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內容簡介: |
本书以军用战术短波和超短波跳频电台为研究对象。重点研究了跳频通信中跟踪干扰检测和识别算法。在此基础上,研究可有效对抗跟踪干扰,同时兼具对抗其他典型干扰能力的原理、方法和技术,保证复杂电磁环境下跳频电台能够正常通信,同时也可为今后跳频电台的研制和运用提供一定的理论参考。本书进一步丰富了扩频通信干扰检测及自适应抗干扰理论体系,具有较高的理论价值和军事应用价值。本书聚焦跳频通信跟踪干扰检测、识别及抗跟踪干扰技术,能够为相关专业的科研人员、工程技术人员以及博士生、硕士生提供参考。
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關於作者: |
闫云斌,中国人民解放军陆军工程大学教师,发表各类文献近百篇,相关专利50余项,主要研究方向无人机、跳频通信、雷达液压缸。
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目錄:
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第1 章 概述························································································································11.1 研究背景及意义·······································································································11.2 通信信号侦察识别技术研究现状···················································································21.2.1 通信信号的调制识别························································································21.2.2 扩频信号的检测与参数估计···············································································31.3 扩频通信干扰检测与识别技术现状················································································51.3.1 直接序列扩频通信干扰检测与识别技术································································51.3.2 跳频通信干扰检测与识别技术············································································51.4 跳频通信抗跟踪干扰研究现状·····················································································71.4.1 常规跳频模式抗跟踪干扰方法············································································81.4.2 新型跳频模式抗跟踪干扰方法············································································81.5 本书结构与章节安排······························································································.11参考文献····················································································································.12第2 章 跳频通信的基本原理及其面临的典型干扰·····································································.212.1 跳频通信的基本原理······························································································.212.2 跳频通信面临的典型干扰························································································.222.2.1 阻塞干扰····································································································.222.2.2 跟踪干扰····································································································.252.3 本章小结·············································································································.27参考文献····················································································································.28第3 章 单天线下跳频通信跟踪干扰检测方法研究·················································································.293.1 引言···················································································································.293.2 噪声跟踪干扰检测方法···························································································.303.2.1 系统模型····································································································.303.2.2 AWGN 信道下的性能分析··············································································.323.2.3 瑞利衰落信道下的性能分析············································································.343.2.4 Nakagami-m 衰落信道下的性能分析··································································.363.2.5 数值计算与结果分析·····················································································.383.3 音调跟踪干扰检测方法···························································································.433.3.1 系统模型····································································································.433.3.2 AWGN 信道下的性能分析··············································································.443.3.3 瑞利衰落信道下的性能分析············································································.453.3.4 Nakagami-m 衰落信道下的性能分析··································································.483.3.5 数值计算与结果分析·····················································································.503.4 本章小结·············································································································.55参考文献····················································································································.56第4 章 基于稀疏分解的跳频通信跟踪干扰检测技术··································································.584.1 引言············································································································
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