南京大学学报(自然科学版) ›› 2010, Vol. 46 ›› Issue (4): 359–365.

• •    下一篇

 便携式可在线编程雷达信号模拟器*

张 騄 1, 2 , 张兴敢 1,2** , 柏业超 1,2 , 张 尉 2, 3    

  • 出版日期:2015-03-30 发布日期:2015-03-30
  • 作者简介: (1. 南京大学电子科学与工程系, 南京, 210093; 2. 毫米波国家重点实验室, 南京, 210096; 3. 空军雷达学院, 武汉, 430019)
  • 基金资助:
     毫米波国家重点实验室开放课题( K200819)

 A portable and online programmable radar signal simulator

 Zhang Lu 1, 2 , Zhang Xing?Gan 1, 2 , Bai Ye?Chao 1, 2 , Zhang Wei 2, 3   

  • Online:2015-03-30 Published:2015-03-30
  • About author: ( 1. Department of Electronics Science and Engineering, Nanjing University, Nanjing, 210093, China;
    2. State Key Laboratory of Millimeter Waves, Nanjing, 210096, China;
    3. Air Force Radar Academy, Wuhan, 430019, China)

摘要:  随着雷达接收机系统的日益复杂, 雷达信号模拟器日益成为现场测试中的必备工具. 根据测试雷达的型号不同, 或调试、 测试的内容不同, 对雷达信号模拟器提供的模拟信号也有着完全不同的要
求. 为了满足现场测试中, 对具备多种信号输出能力的信号模拟器的需求, 本文研究设计了一套可在线编程的便携式雷达信号模拟器. 该模拟器可以按照测试需求, 输出典型的杂波、 目标和噪声调制信号, 也
可以通过 universal serial bus( USB) 接口与 personalcomputer( PC)机相连, 通过实时在线编程, 产生测试所需的信号, 提高了雷达信号模拟器的实用范围, 同时也提升了雷达信号模拟器的便携性. 本系统通过
计算机软件系统生成雷达信号仿真数据, 通过 USB总线交互模块实现数据在模拟器和计算机系统之间的交互, 运用 field?programmable gate array( FPGA)控制模块控制数据的下载, 存储和输出, 利用 Flash
实现离电信号储存, 采用四片高速 RAM 进行信号实时输出. 本文全面阐述了雷达信号模拟系统的工作原理, 介绍了该系统设计方案, 着重阐述了模块间的硬件接口及控制模块. 该系统体积小, 便于携带, 改
变模拟信号类型方便, 具有较好的灵活性和通用性.

Abstract:  Radar signal simulator is an essential tool for radar receiving system test, especially during the field test. Different type of radar, different debugging and testing content require different simulating signal. Recently, the
magnetic environment is becoming more and more complex. During the field test, capability assessment and regular maintenance, the need for universal portable radar signal simulator is becoming more and more urgent. An online
programmable and portable radar signal simulator is designed in this paper. This simulator can output typical clutter wave, target modulation signal and noise modulation signal; it also can be connected with personal computer ( PC)
through universal serial bus (U SB) interface to program online and produce the test signals required, which enlargethe practical range of radar signal simulator. This system consists of four main modules, which are the field-
programmable gate array( FPGA) controlling module, the USB communicating interface, flash storage module, and signal output interface. The FPGA controlling module is the core part of the whole system, the chip used in this
module is the EP1C3T 144C8 in the cyclone series made by Altera, the developing environment is Altera Quartus II 6-0, and it will communicate and control the function of the USB interface, Flash storage module and output
module. T he USB interface module is the connection between the on board system and the PC system. The Flash storage module consist of a flash and four rams, the flash is used to store simulating radar signal data in the status
out of electricity, and the four Ram are used to transmit the data to output module in very fast speed. The output interface is designed to output radar data in parallel or serial form. T he system can download the simulating radar
signal data from PC through USB interface and store it in the Flash under the control of FPGA module. Then the system could read the data in the flash to the four rams and output the appointed signals set by the buttons under the
control of FPGA module. With this design, this radar signal simulating system can download radar data transport to the field test location without the need for electricity, and choose different form of the data to carry on the test
process. The principal of work and design proposal of the radar signal simulating system are introduced. T he design of hardware interface between modules and the control module are emphasized. It can be widely used in radar signal
receiving system testing for its portable and programmable features and diversity of generated signals.

