针对双向中继网络中传统中继转发协议放大信号的同时放大了噪声、可能转发错误的解码信号、中继判决结果不可靠等问题,提出两种基于互信息转发(MIF)的网络编码中继转发方案。首先,中继节点转发来自两个源端信息的硬判决结果;同时还转...针对双向中继网络中传统中继转发协议放大信号的同时放大了噪声、可能转发错误的解码信号、中继判决结果不可靠等问题,提出两种基于互信息转发(MIF)的网络编码中继转发方案。首先,中继节点转发来自两个源端信息的硬判决结果;同时还转发其可靠度;然后,接收端将来自中继节点转发的信号及其可靠度和源端信号合并,并对合并结果进行检测和判决。详细推导了所提出两种方案接收端信噪比(SNR)的表达式,并在加性高斯白噪声(AWGN)信道两种仿真条件下进行数值仿真;同时分别在AWGN信道和瑞利信道中对各种方案误码率进行蒙特卡罗仿真。结果表明在两种信道条件下所提出方案在误码率(BER)性能上较估计转发(EF)方案相比分别有约1 d B和1-2 d B的增益。仿真实验结果说明基于MIF的网络编码方案在双向中继网络中继转发中对系统的误码性能有显著提升效果。展开更多
With the low cost and low hardware complex considerations,cooperative systems are a tendency in the future communications.This work considers the secure cooperative communications systems.For a practical situation in ...With the low cost and low hardware complex considerations,cooperative systems are a tendency in the future communications.This work considers the secure cooperative communications systems.For a practical situation in the system,the scenario includes multiple source stations,multiple relay stations,multiple destination stations,and eavesdroppers.To analyze the optimal relay selection in the system,we begin with the performance analysis for a single source station and a single destination station.By applying two cooperative models,the amplify-andforward(AF) mode and decode-and-forward(DF)mode,the secrecy capacity is derived.Then,we apply the derived results to the considered environment to find the optimal relay assignment.By the way,the relay selection can be obtained by the exhaustive search algorithm.However,there are a lot of steps needed if the number of source stations is large.Hence,applying the characters of the cooperative modes in the relay selection,the pre-selection step is proposed with a mathematical derivation.It could be used for the practical situation without a long-time calculation.展开更多
This article addresses the design problem of selecting an appropriate relay in amplify-and-forward (AF) cooperative diversity systems. In this regard, this article focuses on relay selection based on partial channel...This article addresses the design problem of selecting an appropriate relay in amplify-and-forward (AF) cooperative diversity systems. In this regard, this article focuses on relay selection based on partial channel knowledge only across the source and relay links. In particular, the two fundamental questions will be answered, that is, whether to cooperate and whom to cooperate with. Through answering these two questions, an improved relay selection strategy based on partial relay link, which emphasizes that cooperation happens when necessary, is proposed to aim at maximizing the average mutual information. Then a joint optimization, in terms of power allocation and relay selection, is employed to guarantee a robust performance for relay selection based on partial relay link. Optimum power is allocated between the source and the selected relay to maximize the output signal-to-noise (SNR) at the destination. Simulation results turn out that the improved scheme can achieve better performance than previous work and the robust performance can be guaranteed by employing joint optimization.展开更多
文摘针对双向中继网络中传统中继转发协议放大信号的同时放大了噪声、可能转发错误的解码信号、中继判决结果不可靠等问题,提出两种基于互信息转发(MIF)的网络编码中继转发方案。首先,中继节点转发来自两个源端信息的硬判决结果;同时还转发其可靠度;然后,接收端将来自中继节点转发的信号及其可靠度和源端信号合并,并对合并结果进行检测和判决。详细推导了所提出两种方案接收端信噪比(SNR)的表达式,并在加性高斯白噪声(AWGN)信道两种仿真条件下进行数值仿真;同时分别在AWGN信道和瑞利信道中对各种方案误码率进行蒙特卡罗仿真。结果表明在两种信道条件下所提出方案在误码率(BER)性能上较估计转发(EF)方案相比分别有约1 d B和1-2 d B的增益。仿真实验结果说明基于MIF的网络编码方案在双向中继网络中继转发中对系统的误码性能有显著提升效果。
文摘With the low cost and low hardware complex considerations,cooperative systems are a tendency in the future communications.This work considers the secure cooperative communications systems.For a practical situation in the system,the scenario includes multiple source stations,multiple relay stations,multiple destination stations,and eavesdroppers.To analyze the optimal relay selection in the system,we begin with the performance analysis for a single source station and a single destination station.By applying two cooperative models,the amplify-andforward(AF) mode and decode-and-forward(DF)mode,the secrecy capacity is derived.Then,we apply the derived results to the considered environment to find the optimal relay assignment.By the way,the relay selection can be obtained by the exhaustive search algorithm.However,there are a lot of steps needed if the number of source stations is large.Hence,applying the characters of the cooperative modes in the relay selection,the pre-selection step is proposed with a mathematical derivation.It could be used for the practical situation without a long-time calculation.
基金supported by Sino-Swedish IMT-Advanced Cooperation Project (2008DFA11780)Canada-China Scientific and Technological Cooperation,the National Natural Science Foundation of China (60802033,60873190)the Hi-Tech Research and Development Program of China (2008AA01Z211)
文摘This article addresses the design problem of selecting an appropriate relay in amplify-and-forward (AF) cooperative diversity systems. In this regard, this article focuses on relay selection based on partial channel knowledge only across the source and relay links. In particular, the two fundamental questions will be answered, that is, whether to cooperate and whom to cooperate with. Through answering these two questions, an improved relay selection strategy based on partial relay link, which emphasizes that cooperation happens when necessary, is proposed to aim at maximizing the average mutual information. Then a joint optimization, in terms of power allocation and relay selection, is employed to guarantee a robust performance for relay selection based on partial relay link. Optimum power is allocated between the source and the selected relay to maximize the output signal-to-noise (SNR) at the destination. Simulation results turn out that the improved scheme can achieve better performance than previous work and the robust performance can be guaranteed by employing joint optimization.