协同通信与AF和DF中继合约协议.doc
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1、.AbstractNowadays, there is a trend for communication system that the whole network system is becoming dynamic so that there are always having devices should be embedded and removed. Conventional wired communication, due to the complexity of cabling, does not adapt to the modern communication system
2、. Wireless technique has been used widely because devices can be connected by electromagnetism wave without cabling. However, low transmitting reliablity because of inter-interference between electromagnetism waves is the key problem of wireless communication. Based on this, this thesis investigates
3、 one of the technique called cooperative communication and it cooperative protocols.Cooperative communication is a virtual multiple-input multiple-output(MIMO) system. To increase the reliability of signal transmitted without increasing the amount of communication devices, this technology tries to m
4、ake each antennas have one or more partners that assist them to transmit the signal. In wireless network, the devices not only transmit their own signal but also assist their “partner” to transmit their signal for saving the cost of installation of additional antennas at both receiver and senderIn t
5、his thesis, we focus on introducing three main protocols in cooperative communication: Amplify-and Forward(AF), Decode-and-Forward(DF) and Coded Cooperation(CC). The performance and mathematical equations of AF and DF are analysed , and then MATLAB programs were created to simulate the performance o
6、f these two protocols. About the three protocols, the main procedures are also introduced. The performance comparison for AF and DF in different signal-to-noise(SNR) are demonstrated. The result presents that the DF protocols has better performance than AF. Finally, some recommendations and future w
7、ork are mentioned at the end of the thesis.Table of ContentsAbstractTable of containsList of figuresList of abbreviations and Symbols1 Introduction.91.1 Background.91.2 Objectives.91.3 Approaches.91.4 Thesis outline.102 Literature Review.122.1 Overview.122.2 Spatial diversity technology.132.3 Basic
8、Model for Wireless.132.3.1 SISO system.132.3.2 MIMO system.142.3.3 Cooperative model.142.4 Cooperative schemes.152.4.1 Amplify-and-forward method.162.4.2 Decode-and-forward method.162.4.3 Coded cooperation.173 Simulation and Analyses of AF.213.1 Overview.213.2 Maximum likelihood method.213.3 Simulat
9、ion and Analysis.213.3.1 The whole procedure and analysis.213.3.2 Simulation.243.4 Summary.264 Simulation and Analysis of DF.274.1 Overview.274.2 Quantization method.274.3 Convolutional Code and Viterbi decode.274.3.1 Convolutional code.284.3.2 Viterbi decode.284.4 Simulation and analysis.284.4.1 Th
10、e whole procedure and analysis.294.4.2 Simulation.304.5 Performance comparison between AF and DF .314.6 Main challenges.324.7 Summary.335 Conclusions and future work.345.1 Conclusion.345.2 Prospect.345.3 Future work.35Reference.36Appendix A Thesis specification.37Appendix B Logbook Summary Signature
11、.40Appendix C MATLAB programs.41C.1 Amplify-and-Forward Protocol.41C.2 Decode-and Forward protocol.42C.3 Rayleigh channel.45List of FiguresFigure 2.1 virtual MIMO system .13Figure 2.2 Cooperative communication .14Figure 2.3 MIMO system.15Figure 2.4 Cooperative model.16Figure 2.5 Relay amplify model.
12、17Figure 2.6 Decoded and forward model.18Figure 2.7 Coded cooperative model.19Figure 2.8 Coded cooperation data allocation.20Figure 2.9 Four cases in coded cooperative.20Figure 3.1 first time slot in AF method.23Figure 3.2 Second time slot in AF method .24Figure 3.3 AF protocol BER diagram .26Figure
13、 4.1 (n,k,m) convolutional encoder.29Figure 4.2 first time slot of DF.30Figure 4.3 Second time slot.30Figure 4.4 DF protocol BER diagram.32Figure 4.5 DF whole procedures.32Figure 4.6 performance compared between AF and DF.33List of Abbreviations and SymbolsMIMOMultiple input multiple outputSISOSingl
14、e input single outputAFAmplify-and-ForwardDFDecode-and-ForwardCCCoded CooperationBERBit error rateQPSKQuadrature phase-shift keyingi.i.dindependently and identically distributionMLMaximum likelihoodSNRSignal noise-ratio1 Introduction1.1 BackgroundWireless communication is, recently, the fastest impr
15、oving segment and most widely used way of the communication industry. For utilizing the broadcast property of electromagnetism wave, the information can be transmitted in wireless environment, which saves much cost for cabling and makes the change of network structure easily. On the other hand, as w
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- 协同 通信 通讯 af 以及 df 中继 合约 协议 协定
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