 [ 1 ]  Lai H, Cai X Y, Fu X B. Analysis and designof a radar signal simulator. Fire Control Radar Technology, 2008, 37( 2) : 77~ 79. (来 浩, 蔡兴雨, 付学斌. 雷达信号模拟器的分析与设计. 火控雷达技术, 2008, 37(2): 77~ 79).
[ 2 ]  Xiao W S, Zhang X G, Du S D. Blind separation of radar signals. Journal of Nanjing University ( Nature Sciences) , 2006, 42( 1) : 38~ 43.
( 肖文书, 张兴敢, 都思丹. 雷达信号的盲分离. 南京大学学报( 自然科学), 2006, 42( 1): 38~ 43) .
[ 3 ] Xiao W S, Zhang X G. Direction?of?arrival and frequency estimation in array signal processing based on blind source separation. Journal of
Nanjing University ( Nature Sciences) , 2009, 45 (4) : 463~ 472. ( 肖文书, 张兴敢. 基于盲源分离算法的阵列信号波达方向?频率估计. 南京大学学报( 自然科学), 2009, 45(4): 463~ 472) .
[ 4 ]  Shi X H, Long Z Q, Hua Z Y. Research on signal simulation method of radar training simulator design. Journal of System Simulation,
2008, 20( 7) : 1716~ 1719. (施晓红, 龙志强, 华祖耀. 雷达训练模拟设计中的信号仿真方法研究. 系统仿真学报, 2008, 20( 7) : 1716~ 1719) .
[ 5 ] Zhang W. The Theory, Algorithm and application research of system simulation of radars. University of Electronic Science and Technology
of China, 2004, 1~ 27. ( 张? 伟. 雷达系统仿真的理论、 方法与应用研究. 电子科技大学, 2004, 1~ 27) .
[ 6 ]  Zhang C L. Modeling and simulation of radar clutter for radar signal simulator. National University of Defense T echnology, 2004, 1~ 23.
( 张长隆. 杂波建模与仿真技术及其在雷达信号模拟器中的应用研究. 国防科学技术大学, 2004, 1~ 23) .
[ 7 ] Weng G F, Hua Y Z. T he arithmetic of landform’s echo wave based on the radar simulation. Computer Simulation, 2001, 18(4) : 83~ 86. ( 翁
干飞, 华祖耀. 基于雷达仿真训练器的地面杂波算法. 计算机仿真, 2001, 18(4): 83~ 86).
[ 8 ] Zou H X, Chen Z L, Zhou S L, et al. Simula tion of correlated compound K?distributed radar
sea clutter based on ZMNL transform. Modern Radar, 2009, 31( 2): 63~ 66. ( 邹焕新, 陈振林, 周石琳等. 基于 ZMNL 的相关复合 K 分布雷达海杂波仿真. 现代雷达, 2009, 31( 2): 63~ 66) .
[ 9 ]  Liu H B, Zeng D Z, Long T. Design of wideband radar signal simulation system based on FPGA. M odern Radar, 2006, 28( 6) : 69~ 72. (刘海波, 曾大治, 龙 ? 腾. 基于 FPGA 的宽带雷达信号模拟系统设计. 现代雷达, 2006, 28 (6) : 69~ 72).
[ 10]  Chen R P, Guan J, Qiu H J, et al. A radar signal simulate method based on FPGA. Application of Electronic T echnique, 2006, 12: 95~ 98. (陈瑞平, 关  键, 邱军海等. 一种基于 FPGA 的雷达信号模拟方法. 电子技术应用, 2006, 12: 95~ 98).
[ 11]  Lv Y, Qi J M, Xi W. Design and implementation of radar signal generator based on AD9859. Fire Control Radar Technology, 2008, 37( 2): 101~ 103. ( 吕  艳, 戚 继明, 奚 玮. 基 于AD9858 的雷达信号源设计与实现. 火控雷达技术, 2008, 37(2): 101~ 103) .
No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!