卫星通信保密信号传输抗干扰控制技术研究

Zheng Jianyun, Gao Jing, Ji Kai, Guo Yi
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引用次数: 0

摘要

卫星通信秘密信号传输是扩频通信的一种。在接收端产生卫星通信保密信号扩频码序列的过程中容易产生多径干扰,因此有必要抑制多径干扰,降低卫星通信保密信号接收的误码率。提出了一种基于无源时间倒装镜控制和匹配滤波的卫星通信机密信号传输多径干扰抑制算法。建立了卫星通信秘密信号传输的扩频信道模型和卫星通信秘密信号传输模型。利用时镜反演技术实现信道的有效估计,对卫星通信秘密信号传输中接收阵列元件的多径分量进行调整,将干扰信号分解为正信号和时镜反演负信号,然后进行符号拼接,实现卫星通信秘密信号的压缩编码,并获得聚焦增益。消除了多径干扰。仿真结果表明,该算法能有效提高卫星通信机密信号传输系统输出脉冲响应的聚焦性能,提高卫星通信机密信号传输的抗干扰能力,降低通信误码率。
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Research on Anti-Interference Control Technology of Satellite Communication Confidential Signal Transmission
Satellite communication secret signal transmission is a kind of spread spectrum communication. It is easy to produce multi-path interference in the process of generating satellite communication secret signal spread spectrum code sequence at the receiver, so it is necessary to suppress the multi-path interference and reduce the bit error rate (BER) of satellite communication confidential signal reception. A multi-path interference suppression algorithm for satellite communication confidential signal transmission based on passive time flip mirror control and matching filtering is proposed. The spread spectrum channel model and satellite communication secret signal transmission model of satellite communication secret signal transmission are constructed. The time mirror inversion technology is used to realize the effective estimation of the channel, the multi-path component of the received array element in satellite communication secret signal transmission is adjusted, the interference signal is decomposed into positive signal and time mirror inversion negative signal, and then the symbol splicing is carried out to realize the compression coding of satellite communication secret signal, and the focusing gain is obtained. The multi-path interference is eliminated. The simulation results show that the algorithm can effectively improve the focusing performance of the output impulse response of the satellite communication confidential signal transmission system, improve the anti-interference ability of satellite communication confidential signal transmission, and reduce the communication bit error rate.
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