摘要脉冲压缩是现代雷达应用十分广泛也十分有效地一种先进技术,它能有效地解决雷达距离分辨力与平均功率之间的矛盾。特别是二相编码信号具有近似于图钉的模糊图,而且其脉冲压缩容易实现,因而得到广泛的应用。然而,由于距离旁瓣的存在使得相位编码信号脉冲压缩的实际应用得到了限制。因此。如何更好地抑制距离旁瓣成为相位编码信号脉冲压缩实际应用问题的关键问题。64904
本文主要介绍和分析了1023位m序列相位编码信号脉冲压缩及其旁瓣抑制技术。首先对脉冲压缩基本原理、特点、实现方法进行介绍;接着介绍了二相编码,对其旁瓣抑制的性能指标及几种常见方法进行了讨论;对1023位m序列频域脉压及旁瓣抑制进行了仿真;基于FPGA设计实现了对1023位m序列频域脉压系统;测试结果表明设计达到指标要求。
毕业论文关键词 脉冲压缩 旁瓣抑制 相位编码 FPGA实现
毕业设计说明书(论文)外文摘要
Title FPGA-based frequency-domain compression
Abstract Modern radar pulse compression is widely used as a very effective advanced technology,it can effectively solve the radar range resolution and the contradiction between the average power.Especially in the second phase coded signal has a fuzzy figure approximates thumbtack, and it’s pulse compression is easy to implement, and therefore it is widely used.However, the range side lobe of the phase-coded signal limits the practical application of pulse compression. Therefore, how to better sidelobe suppression distance signal of the phase encoding pulse compression practical application of the key issues.
This paper describes and analyzes the 1023 m-sequence phase-coded signal pulse compression and sidelobe suppression techniques.First, the basic principles of pulse compression, features and the digital pulse compression are introduced;then introduced the two-phase coding, to its sidelobe suppression the performance indicators and the several common methods carried out introduction; on 1023 m-sequence and frequency-domain pulse sidelobe suppression simulation; a 1023 m-sequence frequency-domain pulse system is designed by FPGA; test results show that the design meet the indicator.
Keywords Pulse compression Sidelobe suppression Phase-encoded signals FPGA Implementation
目 次
1 绪论 1
1.1 研究背景和意义 1
1.2 课题研究现状 1
1.3 本文内容及章节安排 2
2 脉冲压缩技术 4
2.1 脉冲压缩技术简介 4
2.1.1 脉冲压缩的原理 4
2.1.2 脉冲压缩的特点 6
2.2 数字脉冲压缩技术 7
3 二相编码信号脉压旁瓣抑制方法 9
3.1 二相编码信号 9
3.2 旁瓣抑制的性能指标 9
3.3 二相编码信号的失配滤波设计 10
3.2.1 线性规划法(LP) 11
3.2.2 最小均方逆滤波法(LS) 12
3.2.3 基于凸优化的旁瓣抑制滤波器设计 13
3.4 本章小结