Tech-invite3GPPspaceIETFspace
21222324252627282931323334353637384‑5x

Content for  TR 36.942  Word version:  18.0.0

Top   Top   None   None   Next
1…   4…

 

1  Scopep. 7

During the E-UTRA standards development, the physical layer parameters will be decided using system scenarios, together with implementation issues, reflecting the environments that E-UTRA will be designed to operate in.

2  Referencesp. 7

The following documents contain provisions which, through reference in this text, constitute provisions of the present document.
  • References are either specific (identified by date of publication, edition number, version number, etc.) or non-specific.
  • For a specific reference, subsequent revisions do not apply.
  • For a non-specific reference, the latest version applies. In the case of a reference to a 3GPP document (including a GSM document), a non-specific reference implicitly refers to the latest version of that document in the same Release as the present document.
[1]
TR 25.896: "Feasibility Study for Enhanced Uplink for UTRA FDD"
[2]
TR 25.816: "UMTS 900 MHz Work Item Technical Report"
[3]
TR 25.942: "Radio Frequency (RF) system scenarios"
[4]
TR 25.814: "Physical Layer Aspects for Evolved UTRA"
[5]
3GPP TR 30.03: "Selection procedures for the choice of radio transmission technologies of the UMTS"
[6]
R4-051146: "Some operators' requirements for prioritization of performance requirements work in RAN WG4", RAN4#37
[7]
TR 25.951: "FDD Base Station (BS) classification"
[8]
TR 25.895: "Analysis of higher chip rates for UTRA TDD evolution."
[9]
R4-070235: "Analysis of co-existence simulation results", RAN4#42
[10]
R4-070084: "Coexistence Simulation Results for 5MHz E-UTRA -> UTRA FDD Uplink with Revised Simulation Assumptions", RAN4#42
[11]
R4-070034: "Additional simulation results on 5 MHz LTE to WCDMA FDD UL co-existence studies", RAN4#42
[12]
R4-070262: "Simulation results on 5 MHz LTE to WCDMA FDD UL co-existence studies with revised simulation assumptions", RAN4#42
[13]
R4-070263: "Proposal on LTE ACLR requirements for UE", RAN4#42
[14]
R4-061288: "Downlink LTE 900 (Rural Macro) with Downlink GSM900 (Rural Macro) Co-existence Simulation Results", RAN4#41
[15]
R4-070391: "LTE 900 - GSM 900 Downlink Coexistence", RAN4#42bis
[16]
R4-061304: "LTE 900 - GSM 900 Uplink Simulation Results", RAN4#41
[17]
R4-070390: "LTE 900 - GSM 900 Uplink Simulation Results", RAN4#42bis
[18]
R4-070392: "LTE-LTE Coexistence with asymmetrical bandwidth", RAN4#42bis
[19]
TS 36.104: "Base Station (BS) radio transmission and reception"
[20]
TS 25.104: "Base Station (BS) radio transmission and reception (FDD)"
[21]
TS 36.141: "Base Station (BS) conformance testing"
[22]
Recommendation ITU-R SM.329-10: "Unwanted emissions in the spurious domain"
[23]
"International Telecommunications Union Radio Regulations", Edition 2004, Volume 1 - Articles, ITU, December 2004.
[24]
"Adjacent Band Compatibility between UMTS and Other Services in the 2 GHz Band", ERC Report 65, Menton, May 1999, revised in Helsinki, November 1999.
[25]
"Title 47 of the Code of Federal Regulations (CFR)", Federal Communications Commission.
[26]
R4-070337: "Impact of second adjacent channel ACLR/ACS on ACIR" (Nokia Siemens Networks).
[27]
R4-070430: "UE ACS and BS ACLRs" (Fujitsu ).
[28]
R4-070264: "Proposal on LTE ACLR requirements for Node B" (NTT DoCoMo).
[29]
Recommendation ITU-R M.1580-1: "Generic unwanted emission characteristics of base stations using the terrestrial radio interfaces of IMT-2000".
[30]
Report ITU-R M.2039: "Characteristics of terrestrial IMT-2000 systems for frequency sharing/interference analyses".
[31]
ETSI EN 301 908-3 V2.2.1 (2003-10): "Electromagnetic compatibility and Radio spectrum Matters (ERM); Base Stations (BS), Repeaters and User Equipment (UE) for IMT-2000 Third-Generation cellular networks; Part 3: Harmonized EN for IMT-2000, CDMA Direct Spread (UTRA FDD) (BS) covering essential requirements of article 3.2 of the R&TTE Directive".
Up

3  Definitions, symbols and abbreviationsp. 8

3.1  Definitionsp. 8

Void

3.2  Symbolsp. 8

Void

3.3  Abbreviationsp. 8

For the purposes of the present document, the following abbreviations apply:
ACIR
Adjacent Channel Interference Ratio
ACLR
Adjacent Channel Leakage power Ratio
ACS
Adjacent Channel Selectivity
AMC
Adaptive Modulation and Coding
AWGN
Additive White Gaussian Noise
BS
Base Station
CDF
Cumulative Distribution Function
DL
Downlink
FDD
Frequency Division Duplex
MC
Monte-Carlo
MCL
Minimum Coupling Loss
MCS
Modulation and Coding Scheme
PC
Power Control
PSD
Power Spectral Density
RX
Receiver
TDD
Time Division Duplex
TX
Transmitter
UE
User Equipment
UL
Uplink

Up   Top   ToC