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Artificial Noise Aided Polar Codes for Physical LayerSecurity 被引量:1
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作者 huiqing bai Liang Jin Ming Yi 《China Communications》 SCIE CSCD 2017年第12期15-24,共10页
The secrecy rates of the existing practical secrecy coding methods are relative low to satisfy the security requirement of 5 G communications.We propose an artificial noise(AN) aided polar coding algorithm to improve ... The secrecy rates of the existing practical secrecy coding methods are relative low to satisfy the security requirement of 5 G communications.We propose an artificial noise(AN) aided polar coding algorithm to improve the secrecy rate.Firstly,a secrecy coding model based on AN is presented,where the confidential bits of last transmission code block are adopted as AN to inject into the current codeword.In this way,the AN can only be eliminated from the jammed codeword by the legitimate users.Since the AN is shorter than the codeword,we then develop a suboptimal jamming positions selecting algorithm with the goal of maximizing the bit error rate of the eavesdropper.Theoretical and simulation results demonstrate that the proposed algorithm outperforms the random selection method and the method without AN. 展开更多
关键词 PHYSICAL LAYER SECURITY polarcodes artificial noise jamming POSITIONS se-lection
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OPTIMIZATION OF Ni BIOACCUMULATION BY SYNECHCOCCUS 被引量:1
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作者 Haoran Li Zhuwei Du +2 位作者 Jianglong Liang huiqing bai Yali Feng 《China Particuology》 SCIE EI CAS CSCD 2006年第2期77-79,共3页
Influencing factors on bioaccumulation of Ni by Synechcoccus were studied in this paper. The equilibration time of Ni bioaccumulation was about 80 min in aqueous solution. Bioaccumulation quantity reached maximum when... Influencing factors on bioaccumulation of Ni by Synechcoccus were studied in this paper. The equilibration time of Ni bioaccumulation was about 80 min in aqueous solution. Bioaccumulation quantity reached maximum when mass ratio of Ni to dry weight concentration of Synechcoccus was 16-18%. Bioaccumulation quantity increased with increasing pH. The optimum pH was 9-10 and higher pH led to precipitation of Ni(OH)2. Bioaccumulation quantity was also influenced by temperature and light intensity reaching their optima at 35℃ and 3 000 lx respectively. Bioaccumulation of nonliving algae was larger than that of living algae. 展开更多
关键词 Synechcoccus NI BIOACCUMULATION polluted mine drainage
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