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同步短波差分跳频多址系统单用户及多用户检测的性能 被引量:4
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作者 朱毅超 甘良才 +1 位作者 熊俊俏 郭见兵 《电子与信息学报》 EI CSCD 北大核心 2010年第1期151-156,共6页
该文讨论同步短波差分跳频在多址通信中的单用户与多用户检测的性能。给出了单用户检测在无背景噪声及有背景噪声的情况下,系统的比特误码率(BER)上界,并对其进行了数值仿真。其结果表明:在无背景噪声的情况下,当总用户数为2时,系统的BE... 该文讨论同步短波差分跳频在多址通信中的单用户与多用户检测的性能。给出了单用户检测在无背景噪声及有背景噪声的情况下,系统的比特误码率(BER)上界,并对其进行了数值仿真。其结果表明:在无背景噪声的情况下,当总用户数为2时,系统的BER可达10-6;若系统可以得到精确的干扰状态信息(JSI),则多址性能可以得到极大的提升。在此基础上,提出了一种迭代多用户检测算法,在迭代过程中估计各可用频率上的JSI,并利用它对多个用户进行极大似然检测,其仿真结果表明了多用户检测相对于单用户检测,其性能获得了明显的改善。 展开更多
关键词 短波差分跳频 多址通信 多用户检测 干扰状态信息
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Fast Secret Key Generation Based on Dynamic Private Pilot from Static Wireless Channels 被引量:5
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作者 Yu Huang Liang Jin +2 位作者 Hongquan Wei Zhou Zhong Shengjun Zhang 《China Communications》 SCIE CSCD 2018年第11期171-183,共13页
In static or quasi-static wireless channel environments, secret key generation(SKG) based on wireless channels is vulnerable to active attacks due to the openness and invariance of public pilot, especially man-inthe-m... In static or quasi-static wireless channel environments, secret key generation(SKG) based on wireless channels is vulnerable to active attacks due to the openness and invariance of public pilot, especially man-inthe-middle(MITM) attacks, where attacker acts as a transparent relay to manipulate channel measurements and derive the generated keys. In order to fight against this attack, a dynamic private pilot is designed, where both private pilot and secret key are derived from the characteristics of wireless channels and private to third party. In static or quasi-static environments, we use singular value decomposition techniques to reconstitute the wireless channels to improve the randomness of the wireless channels. Private pilot can encrypt and authenticate the wireless channels, which can make channel state information intercepted by MITM attacker reduced to zero and the SKG rate close to that without attacks. Results of analysis and simulation show the proposed SKG scheme can withdraw the MITM attacks. 展开更多
关键词 dynamic private pilot MITMattacks secret key generation wireless chan-nels physical layer security
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