2009-7-8 16:17
digit
【LTE书籍】《Single Carrier FDMA:A New Air Interface for Long Term Evolution》
【资料名称】:Single Carrier FDMA for Uplink of LTErk;H"G.c#H!y
Z$LX/v#_'m
【资料作者】:Hyung G.
}K K2ma]
_$rd6S'O0[y;x
【资料日期】:December 2008N KzE&y,Nc$c ^
;?Ca;aV
【资料语言】:英文Vx x.KG Ca2w+R$G,H|
^Z,R z0nzD*h]/k
【资料格式】:PDF_H-A8G6V,\d,e
^rn ?
yi0e
【资料目录和简介】:
@9t0d`}&{
]%A;ZuOw.\?
SC-FDMA is a new technique that has drawn attention from the communications industry as an attractive alternative to Orthogonal Frequency Single Carrier Frequency Division Multiple Access (SC-FDMA) is a novel method of radio transmission under consideration for deployment in future cellular systems; specifically, in 3rd Generation Partnership Project Long Term Evolution (3GPP LTE) systems. SC-FDMA has drawn great attention from the communications industry as an attractive alternative to Orthogonal Frequency Division Multiple Access (OFDMA).
'jF0CEc
G
Introduction to Single Carrier FDMA places SC-FDMA in the wider context of wireless communications, providing the reader with an in-depth tutorial on SC-FDMA technology. The book introduces the reader to this new multiple access technique that utilizes single carrier modulation along with orthogonal frequency multiplexing and frequency domain equalization, plus its applications in communications settings. It considers the similarities with and differences from orthogonal frequency division modulation, multiplexing, and multiple access used extensively in cellular, broadcasting, and digital subscriber loop applications. Particular reference is made to the peak power characteristics of an SC-FDMA signal as an added advantage over OFDMA. YJ@Rfg0q
5_(U{:dG$KFq
Provides an extensive overview of the principles of SC-FDMA and its relation to other transmission techniques. 8e2b5AgL"]*D
Explains how the details of a specific implementation influence the tradeoffs among various figures of merit. 8`d[ nEj
Describes in detail the configuration of the SC-FDMA uplink transmission scheme published by 3GPP.
9f ~-]+B/_[u M {5X
Features link level simulation of an uplink SC-FDMA system using MATLAB.
Q5rcX+jC"R^S
0R&zt6T\;i2^Z_7~
This is an essential text for industry engineers who are researching and developing 3GPP LTE systems. It is suitable for engineers designing wireless network equipment, handsets, data cards, modules, chipsets, and test equipment as well as those involved in designing LTE infrastructure. It would also be of interest to academics, graduate students, and industry researchers involved in advanced wireless communications, as well as business analysts who follow the cellular market.
\+{MhG;?
%V#FW/gzu
【目录】:b Z%Sf i-Bf\Lt
Preface
t0t,Jr cXn
1 Introduction
yCr|G&P6G
1.1 Generations,x4WV~0L6o4m
1.2 Standards
)~
]?@*sNQ
1.3 Cellular Standards Organizations 3GPP and 3GPP2
!z'\ M|2CO} l ^
1.4 IEEE Standards0r!o.Q
Fvk"O+rR#b
1.5 Advanced Mobile Wireless Systems Based on FDMA
d,qvq{/X
1.6 Figures of Meritv-D9mi*vE7S
1.7 Frequency Division Technology in Broadband Wireless
