated by a low rate data stream.
The OFDM signal is generated using the inverse fast Fourier transform (IFFT) digital
signal processing. The IFFT converts a number N of complex data symbols used as
frequency domain bins into the time domain signal. Such an N-point IFFT is illustrated
on Figure 2-1.
Figure 2-1: OFDM useful symbol generation using an IFFT (3GPP TR 25.892)
a(mN+n) = nth subchannel modulated data symbol
mTu < t (m+1)Tu= time period
The vector sm is defined as the useful OFDM symbol. It is the time superposition of the
N narrowband modulated subcarriers. Therefore, from a parallel stream of N sources
of data, each one independently modulated, a waveform composed of N orthogonal
subcarriers is obtained. Each of the subcarriers is a frequency sinc function.
The Figure 2-2 illustrates the mapping from a serial stream of QAM symbols to N paral-
lel streams, used as frequency domain bins for the IFFT. The N-point time domain
blocks obtained from the IFFT are then serialized to create a time domain signal. Not
shown in the figure is the process of cyclic prefix insertion.
Figure 2-2: OFDM signal generation chain (3GPP TR 25.892)
Introduction to the EUTRA/LTE technology
About the EUTRA/LTE optionsEUTRA/LTE/IoT
19User Manual 1178.8194.02 ─ 11
In contrast to an OFDM transmission scheme, OFDMA allows the access of multiple
users on the available bandwidth. Each user is assigned a specific time-frequency
resource. As a fundamental principle of E-UTRA, the data channels are shared chan-
nels. For each transmission time interval of 1 ms, a new scheduling decision is taken
regarding which users are assigned to which time/frequency resources during this
transmission time interval.
2.2.1.1 OFDMA parameterization
Two radio frame structures, one for FDD (frame structure type 1) and one for TDD
(frame structure type 2) mode are defined. These EUTRA frame structures are descri-
bed in TS 36.211.
Channel bandwidth
OFDMA physical layer parameterization is based on a bandwidth agnostic layer 1.
However, current 3GPP specifications focus on the channel bandwidth listed in
Table 2-1.
The bandwidth is expressed as number of resource blocks in the range from 6 to 110
resource blocks (RB), which results in bandwidths from 1.08 MHz to 19.8 MHz.
Table 2-1: Channel bandwidth according to 3GPP TS 36.804
Channel bandwidth 1.4 MHz 3 MHz 5 MHz 10 MHz 15 MHz 20 MHz
Number of RBs 6 12 25 50 75 100
Number of occupied subcarriers 73 181 301 601 901 1201
FFT size 128, 256,
512,
1024,
2048
256, 512,
1024,
2048
512,
1024,
2048
1024,
2048
1536,
2048
2048
Frame structure type 1 (FDD)
The FDD frame structures type 1 is based on a 10 ms radio frame that is divided into
20 equally sized slots of 0.5 ms. A subframe consists of two consecutive slots, so one
radio frame contains 10 subframes.
Frame format 1 (FDD mode) illustrates frame structure type 1 (Ts is expressing the
basic time unit corresponding to 30.72 MHz). Frame format 1 is applicable to both full
and half duplex FDD.
Figure 2-3: Frame format 1 (FDD mode)
Introduction to the EUTRA/LTE technology
About the EUTRA/LTE optionsEUTRA/LTE/IoT
20User Manual 1178.8194.02 ─ 11
Related settings
See:
"Duplexing" on page 64
Chapter 4.3, "DL frame configuration settings", on page 127
Chapter 6.1, "OFDMA time plan", on page 484.
Frame structure type 2 (TDD)
The TDD frame format 2 is based on a 10 ms radio frame, but the frame is divided into
two half-frames, 5 ms each. Each half-frame consists of five 1 ms long subframes,
which are reserved either for downlink or uplink transmission or are caring special
information (see Figure 2-4).
Figure 2-4: Frame format 2 (TDD mode), 5 ms switching periodicity
All non-special subframes are divided into two 0.5 ms long slots. The special sub-
frames consist of three fields DwPTS (downlink pilot timeslot), GP (guard period), and
UpPTS (uplink pilot timeslot). The length of these fields can vary in specified limits so
that the total special subframe's length is maintained constant (1 ms). The 3GPP speci-
fication defines 10 special subframe configurations for normal cyclic prefix type and
eight for extended cyclic prefix type. These subframe configurations specify the
allowed DwPTS/GP/UpPTS lengths' combinations.
The 3GPP specification defines seven different uplink-downlink configurations, i.e.
defines the downlink-to-uplink switch-point periodicity (5 ms or 10 ms) and the allowed
combination of downlink, uplink, and special slots. In all the uplink-downlink configura-
tions and for any downlink-to-uplink switch-point periodicity, subframe 0, subframe 5,
and DwPTS are always reserved for downlink transmission. UpPTS and the subframe
following the special subframe are always reserved for uplink transmission.
Figure 2-5 shows the supported uplink-downlink configurations according to TS 36.211.
Introduction to the EUTRA/LTE technology
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Rohde&Schwarz SMBV100B User manual

Type
User manual

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