1 Wideband DS-CDMA for Next-Generation Mobile Communications Systems Reporter : Vincent Chen Advisor...
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Transcript of 1 Wideband DS-CDMA for Next-Generation Mobile Communications Systems Reporter : Vincent Chen Advisor...
![Page 1: 1 Wideband DS-CDMA for Next-Generation Mobile Communications Systems Reporter : Vincent Chen Advisor : Prof. Li-Chun Wang 2000/8/13 Reference:IEEE Communication.](https://reader035.fdocuments.in/reader035/viewer/2022062515/56649f435503460f94c6344d/html5/thumbnails/1.jpg)
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Wideband DS-CDMA for Next-Generation Mobile Communications Systems
Reporter : Vincent Chen
Advisor : Prof. Li-Chun Wang
2000/8/13
Reference:IEEE Communication Magazine,1998.9
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Introduction:
Second-Generation cellular system:
•Adopted digital technology•Limited basic service•Low-bit-rate
Third-Generation cellular system:
•ITU:IMT-2000,2Mb/s• Wideband DS-CDMA•FDD,Air interface standard
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The difference between IS95 and WDS-CDMA
•IS95: Base on narrowband DS-CDMA
Optimized for basic service
The difference between second and third generation
•Isolated cell case
•Sectored cell: Overcome the interference program
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Content:
The important concepts:
•Intercell asynchronous operation
•Pilot channel associated with individual data
channels
1:Coherent Detection
2:Interference Cancellation
3:Adaptive antenna array
(can be viewed as Adaptive cell sectorization)
W-CDMA TechnologyW-CDMA Technology
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The technical features:
•Fast transmit power control
•Coherent spreading code tracking
•Coherent rake receiver
•Orthogonal multispreading factor forward link
•Variable-rate transmission with blind rate detection
Field experiment
![Page 6: 1 Wideband DS-CDMA for Next-Generation Mobile Communications Systems Reporter : Vincent Chen Advisor : Prof. Li-Chun Wang 2000/8/13 Reference:IEEE Communication.](https://reader035.fdocuments.in/reader035/viewer/2022062515/56649f435503460f94c6344d/html5/thumbnails/6.jpg)
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Enhanced Radio Transmission TechniquesEnhanced Radio Transmission Techniques
Multi-Stage Interference Canceller
An Adaptive Antenna Array Combined with A Rake Receiver
Matched Filter Rake Receiver
Turbo Codes
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Design Concept:Design Concept:
W-CDMA Technology
Channel Coding
Modulate10msData
Add Header QPSK
Spread2GHZ
MFRake
CombinerViterbi
Decoder
10msData
Transmiter
Receiver
SubtractHeader
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Fast Cell Search Under Intercell Asynchronous OperationFast Cell Search Under Intercell Asynchronous Operation
Cell search algorithm:
1: Detect scramble mask timing of best cell (least sum of propagation path loss plus shadowing)2: Identify the scramble code group
3: Search for the scramble code
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Fast TPCFast TPC
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Coherent spreading code trackingCoherent spreading code tracking
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Coherent Rake CombiningCoherent Rake Combining
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Orthogonal multi-spreading factor forward linkOrthogonal multi-spreading factor forward link
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Variable-rate transmission with blind rate detectionVariable-rate transmission with blind rate detection
Discontinuous:Keep same Symbol rate
Continuous:Keep same Chip rate
Cyclic Redundancy Check Decoding
Data rata=M Spreading code=01
Data rata=M/2 Spreading code=0011
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Field experimentField experiment
System set-up for 32kb/s data transmission
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Measurement course characterization
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The effect of spreading bandwidth
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High-speed(1.92 Mb/s) data transmission
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Enhanced Radio Transmission Techniques
Multi-Stage Interference CancellerMulti-Stage Interference Canceller
COMSIC: COherent Multi-Stage ICCEIGU:Channel Estimation-and-Interference Generation Unit
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An Adaptive antenna array combined with a Rake receiverAn Adaptive antenna array combined with a Rake receiver
CAAAR Receiver: Coherent Adaptive Antenna Array Rake Receiver
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Matched Filter Rake ReceiverMatched Filter Rake Receiver
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Turbo CodesTurbo Codes
The main difference between Turbo codes and Conventional code
•Concatenating two or more recursive systematic codes
•Using a pseudo-random interleaver
•Iterative decoding algorithm
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RSC:Recursive system convolutional encoder
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