为解决无线通信网络中不同用户之间的通信安全问题,通常会采用身份认证协议来确保通信双方身份的合法性。该认证协议应能抵抗重放攻击、延时攻击等威胁,同时认证过程中的计算量应尽量小。本文针对SEAHA(secure and efficient handover a...
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为解决无线通信网络中不同用户之间的通信安全问题,通常会采用身份认证协议来确保通信双方身份的合法性。该认证协议应能抵抗重放攻击、延时攻击等威胁,同时认证过程中的计算量应尽量小。本文针对SEAHA(secure and efficient handover authentication)认证方案存在的计算量大、不能抵抗伪装攻击的问题提出了一种基于双线性对和离散对数难题(DLP)的无证书两方认证协议。该协议中基站和节点共同生成节点密钥对来抵抗伪装攻击,利用离散对数难题生成会话密钥降低认证过程中的计算量。安全分析和性能分析结果表明,提出协议在保证安全性的前提下,有效降低了认证过程中的计算量。
Due to the high complexity of the pairwise decoding algorithm and the poor performance of zero forcing( ZF) /minimum mean square error( MMSE) decoding algorithm, two low-complexity suboptimal decoding algorithms, ...
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Due to the high complexity of the pairwise decoding algorithm and the poor performance of zero forcing( ZF) /minimum mean square error( MMSE) decoding algorithm, two low-complexity suboptimal decoding algorithms, called pairwisequasi-ZF and pairwise-quasi-MMSE decoders, are proposed. First,two transmit signals are detected by the quasi-ZF or the quasiMMSE algorithm at the receiver. Then, the two detected signals as the decoding results are substituted into the two pairwise decoding algorithm expressions to detect the other two transmit signals. The bit error rate( BER) performance of the proposed algorithms is compared with that of the current known decoding ***, the number of calculations of ZF, MMSE, quasi-ZF and quasi-MMSE algorithms is compared with each other. Simulation results showthat the BER performance of the proposed algorithms is substantially improved in comparison to the quasi-ZF and quasiMMSE algorithms. The BER performance of the pairwise-quasiZF( pairwise-quasi-MMSE) decoder is equivalent to the pairwiseZF( pairwise-MMSE) decoder, while the computational complexity is significantly reduced.
全双工系统能实现在同一时隙与同一频率传输数据,相比于半双工系统能大大地提升数据吞吐量和频谱效率。为了进一步提高全双工多输入多输出(Multi-input and multi-output,MIMO)中继系统传输速率,本文基于放大转发(Amplify-and-forward,...
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全双工系统能实现在同一时隙与同一频率传输数据,相比于半双工系统能大大地提升数据吞吐量和频谱效率。为了进一步提高全双工多输入多输出(Multi-input and multi-output,MIMO)中继系统传输速率,本文基于放大转发(Amplify-and-forward,AF)传输模式,在全双工双向中继系统中引入梯度下降算法,将用户发送端、接收端波束成形与中继端波束成形矩阵相结合设计一种最大化速率的交替迭代算法,并构造出一种最小均方误差(Minimum mean square error,MMSE)迭代算法作为初始条件,在此基础上推导出中继接收端与发射端的波束成形矩阵表达式。仿真结果表明,本文构造的交替迭代算法收敛速度快,而且相比于迫零、最小均方误差以及最大泄信噪比算法,和速率有显著提高。
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