U7U0Oj7?f
SystemsU~v+|?@6]
References
p#l"Ss9p[L
e#^3O,T4W5Y
2 Channel Characteristics and Frequency Multiplexing (j\a&X V _6xM
i
2.1 Introduction
/v4cx/M8Ot
2.2 Radio Channel Characteristics (g
Y:UN i
2.3 Orthogonal Frequency Division Multiplexing !B@ GOd/j U/W
2.4 Single Carrier Modulation with Frequency Domain Equalization x5jb ^~D Kf
2.5 Summary
p7y,}`8|-E[ z&z7Y
References
c9o;bdU!b7L.D
g`
3`!_C4~,E%Ra Y,l
3 Single Carrier FDMA
\d(QX4GF[7I
3.1 IntroductionH\}P y5w
3.2 SC-FDMA Signal Processing
~*O3rHa,G
CK-F:sX
3.3 Subcarrier Mapping(EG)Q~izW
3.4 Time Domain Representation of SC-FDMA Signals]0Zg pMo$Lc0QW
3.5 SC-FDMA and Orthogonal Frequency Division Multiple Access
)W
g6N8r^~"y:]M
3.6SC-FDMA and CDMA with Frequency Domain Equalization)\ m0nTjx
E
3.7Single Carrier Code-Frequency Division Multiple Access (SC-CFDMA)W#P$S9K8`0{6XI
3.8 Summary
0}3X9i_~4Zi^1f%F
References 7Z'r*ZV!uy.i%kr
-f P#e2J;e.G b
4 SC-FDMA in 3GPP Long Term Evolution
,s2DdK8aWc8`D"^
4.1 Introduction d,n8IA*yM
4.2 Protocol Layers and Channels
1f7O
X7kBt(}
4.3 Uplink Time and Frequency StructureF*V*by
e.[k
4.4 Basic Uplink Physical Channel Processing
3D z!Fb7XFt
4.5 Reference (Pilot) Signal Structuret7w;^,Xu
Mq9y`/t
4.6 Summary
7l;JU!N9~Jx
ReferencesZbsx)jd%B4R
Appendix - List of 3GPP LTE Standards $M,ww/ZqK
RJ,p`y wj@
5 Channel Dependent Scheduling~|%l?qg.__Q!v
5.1 Introduction
h],i4o.d+~8F
5.2 SC-FDMA Performance Measures
_'c9i]'}W3lH:J0d0|j
5.3 Scheduling Algorithms
A)J~"D2T
O
5.4 Channel Models Used in Scheduling Studiesv*Jy6? m@,Gh
5.5 Channel-Dependent Scheduling Simulation Studies
q'J wM;x
5.6 Summary!Vmoh*_+C wJ
References
O)Ni(k1eF6sH0q
(R.vdL:lJ'C
6 MIMO SC-FDMA
)?ik~AI*p
6.1 Introduction4mFkc%Y%K)c
6.2 Spatial Diversity and Spatial Multiplexing in MIMO Systems
h6x A;~Iu\i/]
6.3 MIMO Channel
S%{*X
MWV/E tm
6.4 SC-FDMA Transmit Eigen-Beamforming with Unitary Precoding@1M"S*i/]|UQ2h
6.5 SC-FDMA Spatial Diversity
z({e,T3I2H9U
6.6 Summary#KKX?mw
W2] X6|
References7ks9N_%H
od,~9mV4B'}[3R
BN
7 Peak Power Characteristics of an SC-FDMA Signal]*G.g\7I:|
7.1 Introduction
1I8A1_5~:J3[4~
7.2 Peak Power Characteristics of a Single Carrier Signal5H:G.~0P0Sw,o5GXv
7.3 PAPR of Single Antenna Transmission Signalsl6WY(bf0c{D
7.4 PAPR of Multiple Antenna Transmission Signals
C0dY;x$AM;@
7.5 Peak Power Reduction by Symbol Amplitude Clipping+a|q4r,{\
7.6 SummaryE^
D^0Ko'Cq
References
4h Eqg!~
\w Z} ~'\*?
8 Simulation of a SC-FDMA System Using Matlab®
W3Hp8C
h
8.1 Introduction
w5N rih;zM%f6]F
\
8.2 Link Level Simulation of SC/FDEE3n4W/b'wN
]B-F
8.3 Link Level Simulation of SC-FDMA@,d4x3\H
8.4 Peak-to-Average Power Ratio Simulation of SC-FDMA
}"Q&rEj
8.5 SummaryOklY!U~ JG
References
({'J6G&^
|$}2o
sO;y1x O
c)F9GS
Appendix - Simulation Codes
%V/WF`%ws4M(I
U,?"E)pB._6['F
Appendix A - Derivation of Time Domain Symbols of Localized FDMA and Distributed FDMA
+Q4G^m2a+l
A.1 Time Domain Symbols of LFDMA
+j
T3N6FJ3\r9|3W
A.2 Time Domain Symbols of DFDMA ^&y